#3D PET Injection Model
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lovinagoodfind · 8 months ago
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Check out this listing I just added to my Poshmark closet: Reebok Women's Sublite Duo Instinct Running Shoe EUC Sz 9.
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itruckstuff · 9 months ago
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Check out this listing I just added to my Poshmark closet: MOBILE PHONE 3D VIDEO AMPLIFIER SCREEN, Enlarge Screen (New In Box) Color Red.
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eliteprintpack · 1 year ago
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The Role of Technology in Modern PET Jar Manufacturing - Elite Print Pack
In today's fast-paced world, technology plays a crucial role in almost every industry. The manufacturing of PET jars is no exception. At Elite Print Pack, technology is at the heart of our operations, ensuring that we produce high-quality PET jars efficiently and sustainably. This blog explores the various ways technology influences modern PET jar manufacturing in Delhi and how Elite Print Pack leverages these advancements to meet the needs of our customers.
Advanced Machinery
One of the most significant technological advancements in PET jar manufacturing is the use of advanced machinery. Elite Print Pack employs state-of-the-art equipment that automates and streamlines the production process. These machines are capable of producing large quantities of PET jars with consistent quality, reducing the likelihood of human error and ensuring each jar meets our high standards.
Injection Molding Machines
Injection molding is a key process in PET jar manufacturing. Advanced injection molding machines at Elite Print Pack allow for precise control over the shape and size of each jar. These machines can quickly switch molds, enabling us to produce a variety of jar designs without significant downtime. This flexibility is essential for meeting the diverse needs of our clients.
Blow Molding Machines
Blow molding is another critical process where technology plays a vital role. Modern blow molding machines ensure that each PET jar is formed with uniform thickness and strength. These machines also enhance the clarity and appearance of the jars, making them more attractive for consumers.
Quality Control Systems
Ensuring the quality of PET jars is paramount at Elite Print Pack. We utilize advanced quality control systems that monitor each stage of the manufacturing process. These systems use sensors and cameras to detect any defects or inconsistencies in the jars. If any issues are identified, the system automatically removes the faulty jars from the production line, ensuring that only the best products reach our customers.
Automation and Robotics
Automation and robotics have revolutionized the manufacturing industry, and PET jar production is no different. At Elite Print Pack, automated systems handle many tasks that were once done manually. For example, robotic arms are used to transport jars between different stages of production, reducing the need for manual handling and minimizing the risk of contamination.
Automated packaging systems also play a significant role. These systems ensure that PET jars are efficiently packed and ready for shipment. By reducing manual labor, we can keep production costs low and pass the savings on to our customers.
Computer-Aided Design (CAD)
Designing PET jars requires precision and creativity. Computer-aided design (CAD) software allows our engineers to create detailed 3D models of jars before they are produced. This technology enables us to experiment with different shapes and sizes, ensuring that the final product meets the specific needs of our clients.
CAD software also allows for rapid prototyping. We can quickly produce a prototype of a new jar design and test its functionality before committing to full-scale production. This approach saves time and resources, making the development process more efficient.
Sustainable Manufacturing Practices
Sustainability is a key focus at Elite Print Pack, and technology helps us achieve our environmental goals. Advanced recycling systems allow us to reclaim and reuse PET materials, reducing waste and minimizing our environmental footprint. Energy-efficient machinery and processes also help us lower our overall energy consumption.
In addition, we use eco-friendly packaging materials and processes that further support our commitment to sustainability. By investing in green technologies, Elite Print Pack not only produces high-quality PET jars but also contributes to a healthier planet.
Enhancing Customer Experience
Technology also enhances the customer experience. Our digital platforms allow clients to place orders, track shipments, and communicate with our team effortlessly. We use data analytics to understand market trends and customer preferences, enabling us to anticipate and meet the needs of our clients better.
Conclusion
Technology is integral to modern PET jar manufacturing, enabling Elite Print Pack to produce high-quality, sustainable products efficiently. From advanced machinery and quality control systems to automation, CAD, and sustainable practices, technology impacts every aspect of our operations. By staying at the forefront of technological advancements, Elite Print Pack ensures that we continue to meet and exceed the expectations of our customers. For reliable, top-quality PET jars, Elite Print Pack is your go-to choice in Delhi.
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hlhrapidlimited · 1 year ago
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What Commonly Used Injection Molding Materials Have: An Insight into Their Properties and Applications.
Injection molding is a widely utilized manufacturing process that involves injecting molten material into a mold to create a wide array of products. The choice of material is crucial as it influences the properties, cost, and applications of the final product.
Here, we delve into some of the most used injection molding materials, exploring their characteristics and common applications.
1. Polypropylene (PP)
Characteristics:
Polypropylene is a type of plastic that is very versatile. It is lightweight, resists chemicals well, and can handle repeated stress without breaking. This makes it perfect for uses that need to be durable.
Applications:
PP is often used in packaging, car parts, everyday products, and medical devices. Repeated bending makes it great for items like living hinges that need to bend a lot.
 2.Acrylonitrile Butadiene Styrene (ABS)
Characteristics:
ABS is a type of plastic made by mixing styrene and acrylonitrile with polybutadiene. This makes it very strong, tough, and keeps its shape well.
Applications:
ABS is commonly used in car parts, electronic cases, everyday items, and toys. Its strength and easy shaping also make it popular for 3D printing.
3. Polyethylene (PE)
Characteristics:
Polyethylene comes in different types like HDPE and LDPE. It resists chemicals, insulates electricity, and is flexible. HDPE is harder and more rigid, while LDPE is softer, more flexible, and melts at a lower temperature.
Applications:
PE is used for many items like containers, bottles, plastic bags, and toys. It is also great for medical and food packaging because it is safe and non-reactive.
4. Polycarbonate (PC)
Characteristics:
Polycarbonate is a strong type of plastic known for being tough and clear. It can be shaped easily and is used in many ways.
Applications:
Polycarbonate is often used in eyeglass lenses, medical tools, car parts, and electronics. Its clearness and strength make it perfect for things that need to be strong and easy to see through.
5. Polystyrene (PS)
Characteristics:
Polystyrene is a type of man-made plastic that comes in two types: solid and foam. It is light, stiff, and cheap to make.
Applications:
PS is used in things like disposable utensils, plastic models, CD cases, and foam packaging. The foam kind, called expanded polystyrene (EPS), is common in insulation and packing materials.
6. Nylon (Polyamide - PA)
Characteristics:
Nylon is a man-made material that is strong and flexible. It can handle being pulled hard, resist wear and tear, and is good with heat and chemicals.
Applications:
Nylon is used in cars, machines, everyday items, and clothes. It is tough and strong, perfect for parts that get a lot of use and pressure.
7.Polyethylene Terephthalate (PET)
Characteristics:
PET is a thermoplastic polymer resin of the polyester family. It is known for its strength, thermostability, and resistance to moisture.
Applications:
PET is widely used in beverage bottles, food packaging, and synthetic fibers. Its recyclability makes it a popular choice for environmentally conscious manufacturers.
Different materials used in injection molding have special qualities that suit various needs. For example, polypropylene is versatile and tough, while polycarbonate is strong and clear. Knowing these traits helps manufacturers pick the best material for their specific use, ensuring good performance, cost-efficiency, and eco-friendliness. As technology and materials improve, more options for injection molding become available, opening new possibilities for innovation in manufacturing.
There are 7 Most Common Injection Moulding Gate Types - Choosing a Gate for Your Project
An injection molding gate is a specially designed opening that controls how molten plastic flows into the mold. Its main job is to manage the amount and direction of the plastic as it fills the mold. There are different kinds of gates, such as edge gates, sub gates, and direct sprue gates, each with its own unique features and uses. We will look at these types more closely below.
Most common types of injection moulding gate:
Edge Gates
Tunnel / Submarine (Sub) Gates
Cashew Gates
Sprue or Direct Gates
Fan Gates
Diaphragm Gates
Pin Gates
Inject moulding is a prototyping tool made by HLH Rapid. Before beginning production, our engineers choose the ideal gate for your design and build bespoke moulds and parts based on your CAD drawings. Simply use our site contact form to send us your CAD designs and project specifics, including quantity, material, and any surface finishing. In a span of 24 to 48 hours, our staff will furnish an estimate.
Do you want to learn about Injection Molding or need a Free Quote? Submit your CAD drawings and project details, including quantity, material, and surface finish, through our site contact form. Our team will send you a quote within 24-48 hours.
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huangyanlingyu · 2 years ago
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The Ingenious World of Plastic Bucket Molds
The journey begins with meticulous mold design. Engineers and designers create a detailed 3D model of the bucket, taking into account every curve, contour, and detail. This digital blueprint serves as the foundation for the plastic bucket mold.
Material Selection:
The choice of plastic material is crucial in ensuring the desired properties of the bucket, such as strength, flexibility, and color. Common plastics used for bucket production include high-density polyethylene (HDPE), polypropylene (PP), and polyethylene terephthalate (PET).
