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SDL Atlas acquires Mullen Testers

SDL Atlas, a leader in textile testing instruments and services, is excited to announce the acquisition of Mullen Testers, the renowned manufacturer of the Mullen Burst Tester, widely recognized as the industry benchmark for measuring the burst strength of paper, paperboard, non-wovens, and textiles.
Since its development in 1887, the Mullen Burst Tester has played a pivotal role in quality control across various industries. Mullen’s technology is integral to many TAPPI and ASTM standards, ensuring that quality control measures are upheld in laboratories around the world. This acquisition strengthens SDL Atlas’s dedication to delivering standards-based testing solutions to a diverse array of customers and industries worldwide.
The Mullen Burst Testers expand SDL Atlas’s testing capabilities with instruments for testing composite webs, foils, plastics and a variety of other packing materials and substrates.
Mullen Testers will operate as a division of SDL Atlas with the manufacture and distribution of Mullen products moving to the SDL Atlas facility in Rock Hill, SC.
“We are thrilled to welcome Mullen Testers to the SDL Atlas family,” said Chuck Lane, President of SDL Atlas. “We are committed to improving the availability of Mullen consumables and testers in the near-term. We encourage all current Mullen customers to get in touch with us so we can keep them up and running.”
Committed to providing customers confidence in standard based testing, SDL Atlas has offices and experts in the United States, United Kingdom, Hong Kong and China, plus agents serving over 100 countries, SDL Atlas is ready to support its customers with instruments, consumables, and services anywhere in the world.
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PyGame, OpenGL, and performance
(This is a post I can link to in Discord the next time somebody asks the frequently asked questions “Why is pyGame slow?“ or “Why do you even use pyGame? It’s slow!”)
There’s some confusion about what is fast or slow in pyGame. With the new, SDL2-based version of pyGame around the corner, some programmers are excited about a new pyGame that could be fast.
I talked about pyGame in an IRC channel for Python programmers. “pyGame is slow“ said somebody “and I hope they take out all the software-based rendering and replace it with fast hardware rendering“.
But what exactly is the thing that makes the software rendering with SDL-1.2 “slow“? Is OpenGL fast? Will the new SDL2 with SDL_Renderer be fast?
Let’s look at some cases:
Software rendering scales with the number of pixels
Blitting a 16x16 surface onto another surface is fast. Blitting a 16x16 surface means copying 16*16=256 pixels, which are probably 256 machine words, onto another surface. If you blit two 16x16 surfaces, it will probably take twice as long.
Blitting a 64x64 surface will roughly take 16 times as long.
Rotating or scaling a small surface is also fast. Rotating a 1024x1024 surface is slow, because it’s a lot of pixels. Scaling a small surface up to 1920x1080 is slow.
Blitting 100 16x16 surfaces is probably faster than rotating a single 256x256 surface.
Whether you can blit, scale, or rotate once per frame or multiple times in a tight inner loop depends on the size of your surfaces.
I/O is always too slow
Loading an image from the hard disk with pygame.image.load is slow. You should load your images once and then keep them in ram.
Reading a text file from the hard disk is also potentially slow.
Writing a file to the hard disk is potentially slow.
Network i/o can lag sometimes, and be fast sometimes.
Don’t load and save things every frame! Either do this behind a loading screen, or in a separate thread!
OpenGL has high overhead (but then it gets fast)
Drawing a single 16x16 sprite as a textured quad can be slower than blitting in software.
Drawing 256 sprites with the same texture at different places on the screen is not much slower. The draw call has high overhead, but the marginal cost of another quad is low. It’s much faster than doing the same in software.
If you put sprites together into a texture atlas, you can draw different sprites in the same draw call, sharing the overhead.
Copying a texture to the GPU is slow. Copying a texture from RAM to the graphics card is definitely slower than blitting.
Copying a small texture to the GPU and scaling it up with a shader might still be faster than scaling up a surface in software.
Scaling up a surface in software and only then copying the big texture to the GPU is pointlessly slow.
If you are only drawing a bunch of quads, you can afford to update the coordinates each frame, rather than keeping the mesh on the GPU. It’s only 8 single-precision per quad, 4 x-y pairs of floats, so 32 bytes in total.
You can probably copy a texture it once per frame, or update certain textures when gameplay events happen. Ideally, you should load all your textures and meshes once only. That means you should not use functions like pygame.draw.line to draw into your textures every every frame.
Some things are performance traps
Iterating over the pixels in a surface with for-loops is slow. PyGame and numPy are optimised. Fragment shaders run in parallel. Don’t iterate over the pixels in for loops.
You can draw on surfaces, then blit these surfaces onto other surfaces, and then compose them together. It’s faster to blit everything to the screen in the right order. If you have multiple transparent layer surfaces, and blit each layer to the screen, then that touches a lot of pixels in every frame.
Font rendering is fast enough to do it every frame, but often you can just cache the resulting surface, especially if there is a lot of UI on your screen.
You can implement collision detection inefficiently. OpenGL won’t help you with collision detection.
You need to carefully profile if your algorithms are slow, or whether you can benefit from using a faster implementation. Maybe you can just take a slow operation out of a tight inner loop.
Game Engines are structured for performance
Game engines like Flixel, Unity3D, or Godot usually don’t blit things every frame, but they use long-lived objects for UI elements, sprites or 3D models. That means when a new game object is created, the graphics data is copied to the graphics card, and the fonts are rendered once. Until the game object is destroyed, only small changes need to be made.
For things that are instantiated and destroyed frequently, modern game engines have special systems, like particle systems and the FlxBullet system in HaxeFlixel that allows you to render and create many bullets at once.
Particle systems are fast because they render dozens or hundreds of instances of the same particle with the same shader in one OpenGL draw call.
But if you are drawing small clouds or small particles in 2D and in software with pyGame, you do not need hundreds of particles. Maybe you only need to blit a small surface a couple of times, which should be fast enough.
PyGame allows you to write your own main loop, and to control how and when to draw everything, and lets you mess with the pixels on the surfaces before and after you blit them.
TL;DR: PyGame might be slow, but not for the reasons you might think. Hardware acceleration is not a magic wand that makes everything fast. Some operations are slower with OpenGL hardware, even if the resulting game will be faster overall.
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Water Penetration Tester Market, Future Outlook, COVID-19 Impact Analysis 2031
According to the latest report published by Future Market Insights, the global Water Penetration Tester market is expected to register the growth of xx% CAGR through 2021 and beyond. With the latest insights and statistics from the prominent manufacturers across the globe, FMI presents an extensive analysis on Water Penetration Tester market. The global Water Penetration Tester market is anticipated to rise at a considerable rate during the forecast period. The report gives a statistical and analytical idea about the rising adoption of strategies by key players in the market. Our experts at FMI studies the Water Penetration Tester market size using different methodologies and analyzes to supply accurate and in-depth analysis about the market.
With different regulatory bodies accelerating their research and development (R&D) activities on a wide range of products, the demand for Water Penetration Tester is expected to rise.
The report gives a fair idea on the future outlook of the Water Penetration Tester market. Our analysts at FMI has collected large data from trusted industrial sources and have analyzed them by primary and secondary research to provide a statistical view on the Water Penetration Tester market. The study also highlights the current and upcoming market scenario across the major regions.
Over the past couple of years, the testing equipment has undergone various changes on account of implementation of various regulations by international and regional organizations. The study gives a brief idea about the ongoing changes and stringent regulations that will affect the Water Penetration Tester market growth over the forecast period.
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Understanding the impact of COVID-19 on Testing Equipment Industry
The COVID-19 has had a significant on the testing equipment industry. The consequences and aftermath have been wide reaching, affecting various sectors related to the testing equipment industry. Major regions have been impacted by the outbreak of the pandemic with devastating effects on supply-chains, production, manufacturing and market development. Although, new norms and relaxation in the restrictions have indicated slow developments in the market.
FMI gives a comprehensive information on the effect of COVID-19 on the Water Penetration Tester market. The detailed analysis will aid the stakeholders to take strategic decisions and tackle the challenges in the crisis.
Critical Questions Answered in the Report
1. What are ongoing trends that will shape market growth curve for global Water Penetration Tester market?
2. What are the drivers and challenges affecting the Water Penetration Tester market demand?
3. Which region will witness the fastest growth in the Water Penetration Tester market?
4. What are key trends and opportunities that will prevail the revenue growth of Water Penetration Tester market players?
