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Structural Engineering Design Services Project from Affordable Structural Engineers
Indeed, many Structural Engineering Services providers are surviving in the domain of our operations but alas, handful of them comprehends the nature of these services. At Structural Drafting India, we acknowledge the value of innovation, industry standards, contemporary machinery and adept workforce that's why we retain and believe in doing the same as well. From distinct areas of a Structural Engineering Design and analysis, we receive preliminary, conceptual and detail designing projects because the clients rely on us and our proficient workforce is predominantly intended to delivery industry's top-notch Structural Engineering Design services. Being a veteran company, we firmly believe in maintaining the world-class standards in terms of quality, reducing the designing time frames and overall cost. Our preeminent designers prop up all the phases of Structural Engineering Design process that includes modelling to analysis of pre-existing designs and construction documentation. At Structural Drafting India, our primary structural engineering services include: High Rise Structures For all sorts of commercial and residential buildings, we carryout designing and analysis procedures enforcing modernized tools and industry's standard design. Moreover, we also utilize in-house built tools. Mainly we cover the following services: * Steel, RCC and Composite Structures* Prefabricated Building Systems Industrial Structures So far, our unrivalled team of professionals did numerous industrial projects including machine foundations and load bearing structures. That's why our quintessential industry segments aren't limited to: * Oil Refineries* Composite Structures * Chemical Plants* Power Generating Units* Equipment Foundations* Printing Press Services Utilizing location standards and applicable codes, our specialists carry out the designs of custom homes and their analysis. Today, Structural Drafting India is proud of its services and we can guarantee you utmost benefits, from low operating cost to high-quality services. Since 2007, Structural drafting company India providing professional structural engineering design to the structural engineers and architects.
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CAD Design Services
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Tricks Used for CAD Configuration in Solidworks
When dealing with section alterations may should be made. Keeping the first part is wanted however doing that implies beginning another part without any preparation. Beginning without any preparation just to have a variety of shading or even to change measurements will bring about lost time. The answer for that issue is to utilize SOLIDWORKS' capacity to make Configurations from a previously existing model. In this blog, we will go over the means on the best way to make appropriate Configurations and how they can be influenced by changes inside the various Configurations.
CAD Configuration
When the Base Design has been made utilizing standard demonstrating rehearses, another variation or arrangement can be determined. It is extremely simple to begin another Configuration of the case and to make another variation select on the Configuration Tab of the Feature Manager Design Tree. Right snap on the top level and Select Add design.
From the right-click menu we can choose to Add design. Presently we need to ensure that inside the Configuration Properties under Advanced Options that we have stifled new highlights and mates confirmed. It's essential to have it confirmed to guarantee the default setup doesn't get any of the progressions made to the new arrangement.
Next, to the new Configuration, we will locate the first one under the Default Configuration. Changing names is additionally conceivable and pursues indistinguishable strides from if changing the names of highlights. A moderate double tap will work or a single tick while squeezing the F2 key to change the name.
Since the new setup has been included changes can be made. The main change is to draw what will be the trim on the top piece of the container. To do that simply chooses one of the levels faces and snap on the sketch direction inside the Sketch tab. A straightforward square shape will do in the sketch. The subsequent stage is to expel the square shape. Something very similar will be accomplished for the face on the width. The two expulsions can be reflected. Inside the Features tab, the Mirror Feature is tapped on with the square shape on the length side and the front plane. The expulsion will be reflected. For the square shape on the width face, a similar procedure will pursue except for choosing the correct plane for the Mirror Feature rather than the front. The Mahogany Box's trim will be done. The subsequent change is to now change the material to Mahogany wood.
For whatever length of time that you have the stifle new highlights choice turned on. The highlights made and material change in the New Configuration won't be physically present in the Default Configuration and be stifled inside the Feature Manager Design Tree.
Another crate Configuration should be included. This time the setup will be made by utilizing the Modify Configuration Dialog table. The Modify Configuration Dialog table can be gotten to by right-tapping on a measurement, highlight, and Material.
Once inside the table, it can enable us to make another setup just as control include concealment, materials or measurements.
Presently the third design will be included by composing in the Configuration segment. In light of measurements and materials as of now in the Configuration Modify Dialog is what's accessible to alter for the new Configuration. This can be found in the figure beneath.
The new Configuration will be named Balsa and have its length and width been six inches. The Material will likewise be changed to Balsa wood. Every one of these progressions was made inside the table without setting off to the highlights and transforming them there.
In this article, we've secured the fundamentals of making various Configurations. From the simple access to the setup tab to controlling measurements, materials, highlights, and arrangements from the Modify Configuration table.
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Elements to be considered in PCB Material Selection
The material, usually a substrate as far as PCB is concerned, plays a key role in PCB as it carries its leading functions and characteristics. In addition, PCBs allow PCBs to comply with some of the high and specific requirements specified by the products or projects for which they will work. Moreover, it is useful to reduce the cost and improve the reliability of products when choosing the optimal material.
Elements to be Considered in PCB Material Selection
• Glass Transition Temperature (Tg)
Tg refers to the temperature at which materials are converted into a glass case. The standard Tg remains above 130 ℃ while the Tg is above 170 ℃ and the middle Tg is above 150 150.