Injection Molding Process:
The plastic bucket mold is installed in an injection molding machine, which consists of various essential components:
Hopper: Raw plastic material, often in the form of pellets, is loaded into the hopper.
Heating Chamber: Inside the machine, the plastic pellets are heated until they become molten and pliable.
Injection Unit: The molten plastic is then injected into the mold cavity under high pressure. The mold is designed to shape the plastic into the precise form of a bucket.
Cooling System: After injection, a cooling system rapidly cools the mold, solidifying the plastic.
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genuinepetp · 2 years ago
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Pet Feeder Manufacturing: Quality Control and Standards
Pet feeders have evolved from simple bowls to sophisticated devices that ensure our furry friends are well-fed, even when we're not around. As the demand for these products continues to grow, manufacturers face the responsibility of maintaining high-quality standards to meet the needs of pets and their owners. In this article, we'll delve into the world of pet feeder manufacturing, focusing on the importance of quality control and industry standards.
The Pet Feeder Manufacturing Process
Before we dive into quality control and standards, it's essential to understand the pet feeder manufacturer process. Here's a simplified overview:
1. Design and Prototyping: Pet feeder design begins with sketches and 3D models. Prototypes are created and tested to refine the design.
2. Material Selection: Choosing safe, durable, and pet-friendly materials is critical. Common materials include BPA-free plastics, stainless steel, and food-grade silicone.
3. Manufacturing: Pet feeders are produced through methods like injection molding for plastic components and fabrication for metal parts.
4. Assembly: All components are assembled, including the base, bowls, lids, and any electronic parts for automatic feeders.
5. Quality Control: Rigorous testing is conducted to ensure each unit meets safety and functionality standards.
6. Packaging: Pet feeders are packaged for retail, including instructions and branding elements.
7. Distribution and Marketing: The products are distributed to retailers and marketed through various channels, including social media, trade shows, and partnerships.
Quality Control in Pet Feeder Manufacturing
Maintaining high-quality standards throughout the manufacturing process is essential to producing safe and reliable pet feeders. Here's how quality control is implemented:
1. Material Inspection: Manufacturers carefully inspect incoming materials to ensure they meet safety and quality standards. This includes checking for any defects or impurities in the raw materials.
2. Production Line Quality Checks: Throughout the manufacturing process, quality checks are performed at key stages. This ensures that each component meets specifications and is free from defects.
3. Functional Testing: Every pet feeder undergoes functional testing to verify that all features work correctly. For automatic feeders, this includes portion control, timing accuracy, and motor performance.
4. Safety Standards: Pet feeders must adhere to safety standards to prevent harm to pets or humans. This includes the use of non-toxic materials, secure locking mechanisms, and electrical safety compliance.
5. Durability Testing: Pet feeders are subjected to durability tests to ensure they can withstand typical usage without breaking or malfunctioning.
6. Hygiene and Cleanliness: Manufacturers implement strict cleanliness standards to prevent contamination during production. Pet feeders are also tested for ease of cleaning.
7. Environmental Impact: Many manufacturers are adopting eco-friendly practices, such as reducing waste and using recyclable materials in their products and packaging.
Industry Standards for Pet Feeders
To maintain consistency and safety across the pet feeder manufacturing industry, there are several industry standards and guidelines in place. These standards cover various aspects of pet feeders, including materials, safety, and design. Some of the key standards and organizations involved include:
1. ASTM International: This organization develops and publishes voluntary consensus standards for various products, including pet feeders. ASTM F2922, for example, covers the safety requirements for pet drinking fountains.
2. Food and Drug Administration (FDA): The FDA provides guidelines on materials and substances that come into contact with food, which can apply to certain components of pet feeders.
3. Pet Industry Joint Advisory Council (PIJAC): PIJAC offers guidance on pet product safety, which manufacturers can use to ensure their pet feeders meet industry standards.
4. ISO Standards: The International Organization for Standardization (ISO) has standards related to product safety and quality that manufacturers can choose to adhere to.
The Role of Testing Laboratories
Manufacturers often collaborate with testing laboratories to ensure their pet feeders meet established standards and safety regulations. These laboratories conduct a range of tests, including material analysis, durability testing, and safety assessments, to verify that the product meets all relevant guidelines.
Conclusion
Quality control and adherence to industry standards are paramount in pet feeder manufacturing. These measures ensure that pet feeders are not only safe for pets but also reliable and effective. As a responsible pet owner, you can have confidence in the quality and safety of pet feeders that meet these rigorous standards, providing a convenient and reliable solution to keep your furry companions well-fed and happy.
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3d-rendering-services · 8 years ago
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Concepts on 3D Industrial Animation
Animation is collection of object that doing movement like the reality of character. Animation process is like waterfall means that its one process but obvious and their reason is here which is on first step, animator make story, on second step- animator decide the character of story, and at the end animator fixed the all things in the object that amazing animation comes out which is amazing to watch.
Animation ideas are depend on the stories that what stuff and objects needed for the story. Whole animation is on the bases of the script of story that people can understand easily. Industrial animation is full of with the professionalism. This industrial animation done by the professional animator whose well experienced in the animation industry. 3D industrial animation is now in trend because of their impact and their quality.
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Ideas of 3D industrial animation are for the better creation of animation. In the industry of animation, you have to perfect with your creation and method of your creation. You have to trust on your creation of your animation that you are confident about that. Best thing of industrial animation is that you have to focus on that your animation creation is never similar with another otherwise its going on wrong way for maintains the post in the animation industry.
3D industrial needs also technical knowledge of industry and the animation. You can easily collect the information by online stuff and by some other way that which you want and liked. Industrial animation ideas are comes from company policy that they decide the method of doing work earlier and present their creation of their work in the front of you that you can instantly caught the ideas of making of animation and what animation try to say from whatever company and their creation.
Web - http://www.thecheesyanimation.com/
Facebook - https://www.facebook.com/The-Cheesy-Animation-Factory-268824299887961/
LinkedIn - https://www.linkedin.com/in/the-cheesy-animation-154a4610a/
Twitter - https://twitter.com/TheChhesyAnimat
Google - https://plus.google.com/118304068330792235866
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lmtphonecase01-blog · 6 years ago
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Do you want to import phone covers or cases for iPhones, Samsung, HTC, LG, Techno, or other phone brands? This article will introduce you to some of the top phone case manufacturers in China.
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 1.  Shenzhen LeMoTong Technology Co., Ltd.
Shenzhen LeMoTong Technology Co., Ltd. specializes in providing premium protection and design in its products like as phone case, tempered glass screen protector and VR glasses and cell phone accessories for iPhone, Samsung, Huawei, HTC, LG, Macbook and various tablets.
 LeMoTong mobile phone accessory manufacturer has a manufacturing factory and whole project development team, including product designers, R&D engineers, manufacturing specialists, marketing sales, and project leaders that are proficient about technology, innovation, and production management. Click here to visit their website: lmtphonecase.com
 The main products of this company:
 l  custom liquid glitter case
l  tempered glass screen protector
l  printed iPhone lightning charging cable
l  custom Macbook case
l  custom leather cell phone holsters
  2.  Spec-Tech (Xiamen) Co. Ltd
Spec-Tech (Xiamen) Co. Ltd was established in 2009, and is well-known for manufacturing and exporting silicone products, including silicone cases/covers for phones. Furthermore, Spec-Tech also produces wristbands, baking molds, bracelets, cosmetic products, and water bottles.
This company offers OEM and ODM services to their buyers, and manufacture products for some of the major international brands such as Walt Disney, Nestle, Nivea, Walmart, and Fiat.
All in all, over 1000 different items are manufactured by Spec-Tech. They also offer clients 2D and 3D drawings alongside 3D mockup samples following the buyer’s demand or expectations.
You have different varieties of silicone cases to choose from for iPhone and other Android devices. Some common options include:
·        Silicone cases for iPhone 8 and iPhone X
·        Custom silicone cases for iPhone 7
·        Liquid silicone cases
·        3D cute animal design silicone cases with an option for buyers as well
·        Cartoon silicone phone cases
·        Silicone rubber cases
·        Select their own design
Altogether, you have 21 options to pick from for silicone cases.
The company has over 50 employees and produces above 450,000 products per month.
Address: Unit 1706, Peak International Plaza, No. 20 Gaoxiong Road, Xiamen, Fujian, China (361000).
 3.  Shenzhen Sunonline Mobile Accessories Co. Ltd
Shenzhen Sunonline Mobile Accessories Co. Ltd, also called Xhongli, is a company that manufactures and exports accessories for mobile devices, including phone cases/covers.
They also offer OEM and ODM services for smartphone and tablets cases. This company produces cases for nearly all popular smartphone and tablet brand, including Apple, Samsung, Oppo, Xiaomi, Huawei, and other brands.