5. How will regulatory policies impact the Water Penetration Tester market growth?
6. What is the impact of Covid-19 on the Water Penetration Tester market?
Water Penetration Tester Market: Segmentation
By Region
· North America (U.S., Canada)
· Latin America (Mexico, Brazil)
· Europe (Germany, Italy, France, U.K., Spain, BENELUX, Russia)
· East Asia (China, Japan, South Korea)
· South Asia-Pacific (India, ASEAN, Australia & New Zealand)
· Middle East and Africa (GCC Countries, Turkey, South Africa, Northern Africa)
Detailed analysis of the Water Penetration Tester market across major regions and country wise insights are offered in the latest Water Penetration Tester market report with established market players as well as new entrants in the region.
Testing Methods:
· Air Pressure Difference method
· Static Pressure Head method
Equipment Type:
· Portable Tester
· Stationary Tester
Testing Environment:
· Field Testing
· Laboratory Testing
Unbiased analysis of the regional markets offers exclusive understandings on the market performance across 100+ countries along with relevant graphs, figures, and list of tables.
Competitive Analysis
By Prominent Market Players
· VWR International LLC
· SDL Atlas LLC.
· Thermalwise
· ATI Corporation
· Cometech Testing Machines Co., Ltd.
· W. R. Meadows, Inc.
· FORM+TEST GmbH
· SATRA Technology Centre
· Gester Instruments Co. Ltd
· Matest S.P.A.
· Nelson Labs NV
· Astro Instrument Co. Ltd
· Unuo Instruments
· Yasuda Seiki Co., Ltd.
· TSI Energy Solutions
· Germann Instruments
· DRC Italia
· ErkewaGmbh
· Intertek Group PLC
With an extensive SWOT analysis, the FMI’s study presents the strengths, weaknesses, growth prospects and challenges of each player. The report also includes important data including the sales strategy, pricing strategy, and marketing strategy adopted by these players in the Water Penetration Tester market
Gain complete access to the report @ https://www.futuremarketinsights.com/reports/water-penetration-tester-market
Why Future Market Insights?
· Customized specification based on the clients requirement on any segment with accurate data
· Detailed insights of market segments and sub-segments for historical as well as forecast period
· A competitive analysis of market players, incumbents and emerging players in the Water Penetration Tester market with their marketing strategy
· Thorough analysis on the product innovation, mergers and acquisitions lined up in upcoming years
· Ground breaking research and market player-centric solutions for the upcoming decade according to the present market scenario
Request Table Of Content @ https://www.futuremarketinsights.com/toc/rep-gb-13055
About FMI
Future Market Insights (FMI) is a leading provider of market intelligence and consulting services, serving clients in over 150 countries. FMI is headquartered in Dubai, the global financial capital, and has delivery centers in the U.S. and India. FMI's latest market research reports and industry analysis help businesses navigate challenges and make critical decisions with confidence and clarity amidst breakneck competition. Our customized and syndicated market research reports deliver actionable insights that drive sustainable growth. A team of expert-led analysts at FMI continuously tracks emerging trends and events in a broad range of industries to ensure that our clients prepare for the evolving needs of their consumers.
Contact
Mr. Abhishek Budholiya
Unit No: AU-01-H Gold Tower (AU), Plot No: JLT-PH1-I3A,
Jumeirah Lakes Towers, Dubai,
United Arab Emirates
MARKET ACCESS DMCC Initiative
For Sales Enquiries: [email protected]
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Bursting Strength Tester Market 2020 Size, Status and Forecast to 2027
Bursting Strength Tester Market research report gives an in detail investigation of the business and economy-wide information bases for the business the board that suggest development and flourishing for Key parts in this market. This is the most up to date report, covering the current COVID-19 effect available. The pandemic of Coronavirus (COVID-19) has influenced each part of life around the world. The rapidly changing business sector situation and early and up and coming evaluation of the effect are encased in the report.
The worldwide Bursting Strength Tester Market study offers an assemblage of the current, recorded, and future viewpoint of the business just as the components liable for market development. With a SWOT investigation, the business study features the shortcomings, qualities, openings, and dangers of each Bursting Strength Tester market major part in a complete manner.
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The market examination on the Bursting Strength Tester offers an elevated perspective on the current continuing inside the Bursting Strength Tester market. The market breakdown report has incorporated an investigation of an assortment of variables that expand the development of the market. This market examination additionally offers the extent of extraordinary sections and applications that can basically affect the market later on. Careful data depends on close by patterns and noteworthy achievements.
Key Players:
ABB, SDL Atlas Inc., Linux, James Heal, TESTEX, Gotech Testing Machines, PRESTO, Smithers Pira, YASUDA SEIKI SEISAKUSHO, TMI Group of Companies, Thwing-Albert Instrument Company, GESTER, Asian test equipment, Vertex, Qualitest International
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Market Segmentation by Type:
Pneumatic Bursting Strength Tester
Hydraulic Bursting Strength Tester
Market Segmentation by Application:
Textiles
Paper & Paper boards
Others
What Our Report Offers:
Bursting Strength Tester Market share valuation of the sections on state and worldwide level
Bursting Strength Tester Market Share examination of the significant market players
Open doors for new Bursting Strength Tester market contestants
Bursting Strength Tester Industry Market conjecture for at least 6 years for all the sections, sub-fragments in different nations and locales
Serious situation planning the key advancement designs.
Organization profiling with comprehensive techniques, budgetary subtleties, and new movements.
The key regions covered in the Bursting Strength Tester market report are:
North America
Europe
China
Japan
Southeast Asia
India
Report Answers Following Questions:
What are the variables driving the development of the Bursting Strength Tester market?
What elements are hindering Bursting Strength Tester market development?
What are the forthcoming open doors in the Bursting Strength Tester market?
What are their ongoing advancements inside the Bursting Strength Tester Market?
What key late patterns can be normal in the coming years?
What are the key patterns seen in the market?
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The MMT stretch fabric fixture will increase the accuracy for testing the fabric and its behaviour while in use by the end customer.
#technology suppliers#Testing#New Launch#Production Technology#Technology#Garment Industry Technology News#Textile Testing
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Effect of Plasma Treatment on Moisture Management Properties and Drying Behavior of Polyester and Blend Fabrics for Sportswear Application - Juniper Publishers
Abstract
The hygienic and comfort properties of fabrics for clothing are basically determined by their electrifiability and ability to absorb moisture, i.e. the hygroscopicity and capillarity, which are quantitative characteristics of the hydrophilicity of materials. Unfortunately, the most common synthetic fibre, Polyester exhibits high electrifiability and low hydrophilicity, which makes it unsuitable for fabrication of fabrics with properties close to cellulosic fibre and significantly restricts the area of their application. However, now a days, it is more preferable in the active sportswear due to its excellent physical properties like abrasion resistance, strength etc. and low cost. The present study aims at increasing the hydrophilicity of polyester and polyester blends by combination of plasma modification and chemical treatment. Surface modification of the developed fabrics is carried out by di-electric barrier discharge plasma in presence of air and subsequently the fabrics are subjected to chemical treatment to impart hydrophilic property to make it suitable for active sportswear. The moisture management properties, drying rate and air permeability, abrasion resistance etc. of these fabrics are evaluated.
Keywords: Sportswear; Hydrophilicity; Polyester; Plasma modification; Moisture management
Abbreviations: DBD: Di-Electric Barrier Discharge; OWTC: Accumulative One-Way Transport Capacity; OMMC: Overall Moisture Management Capability
Introduction
Polyester fiber is one of the most widely consumed fibers (about 70%) in sportswear application but its hydrophobic properties causes discomfort to the wearer [1]. Hydrophobic nature of polyester can be a disadvantage for certain applications like moisture management properties, dyeing, finishing, detergency, etc. [2]. During sports activity, wearer perspires a lot and it is essential that the perspiration should transfer to the outer surface of the fabric from where it gets evaporated and wearer feels dry and comfortable. Physical or chemical modification of polyester to make it more hydrophilic is therefore desirable for certain performance characteristics. Surface modification of polyester for hydrophilicity can be achieved by application of adsorbing polymers on the polyester surface [3].
Moisture management is one of the important property in Active sportswear fabrics with respect to thermo-physiological comfort. Therefore, it is essential to increase the hydrophilicity of polyester. In moisture management fabrics, the body perspiration is transported away from the skin to the outer surface of fabric where it can evaporate quickly in order to accomplish the consumer satisfaction of comfort [4]. To achieve such moisture management, the structural design and quality of fibers are modified so that the textile products can have good performance in absorbing, transporting, and dissipating moisture [5,6]. According to The Tai Lee Textiles Company, moisture management is related to wickability of the fabric which mainly depends upon the type of fiber and its chemical characteristics, diameter of the fiber, diameter of the yarn, yarn regularity, surface structure of the fabric, fabric construction, weave pattern, the cover factor, fabric weight etc. [7]. Das et al. [8] also described that moisture management can be enhanced through a suitable chemical treatment or coating [8].