When it comes to PCB design services materials, a higher Tg should be selected, which should be higher than the current operating temperature.
• Coefficient of Thermal Expansion (CTE)
As the material warms, the material will suffer from expansion or contraction. When it comes to PCB manufacturing, since CTEs in X, Y and thickness are different, the PCB will become deformed. Moreover, the painted aperture may suffer breakage or damage the components. Therefore, CTE of the substrate material must be low enough.
• Heat Resistance
PCB is required to be heat resistant. In general, PCBs should have a heat resistance of 250 ℃ / 50s, which also works on materials.
• Flatness
PCB is required for excellent flatness feature. As far as SMT assembly is concerned, the PCB is required to feature a war sheet less than 0.0075 mm / mm.
• Electrical Performance
HF circuits require PCB materials with low static and constant dielectric loss. Besides, the insulation resistance, insulation strength and arc resistance must be in compliance with the requirements of the product.
Correlation between PCB Material Selection and Product or Industry
The choice of PCBs plays a crucial role in contributing to product reliability and is also determined by industry specificity and requirements.
Electronic products requiring higher environmental temperature or flexibility requirements, a substrate made of polyimide glass fiber is applied. For high frequency, PTFE fiberglass substrate should be applied. For PCBs that call for a higher heat dissipation requirement, the basic metal substrate must be used.
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Design of a Flare System Design
Design of a Flare System Design in LNG regasification facilities Design of a flare stack in LNG regasification facilities
Summary The torch or tea ( flare stack ) is a security system responsible for processing the surplus of gaseous hydrocarbons in a refinery. Prevents its direct emission into the atmosphere by replacing the vent with combustion; Therefore, this device also has an environmental function.
This investigation was dedicated to the design of a torch according to customer specifications and compliance with current legislation. The basic dimensions of the system were calculated based on the maximum thermal radiation of torch design and the available pressure at the entrance of the torch; for this, correlations of the fluid mechanics extracted from the CRANE book Fluid flow in valves, fittings, and pipes (Mexico City: McGraw-Hill, 1992) and the procedure and recommendations defined by the “API Recommended Practice 521” standard was used. The calculation was also made for the level of acoustic pressure typical of the operation of the torch, in order to comply with noise legislation.
Similarly, the application of the Gaussian statistical dispersion model ISC3 ( Industrial Source Complex Model ) was used to estimate the concentrations in the environment of pollutants produced by the torch, in order to comply with the environmental guidelines of the US Environmental Protection Agency (Washington DC, United States). The main applications of the system within the different industrial facilities or process plants where the torches are installed are described and the operation of a typical LNG regasification facility was emphasized.
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Choose The Appropriate Distribution Model for Reliability Data
Recently, I have been updating my knowledge of reliability analysis, which is the use of data to assess the ability of a product to function over time. Quality engineers generally use reliability analysis to predict the probability that a certain percentage of products will fail over a certain period of time.
The statistical software will do the calculations involved in a reliability analysis, but there is a catch: first, you must choose a distribution to model your data. Simply put, you should tell the software to base your analysis on the normal distribution, the Weibull distribution, or perhaps some other more exotic distribution.
Why is distribution choice important for reliability analysis?
turbine Let's say you work for a company that manufactures windings of turbine engines. He worries that if these parts are exposed to high temperatures, they will fail at an unacceptable rate. You want to know, at high temperatures given, the moment when 1% of the windings fail.
First, collect the failure times of the pieces at two temperatures. In the first sample, test 50 windings exposed at 80 ° C; In the second sample, test 40 items at 100 ° C.
Naturally, you want your reliability analysis to be ... um ... reliable. This is where the choice of the correct distribution comes into play. The more the distribution fits your data, the more likely it is that the results of the reliability analysis provide good information about the performance of your product.
You want to use parametric distribution analysis to assess the reliability of motor windings. But how do you know which distribution to choose for your data?
Use of statistical software to identify the distribution of reliability data.
Textbooks suggest relying on practical knowledge or direct experience with product performance. You may be able to identify a good distribution of your data by answering questions such as:
Do the data follow a symmetric distribution? Are they skewed left or right?
Is the failure rate increasing or decreasing? Or does it remain constant?
What distribution has worked for this analysis in the past?
Choose the best distribution model of the identification diagram
We are looking to see which distribution line is the most appropriate for our data. We can immediately rule out the exponential distribution, where almost none of our data points follow the best fit line. The other three look better, but the points seem to fit the straight line of the lognormal plot better, so the distribution would be a good option to run subsequent reliability analyzes.
Sometimes it can be difficult to determine which distribution is the most appropriate in the graph, so you should also check the Anderson-Darling goodness of fit values and other statistics in the output of the Session window. Anderson-Darling values appear next to the "Correlation coefficients" in the graph. The lower the Anderson-Darling value, the better the distribution adjustment.
For our data, the Anderson-Darling value for the lognormal distribution is lower than that of other distributions, which further supports the lognormal distribution as the best fit.
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3D CAD software comes with more than 700,000 standard templates of various mechanical components. By utilizing 3D CAD modeling for designing, the mechanical designers can use existing readymade templates
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Fatigue Analysis. The name might sound clinical, but its significance is not. Fatigue Analysis is to fundamentally test the capacity of the product and how many life cycles it
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