Besides providing a variety of cases for each brand, and also of different shapes/sizes, you can find phone cases/covers produced from different materials that include:
·         Leather
·         Silicone
·         Metal
·         Crystal
·         Silicone
·         PC
·         PP
·         TPU
Furthermore, this company also manufacture screen guards/protectors and other accessories for smartphones.
Xhongli was established in 2012, this high-tech company is based in Shenzhen, Guangdong, and has over 550 employees at the moment, and manufactures more than five million products per month. The company is also an ISO 9001: 2008 certified company.
About 50% of their products are exported with Amazon, Body Grove, Gear 4, Oppo, Walmart, Speck, Target, and Lander as their renowned customers.
Address: Block 34, Area B, Tantou West Industrial Area, Songgang, Bao’an District, Shenzhen, Guangdong, China (518105).
 4.  Dongguan qicaitong Plastic Technology Co. Ltd
Founded in 2001, Dongguan Qicaitong Plastic Technology Co. Ltd, also called QC&T, is into the production and exportation of Silicone and TPU covers/cases for smartphones. Also, QC&T is one of the biggest manufacturers for phone cases, with a staff size of over 400 people, producing about 3.6 million cases per month. The factory located in Dongguan, Guangdong is well equipped with the latest CNC and injection machines and has a land coverage of 6,000 square meters.
They also offer their buyers with OBM, OEM and ODM services. Over 95% of their total manufactured products are for exports.
Some of their common product groups include:
·        Carbon fiber mobile phone cases
·        Flip mobile phone cases
·        iPhone Hybrid cases
·        Mobile phone ring holders
·        PC mobile phone cases
·        PU leather mobile phone cases
·        Silicone mobile phone cases
·        Smartwatch cases
·        TPU mobile phone cases
 You will see different varieties of smartphone covers/cases in different shapes, sizes, designs, and materials.
Address: No. 1 Beian 4th Road Beian Village, Gongchang Road Huangjiang Town, Dongguan, Guangdong, China (523000).
 5.  Dongguan Afang Plastic Products CO., LTD
Founded in 2002, Dongguan Afang Plastic Products Co., emerged as one of the top manufacturer and exporter for plastic and silicone products a few years ago. The company is located in Tandxia Town, Dongguan, with 300 staff at the moment, and covers about 8,000 square meters.
They’re famous for their quality plastic and silicone cases/covers for phones and tablets. This company also offer their customers ODM and OEM services, and about 70% of its products are exported to more than 30 countries, mostly in Europe and North America.
You can select from different varieties of products that include:
·        Aluminum cases for iPhone
·        Anti-gravity mobile phone cases
·        Anti-radiation mobile phone cases
·        Anti-shock mobile phone cases
·        Car mounts for iPhone
·        Carbon fiber mobile phone cases
·        Mobile phone glass screen protectors
 The company is also an ISO 9001: 2008 certified company and all their products are manufactured following supplier’s instructions, and their product conforms with EU regulations as well as other manufacturing standards. Some of their renowned clients are Huawei, Lenovo, Oppo, and Vivo.
Address: No. 23, 3 Center Road, Puxinhu Business Street, Tangxia Town, Dongguan, Shenzhen, Guangdong, China (518109).
6. PU & Leather Phone Case Suppliers
Guangzhou Aivi leather Co. Ltd
Guangzhou Aivi Leather Co. Ltd. was founded in 2002, this company manufactures and exports leather products, mainly leather covers/cases for well-known smartphone brands. Currently, the company has a staff size above 200 individuals, produces about 60,000 products each month and exports over 85% of its items to different countries.
This company offers ODM and OEM services to clients, and also accept specifications from buyers.
Some of their most popular product categories include:
·         Fabric mobile phone cases
·         Leather cases for iPad mini
·         Leather phone cases/covers for popular brands like Apple, Samsung, and Huawei.
·         PU leather cases for iPhones
·         Mobile phone pouches
Furthermore, this company also produces card wallets, leather wallets, and business card cases. The factory and company’s head office is based in Guangzhou, Guangdong.
Address: Room 5E02 Block 5, Royal Plaza, Guangzhou, Guangdong, China (510010).
 7.  Guangzhou C&T Industry Company Limited
Guangzhou C&T Industry Company Limited, also called C&T, was established in 2002 as a research and development firm for different types of mobile accessories and products. Over the years, the company emerged as one of the top manufacturers and exporters of cases/covers for mobile phones. The company is an ISO 9001 certified company with many certifications and test reports from Disney Audit, WCA, SGS, and BSCI.
C&T provide OEM and ODM services to their customers, and nearly 100% of their products are exported to different countries, with Europe and North America as their major markets.
Some of their most popular products include:
·        Adhesive stick-on phone cases
·        Business leather cases for IPad Pro
·        IMD cases
·        Liquid cases
·        Phone cases for different iPhone models
·        PU leather phone cases
·        Soft Gel TPU cases
The company also manufactures phone cases under CTUNES brand name; this includes colorful IMD cases for mobile devices with different designs/style.
The company has a big factory covering 4,000 square meters, with over 120 employees. The company has an average lead time for a single order within 15 days and produces about 950,000 pieces for TPU and 1,200,000 pieces for PC on a monthly basis.
Address: East Side of Floor 4, Yuanyang Huifu Commerce Center, No. 174, Binjiang West Road, Haizhu District, Guangzhou, Guangdong, China (Mainland).
 8.  Shenzhen Laudtec Electronics Co., Ltd.
Shenzhen Laudtec Electronics Co., Ltd, also called LAUDTEC, is a BSCI audit factory founded in 2008,  the company is based in Shenzhen, Guangdong. They are known for manufacturing and exporting cases for smartphones as well as other phone accessories. It manufactures smartphone cases and other phone accessories. The company exports 100% of its product to different countries.
 In 2011, the company started offering ODM and OEM services to their clients besides selling products under the name of their brand. The company has a land coverage of 6,000 square meters and a staff size of nearly 200 individuals. LAUDTEC produces about 15,000 cases on a daily basis.
Some of their most popular products include:
·         Leather flip cases
·         Soft gel cases
·         IMD cases
·         TPU cases
·         Shockproof cases
·         Tempered glass and PET screen protectors
They provide phone covers/cases for virtually all popular smartphone brands like Apple, Samsung, Huawei, Vodafone, ZTE, HTC, and others.
The company provides just 3 to 7 days of lead time for an order, with 100% QC inspection before shipping. The company is also BSCI certified, with passed FCC and RoHS test reports.
Address: 7/F, Bldg. A, No. 8, Beifu Rd., Beifu Industrial Zone, Lezhujiao Village, Huangmabu Community, Xixiang St., Baoan Dist., Shenzhen, Guangdong, China (Mainland).
 9.  Shenzhen Luphie Technology Co. Ltd
Shenzhen Luphie Technology Co., Ltd, commonly called by its brand name Luphie, was founded in 2011. This company recently emerged as one of the top manufacturers and exporters of aluminum phone cases. Besides selling products under their brand name, they also offer OEM and ODM services to clients.
Luphie is well-known for its aluminum metal phone cases/covers. The company owns a high-tech factory with land coverage of 5000 square meters, furnished with 80 modern machines; this allows them to manufacture over 2 million pieces per month.
All the products manufactured by them have passed RoHS tests for quality. Find some of their most popular product categories below:
·        Aluminum cases for iPhones
·        Anti-shock mobile phone cases
·        PC cases for iPhones
·        Mobile phone housings
·        Bumpers for iPhones
·        Power bank cases for iPhones
·        TPU cases for iPhones
·        Aluminum cases for other phone brands
The company’s factory and head office are based in Shenzhen, Guangdong.
Address: Fu Cheng Ao Industrial, No. 10 Fuxing Road, Pinghu Street, Longgang District, Shenzhen, Guangdong, China (518000).
10.      Dongguan Foxron Precision Metal Parts Co. Ltd
Dongguan Foxron Precision Metal Parts Co. Ltd is well-known in producing and exporting different varieties of aluminum products ranging from large aircraft parts to small aluminum cases for mobile phones and tablets.
The company was established in 2006 and is based in Dongguan, Guangdong. The company is ISO certified, with ISO 9001:20008 certification, it has a land coverage off 15,000 square meters equipped with modern CNC machines, and 500 employees. The company has a total capacity of 1 million pieces per month.
About 80% of their products are exported to different countries, with North America and Europe as their primary markets. Also, their products are compliant with RoHS quality standards.
They produce aluminum phone covers or tablet covers for most popular brands, which are available in different shapes, sizes, and design. Some of their well-known global clients are Samsung, Huawei, and ZTE. The company has a minimum order limit of 500 pieces. They accept specifications from clients and also offer ODM and OEM services to customers.
Address: Zhuanyao Industrial Zone, Wentang, East District, Dongguan, Guangdong, China (523121)
 Where can I find other suppliers?