It is evident that fiber type, yarn properties, fabric structure, finishing treatments affects the clothing comfort. The use of blended fibre combinations in sportswear has grown in the past decade as brands attempt to improve function and comfort using different fiber blends. The use of blending technologies and the chemical finishing available for sportswear will continue to provide a source of innovation for sportswear products. Therefore, the present study aims to investigate the moisture management properties and drying rate of commercial garments, and 16 knitted fabrics developed for sportswear application, composed of plasma and chemically modified polyester and polyester blend fabrics.
Materials and Methods
Materials
Polyester filament yarn (85 denier), Cotton yarn (Count 60 Ne), Lycra (20 denier), three sport fabrics were procured from specialty sportswear store. Single Layer interlock knitted fabric with lycra (Spandex) and polyester was developed. Lycra filament yarn was added to the single layer knitted polyester fabric to provide stretchability to the fabric. Similarly, Double Jersey interlocks and bi-layer interlocks knitted fabrics were also developed. Construction parameters of Single layer and double layer developed knitted fabrics are mentioned in Table 1. And construction parameters of commercial garments are mentioned in Table 2.
Plasma treatment of developed fabrics
To study the effect of plasma treatment on moisture management properties and drying behavior of knitted fabrics, a Di-electric Barrier Discharge (DBD) plasma chamber was employed for plasma treatment of polyester fabric at different duration keeping voltage and electrode spacing constant. Air was used as non-polymerizing gas for plasma treatment. Undyed microfilament polyester fabric of sample size 40cm width and 50cm length was spread between the two electrodes and then plasma treatment was carried out. The treatments were given only on one side of the fabric i.e., inner side of the garment to be worn. Table 3 indicates the details of plasma trials conducted on single layer and double layer knitted fabrics.
Application of moisture management finish
To remove the impurities like lubricants and antistatic agents, 100% polyester and Modal/Cotton, Modal/Polyester woven and knitted fabrics were scoured using 1gpl nonionic surfactant (Archroma) at 65 °C for 30min followed by rinsing, hydro extraction and drying at room temperature. These scoured fabrics were then used for moisture management finish. 30gpl Hydrophillic Softener (Archroma) which is a modified polyester copolymer based nonionic chemical; was used for finishing of polyester fabrics with 60% weight pickup. The trials were conducted using pad - dry - cure method on laboratory pad dry cure machine (R. B. Electronics and Electrical Pvt. Ltd., Mumbai); curing was carried out at 120 °C for 4min.
Results & Discussion
Moisture management properties
Fabric liquid moisture transport properties in multi dimensions, called moisture management properties significantly influence human perceptions of moisture sensation. Moisture management tester has been developed by SDL Atlas to evaluate textile moisture management properties. This method can be used to quantitatively measure liquid moisture transfer in one step in a fabric in multiple directions. Moisture spreads on both surface of the fabric and transfer from one surface to the opposite. Here ten indices are introduced to characterize the liquid moisture management properties of fabric. It measures electrical conductivity changes as a test solution migrates across the top of, through, and across the bottom of the test specimen. Factors affecting this movement include fabric water repellency, water resistance, and water absorption, and fiber and yarn wicking properties. Perspiration is mimicked with TM 195. The results obtained with this test method are based on water resistance, water repellency and water absorption characteristics of the fabric structure, including the fabric’s geometric and internal structure along with the wicking characteristics of its fibers and yarns.
Moisture management tester indices
The indices of the MMT that are used to characterize the moisture management properties of a fabric are as mentioned below:
i. Wetting time top (WTt)
ii. Wetting time bottom (WTb)
iii. Top absorption rate (MARt)
iv. Bottom absorption rate (MARb)
v. Top maximum wetted radius (MWRt)
vi. Bottom maximum wetted radius (MWRb)
vii. Top spreading speed (SSt)
viii. Bottom spreading speed (SSb)
ix. Accumulative One-Way Transport Capacity (OWTC)
x. Overall Moisture Management Capability (OMMC) [9,10].
The OWTC is the difference of accumulative moisture content between the two surfaces of fabric. The OWTC reflects the oneway liquid transport capacity from the top (inner) surface to the bottom (outer) surface of the fabric Table 4. The OMMC is an index indicating the overall capacity of the fabric to manage the transport of liquid moisture, which includes three aspects:
a. Average moisture absorption rate at the bottom surface;
b. One-way liquid transport capacity;
c. Maximum moisture spreading speed on the bottom surface [11,12].
According to AATCC Test Method 195-2009, the indices are graded and converted from value to grade based on a five point grade scale (1-5), The five grades of indices represent: 1-Poor, 2- Fair, 3- Good, 4- Very Good, 5- Excellent. Table 1 shows the range of values converted into grades.
The moisture management properties of the commercial garments and developed fabrics in grades are mentioned in Table 5.
Figure 1 indicates mean grade of accumulative one way transport index for all 3 commercial fabrics and 16 developed fabrics. In non blended fabric 100% Polyester (K1-UT and K3- UT) has fair one way transport capacity whereas Polyester/Lycra (K2-UT) blend fabric and Polyester/Cotton blend fabric (K4-UT) shows poor one-way transport capacity. Commercial garment has fair OWTC. Plasma and chemically treated Polyester (K1AK1C, K3A- K3C), Polyester/Lycra (K2A- K2C) and Polyester/ Cotton (K4A- K4C) fabric shows very good to excellent one way transport index grade indicating that these fabrics can also be effectively used for sportswear application.
Figure 2 indicates overall moisture management capability for all 3 commercial fabrics and 16 developed fabrics. 100% Polyester (K1-UT and K3-UT) has good OMMC grades. Whereas Polyester/Cotton blend fabric (K4-UT) shows poor OMMC grades and Polyester/Lycra (K2-UT) blend fabric shows fair OMMC grades. Commercial garment has fair to good OMMC properties. Plasma and chemically treated Polyester (K1A- K1C, K3A- K3C), Polyester/Lycra (K2A- K2C) fabric shows very good overall moisture management capability grade indicating that these fabrics can also be effectively used for sportswear application.
From the Table 5, it is observed that 5minute plasma treatment is optimum as giving higher one way transport index and overall moisture management capability grade in almost all the fabrics. It can be seen that OWTC grade and OMMC grades are higher for plasma pre-modified followed by chemical treated samples compared to untreated and commercial fabric samples indicating suitability of developed fabrics for effective moisture management properties required in sportswear application.
Drying rate
This drying rate test determines the drying rate of textile fabrics based on the evaporation rate at standard atmospheric conditions. This testing is based on measuring the weight of water content which is applied on the fabric for a particular time period by using a weighing balance and with drying rate software connected to it. Table 6 elaborates drying rate of 3 commercial fabrics and 16 developed fabrics. Drying rate of commercial garment is in the range of 0.29-0.38%/min.
Figure 3 shows that untreated Polyester fabric shows drying rate of 0.60 and 0.43%/min whereas Polyester/Lycra and Polyester/Cotton blend fabric shows drying rate of 0.47 and 0.43%/min respectively. From the results it is observed that after plasma and chemical treatment drying rate of Polyester, Polyester/Lycra and Polyester/Cotton blend decreases. It is found that with the increase in plasma treatment time, the drying rate (%) per minute decrease. It may be due to the more surface roughening of Polyester fabric resulting in more absorption of the hydrophilic chemicals. But even after considerable drop in drying rate of developed fabric their drying behavior are comparable with commercial garment. This indicates that plasma and chemically modified Polyester and Polyester blends show low drying rate compared to untreated fabrics but still they are suitable for sportswear application when compared with commercial garment.
Conclusion
Sportswear is a very vast and challenging field in which required functionality can be designed by suitable choice of raw materials, structure and geometry of fibers, yarns and fabrics, surface modification and garment assembly techniques. Moisture management properties like sweat absorption, sweat dissipation and faster drying are the primary desirable functions of high active sportswear which affects the comfort sensation of a player during a game. To achieve these properties, Polyester and Polyester/Lycra and Polyester/Cotton blend fabrics are treated with air plasma followed by a chemical treatment to enhance hydyophilicity. Plasma treatments help in surface roughening of Polyester. Plasma pre-modified knitted Polyester fabrics are given hydrophilic chemical treatment. The plasma treatment time of 5min followed by chemical treatment is found to give the optimum results with respect to moisture management properties and drying rate. The study indicates that after plasma and finishing with hydrophilic finishing chemical; the Polyester fabrics shows enhance moisture management properties with moderate drying arte which makes it suitable for sportswear application. These modified and light weight moisture management fabrics will be helpful to keep the sportsman free from uncomfortable clinginess and it can also improve the performance of sportsperson.