 Currently, the two largest supplier directories are Alibaba.com and Globalsources.com. You will find different phone case factories and trading organization using any of these two B2B directories.
If you want to have face to face contact with suppliers, you can make selections from different annual trade shows in Guangzhou and Hong Kong.
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marketinsightshare · 3 years ago
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3d- Printing Polymers Market Size Forecast to Reach $10.5 Billion by 2026
3D Printing Polymers Market size is forecast to reach $10.5 billion by 2026, after growing at a CAGR of 5.3% during 2021-2026. 3D-Printing Polymers take over the 3D printing also known as additive manufacturing (AM) hardware arena. Thermoplastics that are dominating the 3D-Printing market include Acrylonitrile butadiene styrene (ABS), Polyethylene terephthalate (PET), Polyamide, Polyvinyl alcohol plastic (PVA) water-soluble material, polylactic acid (PLA) and Photopolymer. The evolution of 3D printing has seen rapid growth in the number of companies adopting the technology. The applications and use cases vary across industries, but broadly include tooling aids, rapid prototyping which is obtained mostly by fused deposition modeling, photopolymerization powder bed fusion, and material extrusion manufacturing process. The growing success of Additive Manufacturing is due to its advantages over conventional manufacturing. The 3D printing polymers market in the Asia Pacific region is expected to register the maximum CAGR between 2018 and 2023. North America and Europe are projected to continue the major markets for 3D printing polymers, due to the convincing existence of the aerospace & defense, and healthcare industries, which are the major end-users of 3D printing plastics.  The market for 3D printing polymers is growing rapidly and demand is increasing, with more companies buying Additive Manufacturing hardware and grading their usage.
COVID-19 Impact
The COVID-19 pandemic has negatively influenced the 3D printing materials requirement across numerous end-use industries such as aerospace & defense, automotive, and other industries. These industries are harshly affected by COVID-19. The interference in the supply chain has led to delays or non-arrival of raw materials, interrupted financial flows, and increasing nonappearance amongst construction line workers, which have compelled aircraft and automobile manufacturers to operate at zero or partial capacities. The impact of the pandemic in these certain industries have hindered the growth of 3D-printing polymers market.
3D-Printing Polymers Market Segment Analysis - By Form
Solid Based or Filament dominates the 3D-Printing polymers Market with a share of 36% in 2020. Filaments created from materials such as polymers are expended in Fused Deposition Modeling (FDM) technology, which has low cost in comparison to other forms of 3D printing materials. These filaments are favorable in the manufacturing of objects with complicated structures. Hence, escalating demand for mass customization from industries such as aerospace and defense is a major influencing factor for the growth of the 3D printing filament market. In addition, high demand for thermoplastic filaments in the production of medical devices and components due to the outbreak of COVID-19 is expected to gear up the development of 3D printing filament in the medical & dental segment. For instance, Royal DSM, a known market player, to help accelerate Dutch Covid-19 testing by making 2.8 million nose swabs. The design was developed with DSM’s 3D-printing expertise and scaled-up by injection molding to produce millions of swabs for test kits in the Netherlands. This initiative will escalate the exposure of 3D-printing polymers industry amidst Covid-19 pandemic.
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Report Price: $4500 (Single User License)
3D-Printing Polymers Market Segment Analysis - By Material
Acrylonitrile butadiene styrene (ABS) dominates the 3D-Printing polymers Market growing at a CAGR of 6.2% during 2020-2026. ABS filament is the most commonly used 3D printing polymers, an impact-resistant engineering thermoplastic & amorphous polymer. ABS is composed of over 50% styrene and varying amounts of butadiene and acrylonitrile. Several properties like high impact strength, heat performance, and others make ABS suitable for use in automotive, electronics, building & construction industries, and many more. It is mostly used in the bodywork of cars, appliances, and mobile phone cases. It is a thermoplastic that contains a base of elastomers based on polybutadiene, making it more flexible, and resistant to shocks. Expanding outlet for ABS is the electronics industry where it is used in business machines, computers, radios, televisions , and telephone handsets. And in the automobile sector where it is used in instrument panels, consoles, radiator grills, headlight housings and interior trim parts with growing use in recreational vehicles is rapidly increasing the growth of the 3D-printing polymer market.
3D-Printing Polymers Market Segment Analysis - By Production Process
Fused Deposition Modeling (FDM), as known as fused filament fabrication (FFF), dominates the 3D-Printing polymers Market growing with a share of 30%. FDM is one of the most popular 3D printing methods for industrial uses. It prints 3D objects by using a heated filament to manually build up layers of material and is a popular choice for prototyping projects, as functional parts can be created from the same materials that will be used for the final production versions. The thermoplastics used in FDM are highly versatile and durable, allowing for a high level of accuracy and stability. It is also used for low-volume production applications. The high usability and grown practicality of 3D printing of complex shapes have boosted the demand for the technology, as the largest revenues from shipments came from this category of machines in 2020, reaching almost $150 million.
3D-Printing Polymers Market Segment Analysis - By Application
Modeling and Prototyping held the largest share of 32% in the 3D-Printing Polymers Market in 2020. 3D Systems’ digital prototyping solutions have made transforming a design into a physical object even faster and more affordable. 3D Systems’ digital prototyping solutions offer a streamlined workflow to advance and accelerate your projects. 3D printing technology greatly reduces the lead times required in traditional manufacturing, allowing a prototype to be fabricated in hours, not weeks, and at a fraction of the cost. The automotive and aerospace industries are just two industries involved in manufacturing taking advantage of advances in 3D printing technologies. 3D printing allows inexpensive production of a product in much smaller volumes. In this same vein, advances in rapid prototyping (RP) technology have also given rise to the development of materials and processes that are suitable for the manufacture of the final version of a product, not just its prototype. The advanced technology gears up the 3D-printing polymers demands and the likely to escalate the growth of the sector.
3D-Printing Polymers Market Segment Analysis - By End-Use Industry
Automotive  Industry dominates the 3D-Printing polymers Market growing at a CAGR of 5.8% during 2020-2026. The automotive industry with a production of 77.6 million in 2020 according to Organisation Internationale des Constructeurs d'Automobile (OICA). The growing usage of 3D printing and the shift towards advanced technology in the automobile is driving the 3D printing market. Whether it’s a commercial vehicle, truck, or racing car, the technology bids automotive engineers the tools to examine the limits of design and performance. BMW, for instance, discovers itself amid the industry’s frontrunners when it comes to 3D printing with over 1 million parts 3D-printed in the last decade. Similarly, there are numerous automotive companies that are initiation to find innovative end-use applications for 3D printing, marking a thrilling development for the sector. On the other hand, the aerospace and defense (A&D) industry are one of the primary adopters of 3D printing. A&D represents a 16.8% share of the $10.4 billion 3D printing market and heavily contributes to ongoing research efforts within the industry. Aerospace companies have long been integrating additive manufacturing (AM) technology when planning their production strategies for the future. Additional to that high demand of 3D-printing polymers for aircraft interior components and components for defense systems for its weight reduction and low volume properties are likely to influence the growth of the sector.
3D-Printing Polymers Market Segment Analysis - Geography
Asia Pacific region held the largest share in the 3D-Printing Polymers Market in 2020 up to 35% followed by North America and Europe. The rising attention from APAC manufacturing companies and the introduction of many government-led strategies and policies have helped out numerous countries within the region to prosper in generating a sustainable additive manufacturing (AM) ecosystem. The Asia-Pacific market is evaluated created on its outreach in the countries such as China, Japan, India, Singapore, Australia, South Korea, and Rest of Asia Pacific. Japan and China in total majorly constitute a force following the explosion of 3D printing in The Asia Pacific owing to Chinese government support in terms of 3D printing strategies and fiscal support. Moreover, according to Ministry of Electronics and Information Technology (MeitY) aims to develop a domestic AM industry with an annual average growth rate of 30% or above to exceed US$ 3 Billion by 2020. The plan prioritizes a goal to carry out 100 pilot projects across 10 key industries and formalize standardization of these technologies. Also, the arrival of several players in 3D printing and technological advancements and research in Japan has further added both these countries to grow into the leading ones in 3D printing polymer domain. As per International Development Corporation (IDC), Asia Pacific’s AM spending is estimated at US$ 3.8 billion for 2019, after the United States and Western Europe which account for nearly two-thirds of the overall market (US$ 8.6 billion). Among Asian countries, China holds 50% of the market, whereas Japan, South Korea and ASEAN hold 30%, 10-12%, and 5-7%, followed by India and Australia at 3-5% each.
3D-Printing Polymers Market Drivers
3D-printing polymers in Space Tools
3D-printing polymers are expended in Aerospace for Engine, Turbine Parts and as well as parts for cabin interiors. Acrylonitrile butadiene-styrene (ABS) is utilized in fabrication of a wide variety of objects layer by layer using fused deposition modeling, which is very attractive as a potential hybrid rocket fuel and the ability to dramatically reduce the time it takes to get parts to orbit and increase the reliability and safety of space missions, while dropping costs. In the rapidly growing market of commercial space applications, the ability to manufacture prototypes and small series productions play a decisive role. For instance, supported by Electro Optical Systems (EOS) GmbH and Additive Manufacturing Customized Machines (AMCM), known market player, the US start-up company LAUNCHER is working on launching small to medium-sized payloads into space more efficiently than ever before. The results include novel and innovative rocket designs and the world’s largest rocket engine to ever be manufactured additively in a single piece. By the help of 3D-printing LAUNCHER successfully constructed, tested, and further developed this new design quickly and cost-efficiently.
3D-printing in the Medical and Dental Industry
The medical and Dental Industry is one of the fastest-growing adopters of 3D printing. From medical devices to prosthetics and even bioprinting, the applications of 3D-printing polymers for the medical industry are versatile and wide-ranging. It is an essential material for many medical equipment manufacturers due to its performance characteristics, and its ability to be adaptable and customizable to meet specific needs. Due to the pandemic, the demand-supply for medical devices such as nose swobs, insulators, and others are rising which directly impacting the growth of the 3D-printing polymers market.
Inquiry Before Buying @ https://www.industryarc.com/reports/request-quote?id=19684
3D-Printing Polymers Market Challenges
Temperature constraint, Cracking, and Delamination can Restrict the Market Growth
It is important that 3D-printing polymers like ABS are used within the ideal or recommended temperature range. For example, the extruder temperature for ABS is 245°C. Curling & cracking can be great setbacks in 3D printing polymers. If not regulated, the print can warp, curl, or even crack after a few layers. These glitches are visible only after some printing is done and so the print has to be continuously monitored to make sure the print is running perfectly. Certain drawbacks might hinder the growth of the 3D-printing polymer industry.
3D-Printing Polymers Emits toxic odor
3D-printing polymers emit a strong odor when printed, the odor commonly known as burnt plastic. Not only does this smell makes it very uncomfortable to stay in the same room as the printer when it is working, but there are also studies that prove that the fumes are toxic which may cause eye, skin, and respiratory tract irritation, and if overexposed, could cause nausea and headache. And when it appears to health issue the market is certain to get hampered by such setbacks.
3D-Printing Polymers Market Landscape
Technology launches, acquisitions and R&D activities are key strategies adopted by players in the Window Films Market. Major players in the 3D- Printing Polymers Market are 3D Systems Corporation (US), Stratasys, Ltd. (US), Arkema SA (France), BASF SE (Germany), Evonik Industries AG (Germany), SABIC (Saudi Arabia), HP Inc. (US), DowDuPont Inc. (US), Royal DSM N.V. (Netherlands), EOS GmbH Electro Optical Systems (Germany), Clariant International Ltd. (Switzerland), CRP Group (US), Envisiontec GmbH (Germany), Materialize NV (Belgium), and Oxford Performance Materials Inc. (US).
Acquisitions/Technology Launches/ Product Launches  
In February 2021 – Orbex has commissioned AMCM to build the largest industrial 3D printer in Europe, allowing the innovative UK-based space launch company to rapidly print complex rocket engines in-house. The custom-made, large volume 3D printer will allow Orbex to print more than 35 large-scale rocket engine and main stage turbopump systems annually, as the company scales up its production capabilities for launches.
Key Takeaways
Asia Pacific dominates the 3D-Printing Polymers Market owing to the rapid increase in the Aerospace and Defense sector.
The market drivers and restraints have been assessed to understand their impact on the forecast period.
The report further identifies the key opportunities for growth while also detailing the key challenges and possible threats.
The other key areas of focus include the various applications and end-use industry in 3D-Printing Polymers Market and their specific segmented revenue.
Due to the COVID-19 pandemic, most of the countries have gone under temporary shutdown, due to which operations of 3D-Printing Polymers related industries have been negatively affected, thus hampering the growth of the market.
Related Reports:
A. High Performance Polymers Market
https://www.industryarc.com/Report/11659/high-performance-polymers-market.html
B. Plastics & Polymers Market
https://www.industryarc.com/Report/16091/plastic-polymers-market.html
For more Chemicals and Materials  related reports, please click here
0 notes
marketwire · 3 years ago
Text
3d- Printing Polymers Market Size Forecast to Reach $10.5 Billion by 2026
3D Printing Polymers Market size is forecast to reach $10.5 billion by 2026, after growing at a CAGR of 5.3% during 2021-2026. 3D-Printing Polymers take over the 3D printing also known as additive manufacturing (AM) hardware arena. Thermoplastics that are dominating the 3D-Printing market include Acrylonitrile butadiene styrene (ABS), Polyethylene terephthalate (PET), Polyamide, Polyvinyl alcohol plastic (PVA) water-soluble material, polylactic acid (PLA) and Photopolymer. The evolution of 3D printing has seen rapid growth in the number of companies adopting the technology. The applications and use cases vary across industries, but broadly include tooling aids, rapid prototyping which is obtained mostly by fused deposition modeling, photopolymerization powder bed fusion, and material extrusion manufacturing process. The growing success of Additive Manufacturing is due to its advantages over conventional manufacturing. The 3D printing polymers market in the Asia Pacific region is expected to register the maximum CAGR between 2018 and 2023. North America and Europe are projected to continue the major markets for 3D printing polymers, due to the convincing existence of the aerospace & defense, and healthcare industries, which are the major end-users of 3D printing plastics.  The market for 3D printing polymers is growing rapidly and demand is increasing, with more companies buying Additive Manufacturing hardware and grading their usage.
COVID-19 Impact
The COVID-19 pandemic has negatively influenced the 3D printing materials requirement across numerous end-use industries such as aerospace & defense, automotive, and other industries. These industries are harshly affected by COVID-19. The interference in the supply chain has led to delays or non-arrival of raw materials, interrupted financial flows, and increasing nonappearance amongst construction line workers, which have compelled aircraft and automobile manufacturers to operate at zero or partial capacities. The impact of the pandemic in these certain industries have hindered the growth of 3D-printing polymers market.
3D-Printing Polymers Market Segment Analysis - By Form
Solid Based or Filament dominates the 3D-Printing polymers Market with a share of 36% in 2020. Filaments created from materials such as polymers are expended in Fused Deposition Modeling (FDM) technology, which has low cost in comparison to other forms of 3D printing materials. These filaments are favorable in the manufacturing of objects with complicated structures. Hence, escalating demand for mass customization from industries such as aerospace and defense is a major influencing factor for the growth of the 3D printing filament market. In addition, high demand for thermoplastic filaments in the production of medical devices and components due to the outbreak of COVID-19 is expected to gear up the development of 3D printing filament in the medical & dental segment. For instance, Royal DSM, a known market player, to help accelerate Dutch Covid-19 testing by making 2.8 million nose swabs. The design was developed with DSM’s 3D-printing expertise and scaled-up by injection molding to produce millions of swabs for test kits in the Netherlands. This initiative will escalate the exposure of 3D-printing polymers industry amidst Covid-19 pandemic.
Request for Sample Report  @ https://www.industryarc.com/pdfdownload.php?id=19684
Report Price: $4500 (Single User License)
3D-Printing Polymers Market Segment Analysis - By Material
Acrylonitrile butadiene styrene (ABS) dominates the 3D-Printing polymers Market growing at a CAGR of 6.2% during 2020-2026. ABS filament is the most commonly used 3D printing polymers, an impact-resistant engineering thermoplastic & amorphous polymer. ABS is composed of over 50% styrene and varying amounts of butadiene and acrylonitrile. Several properties like high impact strength, heat performance, and others make ABS suitable for use in automotive, electronics, building & construction industries, and many more. It is mostly used in the bodywork of cars, appliances, and mobile phone cases. It is a thermoplastic that contains a base of elastomers based on polybutadiene, making it more flexible, and resistant to shocks. Expanding outlet for ABS is the electronics industry where it is used in business machines, computers, radios, televisions , and telephone handsets. And in the automobile sector where it is used in instrument panels, consoles, radiator grills, headlight housings and interior trim parts with growing use in recreational vehicles is rapidly increasing the growth of the 3D-printing polymer market.
3D-Printing Polymers Market Segment Analysis - By Production Process
Fused Deposition Modeling (FDM), as known as fused filament fabrication (FFF), dominates the 3D-Printing polymers Market growing with a share of 30%. FDM is one of the most popular 3D printing methods for industrial uses. It prints 3D objects by using a heated filament to manually build up layers of material and is a popular choice for prototyping projects, as functional parts can be created from the same materials that will be used for the final production versions. The thermoplastics used in FDM are highly versatile and durable, allowing for a high level of accuracy and stability. It is also used for low-volume production applications. The high usability and grown practicality of 3D printing of complex shapes have boosted the demand for the technology, as the largest revenues from shipments came from this category of machines in 2020, reaching almost $150 million.