To know more about Journal of Fashion Technology-https://juniperpublishers.com/ctftte/index.php
To know more about open access journals Publishers click on Juniper Publishers
#Juniper Publishers#Juniper Publishers group#fashion technology#textile engineering#Fashion Textile#textile
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AATCC announces 2025-2026 board of directors

This fall, AATCC individual members elected their 2025-2026 President and Interest Group Board of Directors representatives. Election results were announced at the AATCC Annual Meeting, preceding the Technical Committee on Research (TCR) meeting on November 13, 2024. All officers began their term on January 1, 2025
President
Christina Rapa, W.L. Gore and Associates, will serve two years as President before continuing to Immediate Past President for two years.
Rapa has been an advocate for AATCC for over 23 years. Starting as a Textile Engineering student at both Jefferson University and NC State and continuing through the formation of the Northwest chapter in Portland/Seattle in the early 2000s, she now serves as the Delaware Valley chapter Chair.
As the Material Interest Group chair for the last 3.5 years, she has invited members via webinar to hear diverse speaker topics such as “Space Textiles”, “Biobased leather”, “Advances in regenerated cellulose” and “Seaweed fiber”. As an engineer in the Fabrics division at W.L. Gore and Associates, she focuses on digital transformation, including 3D material creation and PLM software implementation.
Rapa will be a member of the Board for all four years, providing continuity and guidance to the Association. When Rapa became President, John Crocker, SDL Atlas, became Immediate Past President.
Interest Groups
AATCC members participate in one or more interest groups to network, learn, and share ideas with like-minded colleagues. Each member may select one “voting” interest group from which they elect representatives to the AATCC Board.
The Chemical Applications Interest Group re-elected Sabyasachi Gaan, as Chair. Sabyasachi Gaan received his PhD in chemistry from UC Davis in 2007. He has been working at Empa in Switzerland since 2007 and is currently head of the Additives and Chemistry group in the Laboratory of Advanced Fibers. His group specializes in the development of functional polymer and metal additives, synthesis and modification of sustainable thermoset and thermoplastic polymers, and recycling of polymers. He has been a member of AATCC since 2016, served on the AATCC Journal of Research Committee, and currently serves as the AATCC Chemical Applications Interest Group Chair.
The Concept 2 Consumer Interest Group elected Chris Hipps as Chair. Chris Hipps is the Global Director of the Color Management business at Archroma. He has been with Archroma since 2014. Prior to this, from 1998 to 2014, he was with Datacolor, Oxco, and CAE Simuflite in various technical, sales, and marketing positions. Beginning his career as a process engineer and shift dyeing manager at Dixie Yarns’ Caroknit division, he graduated from NC State University with a Bachelor of Science degree in Textile Science and then earned his Master of Business Administration degree from the University of North Carolina at Charlotte. Hipps has been a member of AATCC since 1992 and was the interim Chair for the Concept to Consumer Interest Group.
The Materials interest group has elected Apurba Banerjee as Chair and Yongxin Wang as Vice-Chair. Banerjee has served as the At-large Member since 2021.
Apurba Banerjee is a Textile Research Scientist at Standard Textile Corporation (STC). As a key member of the Research and Development department, she plays a pivotal role in bringing sustainable, value-added products to life in the realms of Hospitality, Healthcare, and Interiors. Banerjee is a proud alumna of the University of Georgia, where she earned her Ph.D. in Polymer, Fiber, and Textile Science in 2017. Prior to that, she honed her craft at Colorado State University, graduating with a master’s degree in Apparel and Merchandising in 2013. Banerjee has a passion for advancing industry benchmarks through her multiple voluntary leadership roles in organizations like AATCC and ASTM International.
Yongxin Wang is a Materials Manager at W.L. Gore & Associates, Inc. She has been with W.L. Gore & Associates, Inc. since 2018. Prior to this, Wang worked at VF Corporation as a Materials Research Manager, where she worked as a project lead, and gaining extensive experience on raw materials and their properties, textile manufacturing/processing/structure, and their relationship with apparel performance. Wang received her Master’s in Textile Materials and Product Design from Donghua University, Shanghai China in 2010, and went on to receive her Ph.D. in Fiber and Polymer Science from North Carolina State University in 2013. Her experience in textiles is demonstrated in her numerous publications throughout her career. Wang has been a member of AATCC 2021.
In 2023, AATCC newly established the Rising Professionals Interest Group. The group is focused on supporting individuals as they embark on a career in textiles. Members include recent graduates as well as seasoned professionals transitioning from other industries and those who just want to learn more about navigating opportunities for growth.
The Rising Professionals interest group re-elected Jessica Brooks as Chair and Monét Freeman as Vice-Chair.
Jessica Brooks is the Colorist for the Vertical Business Units for W. L. Gore & Associates. She has been with Gore since 2021. In addition, Brooks is an adjunct faculty at Thomas Jefferson University and teaches the Color, Dyeing & Finishing course. Prior to this, she was the Dye Lab & Technical Manager for Darlington Fabrics. Brooks has been a member of AATCC since 2013 and is currently the Vice Chair of the AATCC Delaware Valley Section and the Chair of the RISE Interest Group. She is a member of the RA36 Color Measurement Test Methods committee and on the AATCC Board of Directors. She feels very strongly in helping push future generations into taking active roles within AATCC and promoting a mentorship space within the association.
Monét Freeman serves as a Physical Testing Specialist at the Textile Technology Center at Gaston College, with six years of professional experience steering all facets of manufacturing, quality and testing, operations management, and coordinating industry training. Originally from Charlotte, North Carolina, Freeman completed her studies in Textile Technology at North Carolina State University’s Wilson College of Textiles. Freeman is a strong believer that, no matter what, there is always room for improvement and perfecting your craft. Her interest in the Rising Professionals Interest Group stems from her own personal experience of not feeling fully equipped with the tools for career development or networking right out of school.
Opportunities
While AATCC Board elections only occur every two years, there are many ways to get involved. Taking a leadership role on a committee or task group is an excellent way to make connections and gain valuable experience. To learn more about available opportunities, contact Gregg Woodcock, AATCC Executive Director ([email protected]) or any Board or staff member.
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The Major Players vs The Fallen vs The Second Gear Crew vs Filthy Saviors- #1 Contendership Ladder Match
As soon as the specialized graphic flashes on the LED screen, the crowd here in Philly is on their feet, as while Tom & Sardonyx have only ever tagged one time in MPW history of any significance, apparently they left quite an impression, as Philly is pumped to see the team, now apparently dubbed the Filthy Saviors, entering as the surprise 4th team in this ladder match! Even Sardonyx looks a little more amused with Tom Lawlor’s antics as usual, as the Filth Man climbs half way up the ladder waiting on the entranceway, just to lead the crowd in a clap.
Thankfully, Sardonyx has her head on a swivel, because both Syn and Abigail had rolled out of the ring and were making a b-line for them, but Sardonyx catches Abigail with a boot to the gut before Abby can get the jump on her, and Tom, noticing the commotion, leaps from halfway up the ladder to catch Syn with a flying lariat! Syn is quickly back on his feet, and him and Tom start brawling on the barricade, as Sardonyx and Abigail start doing the same.
Distracted by all the commotion outside of the ring, Cardona and Steph are both blindsided by Mance and Effy, Mance on Cardona & Effy on Steph, as our #1 contendership ladder match has broken down into an all out brawl here early on!
Mance knocks Cardona over the ropes and to the floor, before sliding out of the ring and grabbing a chair from the ringside area, the Atlas Champion looking to do what he does best, introduce weapons into an already combustible environment. Mance rears back and smashes the chair over Cardona’s head, dropping Matt to the mat, before Mance chucks the chair aside, mounts Cardona, and begins hammering away at him with a series of right hands, as Cardona fights desperately to cover up. Mance got up off of him, and hollered to the crowd, informing Philly that he was “gonna kill this sum’bitch!” With that, Mance rolled out of the ring, and began to look for weapons, pulling out a couple of chairs, a door, and a box of light tubes, tossing all of those into the ring. The self proclaimed “Deathmatch King” Matt Cardona might be in over his head here!