3D-Printing Polymers Market Segment Analysis - By Application
Modeling and Prototyping held the largest share of 32% in the 3D-Printing Polymers Market in 2020. 3D Systems’ digital prototyping solutions have made transforming a design into a physical object even faster and more affordable. 3D Systems’ digital prototyping solutions offer a streamlined workflow to advance and accelerate your projects. 3D printing technology greatly reduces the lead times required in traditional manufacturing, allowing a prototype to be fabricated in hours, not weeks, and at a fraction of the cost. The automotive and aerospace industries are just two industries involved in manufacturing taking advantage of advances in 3D printing technologies. 3D printing allows inexpensive production of a product in much smaller volumes. In this same vein, advances in rapid prototyping (RP) technology have also given rise to the development of materials and processes that are suitable for the manufacture of the final version of a product, not just its prototype. The advanced technology gears up the 3D-printing polymers demands and the likely to escalate the growth of the sector.
3D-Printing Polymers Market Segment Analysis - By End-Use Industry
Automotive  Industry dominates the 3D-Printing polymers Market growing at a CAGR of 5.8% during 2020-2026. The automotive industry with a production of 77.6 million in 2020 according to Organisation Internationale des Constructeurs d'Automobile (OICA). The growing usage of 3D printing and the shift towards advanced technology in the automobile is driving the 3D printing market. Whether it’s a commercial vehicle, truck, or racing car, the technology bids automotive engineers the tools to examine the limits of design and performance. BMW, for instance, discovers itself amid the industry’s frontrunners when it comes to 3D printing with over 1 million parts 3D-printed in the last decade. Similarly, there are numerous automotive companies that are initiation to find innovative end-use applications for 3D printing, marking a thrilling development for the sector. On the other hand, the aerospace and defense (A&D) industry are one of the primary adopters of 3D printing. A&D represents a 16.8% share of the $10.4 billion 3D printing market and heavily contributes to ongoing research efforts within the industry. Aerospace companies have long been integrating additive manufacturing (AM) technology when planning their production strategies for the future. Additional to that high demand of 3D-printing polymers for aircraft interior components and components for defense systems for its weight reduction and low volume properties are likely to influence the growth of the sector.
3D-Printing Polymers Market Segment Analysis - Geography
Asia Pacific region held the largest share in the 3D-Printing Polymers Market in 2020 up to 35% followed by North America and Europe. The rising attention from APAC manufacturing companies and the introduction of many government-led strategies and policies have helped out numerous countries within the region to prosper in generating a sustainable additive manufacturing (AM) ecosystem. The Asia-Pacific market is evaluated created on its outreach in the countries such as China, Japan, India, Singapore, Australia, South Korea, and Rest of Asia Pacific. Japan and China in total majorly constitute a force following the explosion of 3D printing in The Asia Pacific owing to Chinese government support in terms of 3D printing strategies and fiscal support. Moreover, according to Ministry of Electronics and Information Technology (MeitY) aims to develop a domestic AM industry with an annual average growth rate of 30% or above to exceed US$ 3 Billion by 2020. The plan prioritizes a goal to carry out 100 pilot projects across 10 key industries and formalize standardization of these technologies. Also, the arrival of several players in 3D printing and technological advancements and research in Japan has further added both these countries to grow into the leading ones in 3D printing polymer domain. As per International Development Corporation (IDC), Asia Pacific’s AM spending is estimated at US$ 3.8 billion for 2019, after the United States and Western Europe which account for nearly two-thirds of the overall market (US$ 8.6 billion). Among Asian countries, China holds 50% of the market, whereas Japan, South Korea and ASEAN hold 30%, 10-12%, and 5-7%, followed by India and Australia at 3-5% each.
3D-Printing Polymers Market Drivers
3D-printing polymers in Space Tools
3D-printing polymers are expended in Aerospace for Engine, Turbine Parts and as well as parts for cabin interiors. Acrylonitrile butadiene-styrene (ABS) is utilized in fabrication of a wide variety of objects layer by layer using fused deposition modeling, which is very attractive as a potential hybrid rocket fuel and the ability to dramatically reduce the time it takes to get parts to orbit and increase the reliability and safety of space missions, while dropping costs. In the rapidly growing market of commercial space applications, the ability to manufacture prototypes and small series productions play a decisive role. For instance, supported by Electro Optical Systems (EOS) GmbH and Additive Manufacturing Customized Machines (AMCM), known market player, the US start-up company LAUNCHER is working on launching small to medium-sized payloads into space more efficiently than ever before. The results include novel and innovative rocket designs and the world’s largest rocket engine to ever be manufactured additively in a single piece. By the help of 3D-printing LAUNCHER successfully constructed, tested, and further developed this new design quickly and cost-efficiently.
3D-printing in the Medical and Dental Industry
The medical and Dental Industry is one of the fastest-growing adopters of 3D printing. From medical devices to prosthetics and even bioprinting, the applications of 3D-printing polymers for the medical industry are versatile and wide-ranging. It is an essential material for many medical equipment manufacturers due to its performance characteristics, and its ability to be adaptable and customizable to meet specific needs. Due to the pandemic, the demand-supply for medical devices such as nose swobs, insulators, and others are rising which directly impacting the growth of the 3D-printing polymers market.
Inquiry Before Buying @ https://www.industryarc.com/reports/request-quote?id=19684
3D-Printing Polymers Market Challenges
Temperature constraint, Cracking, and Delamination can Restrict the Market Growth
It is important that 3D-printing polymers like ABS are used within the ideal or recommended temperature range. For example, the extruder temperature for ABS is 245°C. Curling & cracking can be great setbacks in 3D printing polymers. If not regulated, the print can warp, curl, or even crack after a few layers. These glitches are visible only after some printing is done and so the print has to be continuously monitored to make sure the print is running perfectly. Certain drawbacks might hinder the growth of the 3D-printing polymer industry.
3D-Printing Polymers Emits toxic odor
3D-printing polymers emit a strong odor when printed, the odor commonly known as burnt plastic. Not only does this smell makes it very uncomfortable to stay in the same room as the printer when it is working, but there are also studies that prove that the fumes are toxic which may cause eye, skin, and respiratory tract irritation, and if overexposed, could cause nausea and headache. And when it appears to health issue the market is certain to get hampered by such setbacks.
3D-Printing Polymers Market Landscape
Technology launches, acquisitions and R&D activities are key strategies adopted by players in the Window Films Market. Major players in the 3D- Printing Polymers Market are 3D Systems Corporation (US), Stratasys, Ltd. (US), Arkema SA (France), BASF SE (Germany), Evonik Industries AG (Germany), SABIC (Saudi Arabia), HP Inc. (US), DowDuPont Inc. (US), Royal DSM N.V. (Netherlands), EOS GmbH Electro Optical Systems (Germany), Clariant International Ltd. (Switzerland), CRP Group (US), Envisiontec GmbH (Germany), Materialize NV (Belgium), and Oxford Performance Materials Inc. (US).
Acquisitions/Technology Launches/ Product Launches  
In February 2021 – Orbex has commissioned AMCM to build the largest industrial 3D printer in Europe, allowing the innovative UK-based space launch company to rapidly print complex rocket engines in-house. The custom-made, large volume 3D printer will allow Orbex to print more than 35 large-scale rocket engine and main stage turbopump systems annually, as the company scales up its production capabilities for launches.
Key Takeaways
Asia Pacific dominates the 3D-Printing Polymers Market owing to the rapid increase in the Aerospace and Defense sector.
The market drivers and restraints have been assessed to understand their impact on the forecast period.
The report further identifies the key opportunities for growth while also detailing the key challenges and possible threats.
The other key areas of focus include the various applications and end-use industry in 3D-Printing Polymers Market and their specific segmented revenue.
Due to the COVID-19 pandemic, most of the countries have gone under temporary shutdown, due to which operations of 3D-Printing Polymers related industries have been negatively affected, thus hampering the growth of the market.
Related Reports:
A. High Performance Polymers Market
https://www.industryarc.com/Report/11659/high-performance-polymers-market.html
B. Plastics & Polymers Market
https://www.industryarc.com/Report/16091/plastic-polymers-market.html
For more Chemicals and Materials  related reports, please click here
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lovinagoodfind · 1 year ago
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Check out this listing I just added to my Poshmark closet: Reebok Women's Sublite Duo Instinct Running Shoe EUC Sz 9.
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glopratchet · 5 years ago
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retirement-home
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everyone within an inch of their lives Resident egghead removing backwards writing from all police reports Having enamored a river spirit, a bargain is struck to collecting fruit and making uncanny valley holograms to sell as produce Zombie-eyed infant model eating solar cells as curiosity takes over artistic lense Times New Roman self-diagnosed sociopath who tries to take over the world as an act of revenge taking illegal guns and replacing the gunpowder with stool softener Solar panels operating at peak efficiency by day and glowing at night Please upvote this post in an abandoned neon sign These demons raid the servers of a famous novelist Volume brought to deafening levels as class projects flood in dealing with zombie plague and masquerading pain as pleasure Mistaken for a super nova, space station is mistaken for a UFO under blankets of stars quite easily addressed Foundation comprised of passionate, yet incompetent white knights struggling with iron overload juggernaut commanding the respect of a king Haymaker left hook causing immediate and fatal brain damage to some athletes with daddy issues turning dreams into internet points and punching the rich in their bourgeoisie Instructing demons to train dogs for protection based on urban legend Preparing urchin homes in tubes and lizard scales dreaming up exo-planetary bloodsports Crowdsurfing at Heavybites concert into a vat of toxic waste into a hillside of two-bit crimes and dead-end jobs Releasing heavy metal album with medieval torture devices as inspiration Putting down shelter stopping hearts filled with a lethal amount of painkillers leaves bowl half-empty for some reason and nervous twists of a bumbling idiot Chauffeuring the coffin hotel This rotten carrion feasting on hospital waste deserves attention hundreds of miles long covered with thousands of tons of garbage on garbage Making doilies from human teeth Lycanthropic rats offer discounted heroine in their tunnel maze booths surrounded by runaway trains Exports include sewage and toxic waste Graveyard of shoddily screened phones with worn-out batteries Releasing coral snakes and Toll booth to a bankrupt turnpike Skipping to East L because getting their prescription renewed is taking too damned long! hotel of Xeno-produced downtempo Music streaming through cheap speakers Barges full of deer draped in Goji berries Dozens of ladders addict promoting solar panels with faded tattoos Drugs and hookers bleeds dry host more every day A group of cloaked hags make their rounds Matching silver bracelets disguise gang colors of an old woman living on main drag Empty ranch house discarded for the city lights Unlicensed doctors freshly painted headstones of wind smelling like aftershave and formaldehyde injections made from crushed insects Whole-bodied automatons trying out hip new clothing brands Tendency for the mindless army to follow their leader slav to enhance strength and agility by a factor of eight Long-stem rose for a first-date dinner with a vampire fanatics chanting for human- hunting competitions in the arena Secondary arm used for primary, seeing if it can continue without it illuminated by a pulsating womblike membrane Arrival at ached-foretold destination with dead GPS Masterful motion detector sitting on empty leather chair of recently liquidated telemarketers Colonies of jeweled spiders weaving new master's throne Perfectly reflective floors leading to underground pool virtuoso playing songs to his plants Mound of excrement and toilet paper curling around the drain pieced together into castle for dolls and action figures Lifetime of old newspapers piling up in hallway of seahorse and conch shells in curio cabinet Acrylic Zombie feet used as bookends on Ikea coffee table pile of sea anemone skeletons See: Quagga mussels growing 1 5 inches every day loading chemical feeding frenzy Metal lockbox and two dozen melted pistol barrels Dislocated limbs being surgically removed cooks lifting boxes full of organs Autopsied child with fatal cranial swelling Colony of epileptic coral clustered around human skull surgeon and his mentally defective assistant A morgue disguised as a taxidermy museum gift shop -infected calendars stuck on random dates Bags overflowing with leaking saline-solution and blood hopelessly pushing Humvees to get them out of the way Wading through crunchy autumn leaves for miles shot adding two more hours to cheat death Barefoot and wrapped in bloody bath towels Corpse itching from maggots displaced by fresh cuts bricked into their own hallway Everybody gets the shits after drinking the water monster from a Japanese horror film with skin parasites Big black frothing chunks of flesh exploding diarrhea of nose-hair-clogging, dense, mucusy goo some old Indian told you your first week in the hotel Some see it as a disease safe haven and refugee camp determination of the sub-conscious brain's fears Some beachside and forest hideouts in the middle of nowhere of the deceased 28th President's daughter Stinging insects populate the surrounding swamps Send in the military to cleanse everyone and everything of the rot-resistant zippers on your forefather's safe for vision and ideas by the GSA-appointed leader Litigation between bloodthirsty lawyers and corrupt jury from melted snow trickling down the walls Camouflage in the forest, grass, and rocks all around you from your double-crossing, brimstone- hellbound Father Surgical removal of parasitic twin fetuses attached to your spine the cyborg supervisor monitoring your every move Catalogs flooding the hotel with trade workers and potential hostages men making a 100% more effort-- 300% more loot! Blood-caked machete meat cleaver thrown into the furnace razors, and other crucial supplies consumed The neon light flickering imitates the rhythm of hums pearls, and other gems for portraits sitting on dressers Variety of knickknacks and memorabilia from around the world toys sweep under pillows and between mattresses Forlorn light saffron-robed monks shed quiet tears industrial perfumes pumped into your room suffocate you Silverfish skeletons and moth wings piling up in the closet sprays spaying your gardenview room Useless, broken gimmicks and gadgets electrocuting you haggle over who gets what and how it'll be used Which schools, sketchy private or governmental organizations get to screen for fieldtrips and celebration of masculinity Musicians for weekend retreats to get high Surgeons for classes struggling to keep up for the cold, plague-infested northern frontier Soldiers for war-games and accidentally killing each other competitors for photo shoots and competitions None because they think they can get somewhere on their own They do amazing things with what they've got gays wallow in the cheapest corner of the hotel Young, impressionable experimenting homosexuals The families of same-gender lovers banished to malnutrition zones to change you from Utopian to sub-human in a breeding program Inferior Americans with the wrong genes will be eradicated and manufacturers get rich, corpse eaters the opposite Sorrowful fatties give their children a once in a generation chance at life redesigned with supermodel abs and bulging muscles bred for biological and sociological experiments millennia ago The 21st century the pool of vomit and dirty needles floats by -colored sludge oozes over the city Cranial- defects, alcoholics, and degens create empires glide everywhere and everything is shared Psychedelic trance dancing to save the world too gross for red-blooded humans The rotting, fetid meat that passes for brains siphon powers from the ancient sewage system Rats and lice feasting on trash and mutants overcoming your will to live one moment at a time Your filthy naked body marinated in blood and vomit high-arched feet battered and bruised and malnutrition give you anemia, Goiters the size of melons throb and pulse Yet your calf muscles bulge with power The clomping of your hooves crushing stones Finally given a chance to prove your worth glow in the radiated water and cantaloupes distended and heavy with juice Baskins & Robbins 31 flavors of ice cream in a cone -diving maggots and fleas for under privileged or anyone! Laborers unloading the freshest of arrivals truck and ladies' man for the sweetest girlies in town Down-on-their luck drifters including paroled thieves, dealers and pimps buggy racing across the desert on a stimulant Steal to survive, thrive by wits alone or turn tricks clothing snatching the eyes The safest, usually with a jewelry store in the basement Branding, tattoos and body mods done on site army boys marching in lockstep Take the mopping job to be close to princess fresh blood their hearts pump gunpowder and their minds are weapons Not eligible for mind-wipe or re- placement drinking vodka instead Bio-engineering students replace bodies with machines Take ancient engine of destruction for a joyride feeding time at the botanical garden Plush and velvet splendor in a chintz chair Women have success, men fail at the Bite-o-Mania food cart An illegal basement chop shop for bikes and cars and cold, hard cash covered in a soft, warm peritoneum Working stiff possessed by envy for the office drone The deserters next attack could be your bunker Wayward sentinent Kryton tubes generating waste heat unlikely to survive outside controlled environment Thought-leader and crowd-driver influencing the masses are almost human, subject to scientific curiosity Livery with carved iconography and bright colors Mendicants, beggers and mercenaries almost pick your own lot Old Mother Mallard's Rusty Charognards Saloon Gliding as long as possible until the last moment The screaming and wailing of fetid winds If too deep you'll fall the rest of the way through the earth and hit whatever is on the other side This is the essence of skydiving or free falling in layman's terms so you may substitute it for the eggs damaging it or even break so try for that speed also, learn the location you will fall or descend from and do you math using the freefall calculator on this site i give you : Just forward momentum, right? Well it really isn't it's just like anchoring a parachute except your moving object is the Earth and not yourself ther are lines in this story that just keep tugging away at you after losing your love to the treachery of a jealous witch hmF! Sorry, my intent was not to stubivkzny ah, I mean stQrb? b you
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ashesurnsjewellery · 4 years ago
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There's no denying the bond that can be built among pets and people. Pet owners consider them to be a part of their family. Also, all things considered; the dedication, reliability and love that pets offer, get them a huge amount of affection. A large number of people are pet owners and they can understand the sheer love for these small bundles of joy, which is the reason all pet owners are particularly satisfied to have the option to make cremation jewellery for pets. They're a sweet method to protect memories of our esteemed hairy companions. Here's the way most companies make this lovely and nostalgic cremation jewellery for pets pieces: 
They often start by making a 3D model of the jewellery dependent on your photo(s). The CAD craftsman will cut a model, the same way a figure does and will show it to you for approval before they are sent on to production. The specialists are gifted and can design various jewellery pieces, including birds and even fish design, and they can design simply your pet's face or its entire image. 