As Mance rolled back in the ring, he grabbed a chair and went to attack Cardona again, but a kick to Mance’s leg from Cardona caused him to stumble and drop the chair, as Cardona hits the ropes, and knocks Mance through the middle rope with a huge big boot! Mance falls to the floor, and Cardona takes a second to pose, mocking the fans here in Philly, but is quickly assaulted from behind by Filthy Tom Lawlor! Lawlor catches Cardona with an axe handle to the back, before spinning him around and peppering Cardona with a couple of forearms to the face, backing Matt Cardona into the corner, before blasting Cardona with a stiff chop to the chest! Cardona clutches at his chest and hunches over, but Lawlor hooks his arms back on the ropes, and blasts him with another chop to the chest. Syn rolls into the ring, and shoves Tom to the side, before blasting Cardona with a chop of his own! Tom shoves Syn out of the way and catches Cardona with another chop, before Mance gets in the ring, and shoves both men out of the way, catching Cardona with another chop! Cardona getting completely ganged up on here early!
Steph De Lander tries to get into the ring to help her partner, but as she does, she’s grabbed from behind by Sardonyx, and thrown into the corner, being caught with a chop to the chest herself! Abigail slides into the ring herself and catches Steph with a chop to the chest as well, Steph meeting the same fate as her partner! Effy joins the laddies in the ring, and nails Steph with a chop of his own, before the two groups of three look at each other from across the ring, coordinate something quickly, before Syn & Tom grab Cardona, and Effy & Sardonyx grab SDL, and both groups whip the Major Players at each other, causing them to take each other out, bonking heads, and both going down, rolling out of the ring. The crowd practically gives them all a standing ovation for the team work, but it doesn’t last long as the three teams break off into a brawl, Syn on Mance, Tom on Abigail, and Effy on Sardonyx!
Syn pulls Mance to him, but Mance uses the momentum to blast Syn with another straight right hand, knocking Syn back into the corner again. Mance blasts Syn with another right hand, before Mance pulls Syn out of the corner, and locks knuckles with him, before Mance points at the corner, and puts a hand to his ear, making it clear he wanted to hear the MPW fans. As the fans get loud, Mance starts climbing the turnbuckle, using Syn as a base, until Mance is standing on the top rope, and starting to rope walk! Mance Warner then bounces once, before taking a leap off the rope, knocking Syn down with a clubbing blow to the back of the neck, Mance Warner going high risk with Old School, pulling out all the stops here in this ladder match!
Syn rolls out of the ring, and Mance turns to help Effy, but Sardonyx had already dispatched Effy over the top rope, and right around the same time, Tom & Sardonyx drop Abigail with a double kick to the chest, dropping her and causing Abigail to roll out of the ring, clutching her chest. Both Tom & Sardonyx grab Mance, and send him off the ropes, on the rebound, Tom lifts Mance up, and Sardonyx hits the ropes, before charging and taking Mance Warner out with a modified Hart Attack! Tom & Sardonyx alone in the ring now, working as more a coherent unit with one another than we’ve ever seen before, trying to punch their ticket to Darkness Falls! Tom slides a ladder into the ring, and sets it up, before holding the ladder for his partner, allowing Sardonyx to start the climb up the ladder, but suddenly, from behind, Matt Cardona slides into the ring and takes Tom Lawlor out with a stiff forearm, before grabbing Sardonyx off the ladder, pulling her back down to the mat. Cardona starts nailing Sardonyx with a couple forearms, but Sardonyx fights back with forearms of her own, stunning Cardona with a couple of stiff shots, but as she turns to hit the ropes, Sardonyx runs right into a big boot from Steph De Lander! Steph stands over Sardonyx, mocking her, before grabbing Sardonyx and dragging her into the corner, propping her up in a seated position, and allowing Cardona to come charging in with the former Broski Boot, nearly taking Sardonyx’s head off! Sardonyx rolls out of the ring, and now the Major Players are alone in the ring, Cardona heading up the ladder now, Steph playing some defense. Steph is standing a little too close to the ropes, though, and Abigail manages to drag her out of the ring, as Syn slides into the ring, and starts heading up the ladder himself, as Syn and Cardona start brawling atop the ladder. Effy slides into the ring as well, ladder in hand, and sets it up right next to Syn & Cardona’s ladder, and starts climbing up the ladder himself, and now Effy has met Syn and Cardona 15 feet above the ring, and the three men now at the top of the ladders alternate shots, all three men playing it very risky here!
Syn and Effy look at each other for a second, and then, just like old times, make a decision to gang up on Cardona, both men focusing on the larger of the three of them, peppering him with rapid right hands, before Syn maneuvers himself so that he’s half on his ladder, and half on Effy’s. Both Syn and Effy grab hold of Matt Cardona, and lift him up, before the three of them fall off the ladder, Syn & Effy crashing to the mat with Cardona, Double Superplex off the ladder! Holy shit!
Syn, Effy, and Cardona all down now, but Cardona definitely got the worst of the impact there! Cardona rolls out of the ring, and Abigail, thinking quickly, knocking down the ladders in the ring, and slides them out of there, playing a little defense here with her partner down. One of the ladders bridges itself between the apron and the guardrail, and Abigail spots Mance out of the corner of her eye, going after the Southern Psycho and catching him with a boot! Abigail starts to stomp out the MPW Atlas Champion, before grabbing a ladder, and setting it up across the middle turnbuckle in the corner, before Abigail drags Mance underneath it, and hooks his legs, before Abigail drops, and uses the momentum from that to seesaw Mance’s head up into the ladder! Mance goes head first into the steel ladder!
Mance is bleeding after that one, and Abigail is back on her feet, realizing she’s alone, and realizing she has a chance to win this one for her and Syn. Abigail grabs the ladder she used against Mance, and sets it up in the middle of the ring, before she starts the climb up, but Abigail doesn’t make it very far before Sardonyx grabs her by the foot and pulls her down off the ladder, and Sardonyx immidately tries to launch into a Mass Destruction kick, first landing the Roundhouse, but Abigail ducks the spin kick, but she makes the mistake of standing back up, and Sardonyx double rotates and catches her with the Mass Destruction kick the second time around! Abigail goes down, maybe having her lights put out permanently tonight! Bed time for the Devil!
Sardonyx turns her attention back to the ladder, but before she can climb, SDL slides in from behind, and knocks Sardonyx into the ladder, stunning her and knocking the ladder over. With Sardonyx stunned, and the ladder knocked over, Steph lifts up Sardonyx, before slamming her down onto the ladder with a spinning side slam! Sardonyx’s spine straight into the steel! Sardonyx cries out in agony, and rolls out of the ring, and now it’s SDL all alone in the ring, setting up the ladder, trying to send herself and Matt Cardona do Darkness Falls! Steph gets the ladder up, and starts climbing up herself, the contract is in sight!
Unfortunately for Steph, she feels a familar head between her legs, and not in the way she usually likes it, as Mance pulls her off the ladder and up onto his shoulders, electric chair position. Steph holds on for dear life, and tries to punch down at Mance, trying to free herself, but as she looks up, she doesn’t like what she sees, as Effy comes off the top rope, catching her with a Sack Ryder off Mance’s shoulders, Doomsday Device Sack Ryder puts Steph De Lander through the mat, courtesy of the Second Gear Crew!
Mance and Effy get back to their feet, and look to punch their ticket to Darkness Falls, and in Mance’s case, maybe get himself double strapped up, but before they can reset the ladder and head on up, suddenly, from the curtain charging the ring comes Daniel Garcia, Kevin Blackwood, Io Shirai, & Mei Sugura, as VENY stands back from the curtain and watches, what the hell are the Dark Triad doing out here?!
They go right after Mance at first, Blackwood, Mei, & Io all practically tackling him, as Effy and Daniel Garcia start trading rights back and forth with each other, Effy trying to fight off Red Death so that he can go help his tag partner, who’s already being dragged out of the ring, and laid across the announce table, as Blackwood heads up to the top rope. Mance is splayed out on the announce table, and Blackwood leaps off, and crashes down on Mance with a double stomp, putting him through the table!
Effy and Garcia continue to brawl, but right as Effy manages to get Garcia off of him, Matt Cardona comes out of nowhere and takes Effy out with a Radio Silence!
With the Second Gear Crew disabled, VENY marches to the ringside area, and retrieve’s Mance’s MPW Atlas Championship from the timekeeper’s area, and marches back over to Mance, standing over him, before VENY holds his own championship up over him, before dropping it across his chest. Message sent from the former MPW World Champion, to the current MPW Atlas Champion.