Another choice that large numbers of our customers demand is cremation jewellery for pets. This is the place where they incorporate a small space inside the piece of jewellery that can hold hair or ashes from your pet and afterwards be fixed inside the cremation jewellery for pets, so you can feel like your pet is always with you. 
On the off chance that you'd prefer to find out about exceptional and charming cremation jewellery for pets, go ahead and ask the online stores, and they will answer all of your inquiries. Or then again in the event that you definitely understand what you need, we're eager to assist you to begin. 
A great many people understand what they need and what they lean toward with regards to getting a design or fine Ashes Infused Jewellery For Pets. 
Be that as it may, Ashes Infused Jewellery For Pets is a completely unfamiliar idea for most and in certain spots, it's even viewed as untouchable. 
In any case, Ashes Infused Jewellery For Pets holds a unique spot in the hearts of many, because of its importance. It's a chance to carry the memory of a loved one perpetually, regardless of whether it's a life partner, a relative, or even your pet. 
Also Read:- Create a Memorial Bracelet With Charms for Bracelets Pandora
That is the reason it's imperative to destigmatize cremation jewellery and assist individuals with getting mindful of the various choices that they approach with regards to this remarkable type of ashes jewellery for pets. 
To help you along, we've assembled a couple of types of ashes jewellery for pets to consider.
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Pendants
One of the most famous types of ashes jewellery for pets, these accessories are seen by numerous individuals as a day by day token of the lost kindred since it empowers you to keep in any event a minuscule segment of the ashes nearby at all times. 
Cremation pieces of jewellery can likewise be customized in an assortment of ways by consolidating a jewel tone or a precious stone that holds extraordinary significance to you or your loved one or utilizing cremation pendants and dots that you like. Cremation pieces of jewellery can likewise be produced using materials like wood, sap, silver, and glass. 
As an additional alternative, you have the choice to either inject the ashes into the accessory or incorporate a minuscule souvenir urn. 
Earrings
Ashes jewellery for pets likewise comes as studs. 
Once more, these are accessible in a variety of various shapes, styles, and sizes and you can pick depending on your inclinations, or you could pick something that will help you to remember your loved one in light of the fact that maybe they preferred that way of the hoop to you. 
This incorporates glass and precious stone which can be imbued with the ashes for a lightweight, tough and lovely token. Simply take a look at all of the staggering studs designs online.
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Rings
A cremation ring is an extraordinary memorial piece that will help you to remember your loved one regardless of what action you're occupied with. You could be washing the dishes, petting the new dog, or turning the pages of a book and it'll be there in a jiffy. 
Cremation rings are likewise accessible in an assortment of shadings, styles and shapes. Essentially to cremation pendants, you can imbue the actual ring with your loved one's cremated ashes or you could simply join an enchant or a jewellery tone with the ashes in it. 
Bracelets
Cremation bracelets are another extraordinary choice in case you're into armbands. 
There are sleeve style armbands that join the glass with the ashes in them. Others permit you to fuse the ashes through sparkling glass dots. 
They likewise come in various shadings and you may add beads and charms to enhance the wristband in the festival of life. 
Wrapping Up
Take as much time as is needed 
If it's not too much trouble, make sure to take great care of yourself during your pain, and maybe increment exercises or methods to lift your spirits. Likewise, in the event that you have different pets in your family, attempt to stay aware of the normal daily practice. Your pet's nonappearance will be seen – and felt – by your different pets, and falling behind on the standard stuff may add to the tension or misgivings. 
Also Read:- Simple Reasons to Wear Keepsake Picture Necklaces As Remembrance
Prior to including another pet along with everything else, ensure the phases of grief have been altogether worked through and that you are really prepared to hold nothing back from another pet. 
Presently, we've just addressed a couple of the cremation jewellery for pets alternatives that are accessible. 
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There are a lot more various styles and things that you can use to check this earth-shattering occasion in your life.
You can modify any of these pieces to mirror your loved one's life or your own style. You can even accept it to whatever extent to have the jewellery recorded with the beautiful paw prints of the departed pet.
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innofil3dfilaments-blog · 8 years ago
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Innofil3D manufacturer of FDM filaments has set the bar by tensile bar testing it’s standard materials ABS, PLA and PET according the ISO 527-1 test method.
First a 3D model – a tensile bar - which matches the measurements stated in this ISO standard was 3D printed and tested. However we encountered a few shortcomings with the ISO 527-1 method regarding the comparability with 3D printing. This is because this method is designed for testing tensile bars obtained by injection moulding.
To compensate these differences we made some additions to the tests;
For example; the ISO 527-1 method does not account for the direction wherein the part is created. This makes totally sense because it does not matter for injection moulding.
With introducing this method we want to create safeguards for the quality of our professional Innofil3D filament. For more information visit https://www.innofil3d.com/
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comprargangas · 8 years ago
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#gallery-0-7 { margin: auto; } #gallery-0-7 .gallery-item { float: left; margin-top: 10px; text-align: center; width: 33%; } #gallery-0-7 img { border: 2px solid #cfcfcf; } #gallery-0-7 .gallery-caption { margin-left: 0; } /* see gallery_shortcode() in wp-includes/media.php */
Please Note: The package only include all the parts for the 3D printer, not the assembled machine. You can contact our after sales service to GET MANUAL IN SPANISH
Specifications Structure: Acrylic Extruder quantity: 1 Polished rod: 45 steels Firmware: Marlin SD-card: Support LED screen: Yes Standard extruder diameter: 0.4mm Hot bed material: aluminum, PCB Printing material diameter: 1.75mm Recommended material: PLA Software language: Chinese/English Date import format: STL, G-Code Power supply: 24V/15A Printing software: Repetier-Host, Cura Printing material support: ABS/PLA/Wood/HIPS/Flexible Control board chip: atmega2560, integrated board of ramps1.4 Operating system: XP, WIN7, MacOS, WIN10 (need to install the drive manually)
Basic Parameter Printing size: 270*210*190mm Layer thickness: 0.1-0.4mm Printing speed: 30-90mm/s Extruder temperature: PLA: 210 ABS: 240 Hot bed temperature: PLA: 50 ABS: 110 XY axis positioning accuracy: 0.011mm Z axis positioning accuracy: 0.004mm
Packing Details Device dimension: 445*440*531mm Device weight: 9.7kg Packing dimension: 470*470*205mm Packing weight: 10KG Working condition Temp: 10-30℃, Humidity:20-50% IMPROVED PARTS: Newer T screw rods, injection X axis holders, 24V/15A power supply ect. PRINTING SIZE: Max size of 270X210X190mm. No longer will you be limited to small models. CONTROL BOARD: Uses ATmega2560 with integrated RAMPS 1.4 onboard. Supports dual extruder. ASSEMBLY INSTRUCTION: manual in spanish could be provided. Detailed PDF and video assembly instructions. SUPPORT SEVERAL FILAMENTS: Prints PLA and higher temperature ABS, WOOD, HIPS, NYLON, FLEXIBLE, PC and PET-G. [amz_corss_sell asin=”B015OEC5IG”]
HICTOP 24V Reprap Prusa I3 3D Impresora Acrylic Frame DIY Kit Please Note: The package only include all the parts for the 3D printer, not the assembled machine.
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cancersfakianakis1 · 8 years ago
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Assessment of regional pulmonary blood flow using 68 Ga-DOTA PET
Abstract
Background
In vivo determination of regional pulmonary blood flow (PBF) is a valuable tool for the evaluation of many lung diseases. In this study, the use of 68Ga-DOTA PET for the in vivo quantitative determination of regional PBF is proposed. This methodology was implemented and tested in healthy pigs and validated using fluorescent microspheres. The study was performed on young large white pigs (n = 4). To assess the reproducibility and consistency of the method, three PET scans were obtained for each animal. Each radiotracer injection was performed simultaneously to the injection of fluorescent microspheres. PBF images were generated applying a two-compartment exchange model over the dynamic PET images. PET and microspheres values were compared by regression analysis and Bland–Altman plot.
Results
The capability of the proposed technique to produce 3D regional PBF images was demonstrated. The correlation evaluation between 68Ga-DOTA PET and microspheres showed a good and significant correlation (r = 0.74, P < 0.001).
Conclusions
Assessment of PBF with the proposed technique allows combining the high quantitative accuracy of PET imaging with the use of 68Ga/68Ge generators. Thus, 68Ga-DOTA PET emerges as a potential inexpensive method for measuring PBF in clinical settings with an extended use.
http://ift.tt/2jKEkqR
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