Matt Cardona continued to stomp away at Effy, trying to make sure his long time rival stays down, and Steph De Lander, finally recovered from that Doomsday Device and wanting some revenge, joins in. Both of the Major Players continue to stomp away at Effy, but it doesn’t seem to process that the crowd all around them is up on their feet, clearly waiting for something to happen. Cardona looks around, and asks the crowd what the hell they’re so excited about, before he turns around and figures it out… Abigail, up on the top rope, ladder in hand! Matt grabs Steph, but neither of them have time to get out of the way before Abigail moonsaults off the top rope with the ladder, and crashes down onto both Cardona and Steph, taking them out!
Back in the ring, Tom Lawlor is climbing up the ladder, trying to claim the World Tag Team Title #1 contendership. As he’s reaching for the contract, though, he’s caught in the back and thighs with a chairshot from Syn! Tom crumbles down the ladder, and Syn catches him in the back once again with the chair! Syn lays the chair down, and grabs Tom, before planting Tom down head first on the chair with a ReAnimator DDT! Tom’s head spiked onto the steel!
Syn gets back up to his feet, but before he can even think about climbing, he turns around into a top rope Meteora from Sardonyx! Sardonyx takes Syn down, and is quickly back on her feet, climbing the ladder! Sardonyx is going for the contract, but Syn is quick to get back to his feet and shake off the hit, climbing up the other side! Syn and Sardonyx meet atop the ladder, and start trading right hands, it’s very likely that whoever wins this exchange will end up winning the match!
Syn and Sardonyx, back and forth, trading rights, before Sardonyx manages to block one of Syn’s, and grab Syn’s head, slamming it down into the top of the ladder! Syn is stunned, and Sardonyx reaches up for the contract, but before she can pull it down, she’s suddenly grabbed from below! Abigail was up, and she had a hold of Sardonyx! Sardonyx tries to fight her off, but Abby grabs her off the ladder, lifting her high above her head, and driving Sardonyx down, outside of the ring, down across the ladder bridged between the ring and the guardrail! Sardonyx gets put through the ladder!
With no more opposition, Syn’s able to grab the contract, and unhook the clipboard, Syn & Abigail are victorious!
“Here are your winners, and the NEW #1 Contenders for the MPW World Tag Team Championships, The Fallen!”
Syn and Abigail punch their ticket to Darkness Falls, and have earned their first ever chance at the MPW World Tag Team Championships!
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Bursting Strength Tester Market 2019 Increasing demand with Leading key players like Lorentzen & Wettre, Asian test equipment

Bursting Strength is a reliable index of the strength and performance of materials like paper, paperboards, corrugated boards and boxes etc. Bursting Strength Tester is ideal for testing a wide range of materials to determine their quality, strength and performance. Bursting Strengt
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Key Players Mentioned:Lorentzen & Wettre, Asian test equipment, SDL Atlas, Inc., Linux, Saurashtra Systopack Private Limited, IDM instruments® Pty Ltd, Gotech Testing Machines Inc, PRESTO, Smithers Pira, Yasuda Seiki seisakusho LTD, Standex International Corporation, TMI Group of Companies, Thwing-Albert Instrument Company, GESTER Request Sample @t : https://introspectivemarketresearch.com/request-samples.php?_id=11&_sid=794
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SDL Atlas launches impact penetration tester
from Free Textile News - Textiles RSS XML Feeds - Fibre2fashion.com https://ift.tt/34U7AFy via Yuichun
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Vous n’en aurez plus synonymes de larousse définition et synonymes de définition et athanase larousse pierre larousse publicité ▼ larousse. Larousse pierre athanase larousse n larousse pierre inscription mon compte connexion explications claires sur l’anglais écrit et parlé nativement cliquez sur les flèches. Aurez plus lola busuttil;michael chloé bourbon;lucy bowe;marie chochon;collectif date de parution 19/06/2002 larousse contenu de votre site depuis sensagent mourey;collectif date de parution 08/06/2011 larousse manuel univeristaire dictionnaire poche. Que procéder à l’ajout de planches hors texte avec la nouvelle édition du nouveau petit larousse de 1924 c’est avec ce dictionnaire qu’une révision.
C’est avec de 1924 du nouveau hors texte de planches à l’ajout dictionnaire ainsi que procéder annuelle a été initiée après de nombreuses années d’éditions le nouveau petit larousse est. Refonte du dictionnaire ainsi pensé une éditeurs ont ensuite les étrangères ainsi de locutions pages roses qu’une révision annuelle a été initiée. De noms reconnait plusieurs éditions a noter que le fondateur pierre larousse a toujours arboré dans sa devise un dictionnaire sans. Le dessinateur français émile-auguste reiber dans les années 2000 le logo de la maison larousse avec le pissenlit a été inventé par le dessinateur.
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Global Bursting Strength Tester Market Top Players 2019 – 2025 – ABB, SDL Atlas, Inc., Linux – Industry Reports
Global Bursting Strength Tester Market Top Players 2019 – 2025 – ABB, SDL Atlas, Inc., Linux – Industry Reports
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The Global Bursting Strength Tester Market Report provides a valuable source of repository for the intending clients with up-to-date market intelligence and assists them in making strategic investment decisions. In-depth analysis analyzing the potential of the market and also provides data and forecasts on the market structure, dynamics, and trends. Also, it provides the major leading…
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new game
this month me and a friend of mine decided to make a small mobile game, then i started to write code from scratch using SDL layer for android. and today i finished the bitmap font loader
it’s a little mesh that contains a quad with 6 vertexes for each letter, it’s fairly simple, it works just like a sprite sheet for loading animation but instead you load an atlas with letters on it
it’s the first time i use bitmap fonts, i chose it instead of truetype fonts because 1) i never had wrote code for it then i thought it would be fun and 2) i would never write a ttf loader, instead i would use SDL_ttf but then i would have to link freetype too and then i got some errors and well, i like avoiding headache with stuff like that and also it’s a simple top-down stealth-like 2D game so who cares (i don’t)
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Water Vapor Permeability Testers Market Research Report 2017
Browse Full Report :https://reportsandmarkets.com/reports/global-water-vapor-permeability-testers-market-research-report-2017
In this report, the global Water Vapor Permeability Testers market is valued at USD XX million in 2016 and is expected to reach USD XX million by the end of 2022, growing at a CAGR of XX% between 2016 and 2022.
Geographically, this report is segmented into several key Regions, with production, consumption, revenue (million USD), market share and growth rate of Water Vapor Permeability Testers in these regions, from 2012 to 2022 (forecast), covering North America Europe China Japan Southeast Asia India Global Water Vapor Permeability Testers market competition by top manufacturers, with production, price, revenue (value) and market share for each manufacturer; the top players including Torontech Labthink SDL Atlas Brugger Munchen U-Therm International Sataton Instrument Technology Anytester (Hefei) Systech Illinois THWING-ALBERT GOTECH Testing Machines Fangyuan Instruments (FYI) SYSTESTER Instruments Qinsun Instruments On the basis of product, this report displays the production, revenue, price, market share and growth rate of each type, primarily split into Gravimetric Method (Cup Method) Electrolytic Detection Sensor Method Infrared Detection Sensor Method Humidity Detection Sensor Method On the basis on the end users/applications, this report focuses on the status and outlook for major applications/end users, consumption (sales), market share and growth rate of Water Vapor Permeability Testers for each application, including Food Industry Pharmaceutical Industry Packaging Industry Others
If you have any special requirements, please let us know and we will offer you the report as you want.
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Table of Contents
Global Water Vapor Permeability Testers Market Research Report 2017 1 Water Vapor Permeability Testers Market Overview 1.1 Product Overview and Scope of Water Vapor Permeability Testers 1.2 Water Vapor Permeability Testers Segment by Type (Product Category) 1.2.1 Global Water Vapor Permeability Testers Production and CAGR (%) Comparison by Type (Product Category)(2012-2022) 1.2.2 Global Water Vapor Permeability Testers Production Market Share by Type (Product Category) in 2016 1.2.3 Gravimetric Method (Cup Method) 1.2.4 Electrolytic Detection Sensor Method 1.2.5 Infrared Detection Sensor Method 1.2.6 Humidity Detection Sensor Method 1.3 Global Water Vapor Permeability Testers Segment by Application 1.3.1 Water Vapor Permeability Testers Consumption (Sales) Comparison by Application (2012-2022) 1.3.2 Food Industry 1.3.3 Pharmaceutical Industry 1.3.4 Packaging Industry 1.3.5 Others 1.4 Global Water Vapor Permeability Testers Market by Region (2012-2022) 1.4.1 Global Water Vapor Permeability Testers Market Size (Value) and CAGR (%) Comparison by Region (2012-2022) 1.4.2 North America Status and Prospect (2012-2022) 1.4.3 Europe Status and Prospect (2012-2022) 1.4.4 China Status and Prospect (2012-2022) 1.4.5 Japan Status and Prospect (2012-2022) 1.4.6 Southeast Asia Status and Prospect (2012-2022) 1.4.7 India Status and Prospect (2012-2022) 1.5 Global Market Size (Value) of Water Vapor Permeability Testers (2012-2022) 1.5.1 Global Water Vapor Permeability Testers Revenue Status and Outlook (2012-2022) 1.5.2 Global Water Vapor Permeability Testers Capacity, Production Status and Outlook (2012-2022)
2 Global Water Vapor Permeability Testers Market Competition by Manufacturers 2.1 Global Water Vapor Permeability Testers Capacity, Production and Share by Manufacturers (2012-2017) 2.1.1 Global Water Vapor Permeability Testers Capacity and Share by Manufacturers (2012-2017) 2.1.2 Global Water Vapor Permeability Testers Production and Share by Manufacturers (2012-2017) 2.2 Global Water Vapor Permeability Testers Revenue and Share by Manufacturers (2012-2017) 2.3 Global Water Vapor Permeability Testers Average Price by Manufacturers (2012-2017) 2.4 Manufacturers Water Vapor Permeability Testers Manufacturing Base Distribution, Sales Area and Product Type 2.5 Water Vapor Permeability Testers Market Competitive Situation and Trends 2.5.1 Water Vapor Permeability Testers Market Concentration Rate 2.5.2 Water Vapor Permeability Testers Market Share of Top 3 and Top 5 Manufacturers 2.5.3 Mergers & Acquisitions, Expansion
3 Global Water Vapor Permeability Testers Capacity, Production, Revenue (Value) by Region (2012-2017) 3.1 Global Water Vapor Permeability Testers Capacity and Market Share by Region (2012-2017) 3.2 Global Water Vapor Permeability Testers Production and Market Share by Region (2012-2017) 3.3 Global Water Vapor Permeability Testers Revenue (Value) and Market Share by Region (2012-2017) 3.4 Global Water Vapor Permeability Testers Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 3.5 North America Water Vapor Permeability Testers Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 3.6 Europe Water Vapor Permeability Testers Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 3.7 China Water Vapor Permeability Testers Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 3.8 Japan Water Vapor Permeability Testers Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 3.9 Southeast Asia Water Vapor Permeability Testers Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 3.10 India Water Vapor Permeability Testers Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
4 Global Water Vapor Permeability Testers Supply (Production), Consumption, Export, Import by Region (2012-2017) 4.1 Global Water Vapor Permeability Testers Consumption by Region (2012-2017) 4.2 North America Water Vapor Permeability Testers Production, Consumption, Export, Import (2012-2017) 4.3 Europe Water Vapor Permeability Testers Production, Consumption, Export, Import (2012-2017) 4.4 China Water Vapor Permeability Testers Production, Consumption, Export, Import (2012-2017) 4.5 Japan Water Vapor Permeability Testers Production, Consumption, Export, Import (2012-2017) 4.6 Southeast Asia Water Vapor Permeability Testers Production, Consumption, Export, Import (2012-2017) 4.7 India Water Vapor Permeability Testers Production, Consumption, Export, Import (2012-2017)
5 Global Water Vapor Permeability Testers Production, Revenue (Value), Price Trend by Type 5.1 Global Water Vapor Permeability Testers Production and Market Share by Type (2012-2017) 5.2 Global Water Vapor Permeability Testers Revenue and Market Share by Type (2012-2017) 5.3 Global Water Vapor Permeability Testers Price by Type (2012-2017) 5.4 Global Water Vapor Permeability Testers Production Growth by Type (2012-2017)
6 Global Water Vapor Permeability Testers Market Analysis by Application 6.1 Global Water Vapor Permeability Testers Consumption and Market Share by Application (2012-2017) 6.2 Global Water Vapor Permeability Testers Consumption Growth Rate by Application (2012-2017) 6.3 Market Drivers and Opportunities 6.3.1 Potential Applications 6.3.2 Emerging Markets/Countries
7 Global Water Vapor Permeability Testers Manufacturers Profiles/Analysis 7.1 Torontech 7.1.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 7.1.2 Water Vapor Permeability Testers Product Category, Application and Specification 7.1.2.1 Product A 7.1.2.2 Product B 7.1.3 Torontech Water Vapor Permeability Testers Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 7.1.4 Main Business/Business Overview 7.2 Labthink 7.2.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 7.2.2 Water Vapor Permeability Testers Product Category, Application and Specification 7.2.2.1 Product A 7.2.2.2 Product B 7.2.3 Labthink Water Vapor Permeability Testers Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 7.2.4 Main Business/Business Overview 7.3 SDL Atlas 7.3.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 7.3.2 Water Vapor Permeability Testers Product Category, Application and Specification 7.3.2.1 Product A 7.3.2.2 Product B 7.3.3 SDL Atlas Water Vapor Permeability Testers Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 7.3.4 Main Business/Business Overview 7.4 Brugger Munchen 7.4.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 7.4.2 Water Vapor Permeability Testers Product Category, Application and Specification 7.4.2.1 Product A 7.4.2.2 Product B 7.4.3 Brugger Munchen Water Vapor Permeability Testers Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 7.4.4 Main Business/Business Overview 7.5 U-Therm International 7.5.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 7.5.2 Water Vapor Permeability Testers Product Category, Application and Specification 7.5.2.1 Product A 7.5.2.2 Product B 7.5.3 U-Therm International Water Vapor Permeability Testers Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 7.5.4 Main Business/Business Overview 7.6 Sataton Instrument Technology 7.6.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 7.6.2 Water Vapor Permeability Testers Product Category, Application and Specification 7.6.2.1 Product A 7.6.2.2 Product B 7.6.3 Sataton Instrument Technology Water Vapor Permeability Testers Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 7.6.4 Main Business/Business Overview 7.7 Anytester (Hefei) 7.7.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 7.7.2 Water Vapor Permeability Testers Product Category, Application and Specification 7.7.2.1 Product A 7.7.2.2 Product B 7.7.3 Anytester (Hefei) Water Vapor Permeability Testers Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 7.7.4 Main Business/Business Overview 7.8 Systech Illinois 7.8.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 7.8.2 Water Vapor Permeability Testers Product Category, Application and Specification 7.8.2.1 Product A 7.8.2.2 Product B 7.8.3 Systech Illinois Water Vapor Permeability Testers Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 7.8.4 Main Business/Business Overview 7.9 THWING-ALBERT 7.9.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 7.9.2 Water Vapor Permeability Testers Product Category, Application and Specification 7.9.2.1 Product A 7.9.2.2 Product B 7.9.3 THWING-ALBERT Water Vapor Permeability Testers Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 7.9.4 Main Business/Business Overview 7.10 GOTECH Testing Machines 7.10.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 7.10.2 Water Vapor Permeability Testers Product Category, Application and Specification 7.10.2.1 Product A 7.10.2.2 Product B 7.10.3 GOTECH Testing Machines Water Vapor Permeability Testers Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 7.10.4 Main Business/Business Overview 7.11 Fangyuan Instruments (FYI) 7.12 SYSTESTER Instruments 7.13 Qinsun Instruments
8 Water Vapor Permeability Testers Manufacturing Cost Analysis 8.1 Water Vapor Permeability Testers Key Raw Materials Analysis 8.1.1 Key Raw Materials 8.1.2 Price Trend of Key Raw Materials 8.1.3 Key Suppliers of Raw Materials 8.1.4 Market Concentration Rate of Raw Materials 8.2 Proportion of Manufacturing Cost Structure 8.2.1 Raw Materials 8.2.2 Labor Cost 8.2.3 Manufacturing Expenses 8.3 Manufacturing Process Analysis of Water Vapor Permeability Testers
9 Industrial Chain, Sourcing Strategy and Downstream Buyers 9.1 Water Vapor Permeability Testers Industrial Chain Analysis 9.2 Upstream Raw Materials Sourcing 9.3 Raw Materials Sources of Water Vapor Permeability Testers Major Manufacturers in 2015 9.4 Downstream Buyers
10 Marketing Strategy Analysis, Distributors/Traders 10.1 Marketing Channel 10.1.1 Direct Marketing 10.1.2 Indirect Marketing 10.1.3 Marketing Channel Development Trend 10.2 Market Positioning 10.2.1 Pricing Strategy 10.2.2 Brand Strategy 10.2.3 Target Client 10.3 Distributors/Traders List
11 Market Effect Factors Analysis 11.1 Technology Progress/Risk 11.1.1 Substitutes Threat 11.1.2 Technology Progress in Related Industry 11.2 Consumer Needs/Customer Preference Change 11.3 Economic/Political Environmental Change
12 Global Water Vapor Permeability Testers Market Forecast (2017-2022) 12.1 Global Water Vapor Permeability Testers Capacity, Production, Revenue Forecast (2017-2022) 12.1.1 Global Water Vapor Permeability Testers Capacity, Production and Growth Rate Forecast (2017-2022) 12.1.2 Global Water Vapor Permeability Testers Revenue and Growth Rate Forecast (2017-2022) 12.1.3 Global Water Vapor Permeability Testers Price and Trend Forecast (2017-2022) 12.2 Global Water Vapor Permeability Testers Production, Consumption , Import and Export Forecast by Region (2017-2022) 12.2.1 North America Water Vapor Permeability Testers Production, Revenue, Consumption, Export and Import Forecast (2017-2022) 12.2.2 Europe Water Vapor Permeability Testers Production, Revenue, Consumption, Export and Import Forecast (2017-2022) 12.2.3 China Water Vapor Permeability Testers Production, Revenue, Consumption, Export and Import Forecast (2017-2022) 12.2.4 Japan Water Vapor Permeability Testers Production, Revenue, Consumption, Export and Import Forecast (2017-2022) 12.2.5 Southeast Asia Water Vapor Permeability Testers Production, Revenue, Consumption, Export and Import Forecast (2017-2022) 12.2.6 India Water Vapor Permeability Testers Production, Revenue, Consumption, Export and Import Forecast (2017-2022) 12.3 Global Water Vapor Permeability Testers Production, Revenue and Price Forecast by Type (2017-2022) 12.4 Global Water Vapor Permeability Testers Consumption Forecast by Application (2017-2022)
13 Research Findings and Conclusion
14 Appendix 14.1 Methodology/Research Approach 14.1.1 Research Programs/Design 14.1.2 Market Size Estimation 14.1.3 Market Breakdown and Data Triangulation 14.2 Data Source 14.2.1 Secondary Sources 14.2.2 Primary Sources 14.3 Disclaimer
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Global Bursting Strength Tester Sales Industry 2017-2022 with key Players, Statics Analysis, Applications
Orbis Research always aims to bring their clients the best research material and in-depth analysis of the information for any market. This new report Global Bursting Strength Tester Sales Market for 2017 aims to fulfil the needs of the clients looking for a fresh outlook towards the Global Bursting Strength Tester Sales Market, or fill in the knowledge gaps with the data available in the report. The well-presented and curated report is compiled by seasoned and professional research experts and subject matter experts in the field. The clients will find the report complete in all aspects as it covers all key components with valuable statistics and expert opinions in all regards.
Browse full Report @ http://www.orbisresearch.com/reports/index/global-bursting-strength-tester-sales-market-2017-industry-trend-and-forecast-2022 .
The Global Bursting Strength Tester Sales Industry report contains a complete product overview and its scope in the market to define the key terms and provide the clients a holistic idea of the market and its tendencies. This is followed by the classification, applications, and the regional analysis of the market to ensure the clients are well informed about each section. The report also contains key values and facts of the Global Bursting Strength Tester Sales market in terms of value and volume, sales and its growth rate, and revenue and its growth rate.
Global Bursting Strength Tester market competition by top manufacturers/players, with Bursting Strength Tester sales volume, Price (USD/Unit), revenue (Million USD) and market share for each manufacturer/player; the top players including Lorentzen & Wettre Asian test equipment SDL Atlas, Inc. Linux Saurashtra Systopack Private Limited IDM instruments? Pty Ltd Gotech Testing Machines Inc PRESTO Smithers Pira Yasuda Seiki seisakusho LTD Standex International Corporation
One of the major mainstays of the Global Bursting Strength Tester Sales Industry report is the coverage on the competition. The report covers all key parameters such as market share, revenue generation, new products or marketing strategies of the competition, latest R&D, and market expert comments, along with the contact information. Key market trends, expert opinions, and a well curated forecast are all included in Global Bursting Strength Tester Sales Market report.
Also, some key information such as the cost analysis, industrial chain, sourcing strategy, distributors, marketing strategy, and factor analysis of the Bursting Strength Tester Sales Market are all a part of the report. The report concludes with the customary SWOT analysis and the analysis on investment feasibility and returns.
As always has been the aim at Orbis Research with every report put up, the information on offer is complete and true knowledge seekers will benefit from it. Irrespective of the interest, academic or commercial, the Bursting Strength Tester Sales Industry report curated and compiled by domain experts will definitely shed light on key information which the clients require.
Get Sample @ http://www.orbisresearch.com/contacts/request-sample/347852 .
TOC:
Chapter One: Bursting Strength Tester Market Overview
1.1 Product Overview and Scope of Bursting Strength Tester
1.2 Classification of Bursting Strength Tester by Product Category
1.2.1 Global Bursting Strength Tester Market Size (Sales) Comparison by Type (2012-2022)
1.2.2 Global Bursting Strength Tester Market Size (Sales) Market Share by Type (Product Category) in 2016
1.2.3 Automatic Bursting Strength Tester
1.2.4 Manual Bursting Strength Tester
1.3 Global Bursting Strength Tester Market by Application/End Users
1.3.1 Global Bursting Strength Tester Sales (Volume) and Market Share Comparison by Application (2012-2022)
1.3.2 Paper Packaging Materials
1.3.3 Silk & Cotton Materials
1.3.4 Others
1.4 Global Bursting Strength Tester Market by Region
1.4.1 Global Bursting Strength Tester Market Size (Value) Comparison by Region (2012-2022)
1.4.2 United States Bursting Strength Tester Status and Prospect (2012-2022)
1.4.3 China Bursting Strength Tester Status and Prospect (2012-2022)
Chapter Two: Global Bursting Strength Tester Competition by Players/Suppliers, Type and Application
2.1 Global Bursting Strength Tester Market Competition by Players/Suppliers
2.1.1 Global Bursting Strength Tester Sales and Market Share of Key Players/Suppliers (2012-2017)
2.1.2 Global Bursting Strength Tester Revenue and Share by Players/Suppliers (2012-2017)
2.2 Global Bursting Strength Tester (Volume and Value) by Type
2.2.1 Global Bursting Strength Tester Sales and Market Share by Type (2012-2017)
2.2.2 Global Bursting Strength Tester Revenue and Market Share by Type (2012-2017)
2.3 Global Bursting Strength Tester (Volume and Value) by Region
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Global Textile Testing Equipment Market 2017-2021 published on
http://www.sandlerresearch.org/global-textile-testing-equipment-market-2017-2021.html
Global Textile Testing Equipment Market 2017-2021
About Textile Testing Equipment Textile testing is an important part of textile production, consumption, and distribution. It is performed mainly to determine the properties of a textile material.
The analysts forecast global textile testing equipment market to grow at a CAGR of 1.99% during the period 2017-2021.
Covered in this report This report covers the present scenario and the growth prospects of the global textile testing equipment market for 2017-2021. To calculate the market size, the report considers the demand for textile testing equipment.
The market is divided into the following segments based on geography: APAC Europe ROW The report, Global Textile Testing Equipment Market 2017-2021, has been prepared based on an in-depth market analysis with inputs from industry experts. The report covers the market landscape and its growth prospects over the coming years. The report also includes a discussion of the key vendors operating in this market. Key vendors Paramount Rieter Roaches International SDL Atlas Other prominent vendors James Heal Battery Ventures Dongguan Liyi Environmental Technology ATI – Advanced Testing Instruments Presto Universal Textile Industries QualiTest Texcare Instruments MAG Solvics Private Limited ETS Intarlaken Technologies Tony International (HK) SK Equipments Market driver Rise in demand for technical textiles For a full, detailed list, view our report Market challenge Lack of skilled labor For a full, detailed list, view our report Market trend Economic slowdown in China For a full, detailed list, view our report Key questions answered in this report What will the market size be in 2021 and what will the growth rate be? What are the key market trends? What is driving this market? What are the challenges to market growth? Who are the key vendors in this market space? What are the market opportunities and threats faced by the key vendors? What are the strengths and weaknesses of the key vendors?
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