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Costing Template for Multi-Body Main Template using SOLIDWORKS

SOLIDWORKS SIMULATION - SUBMODELLING

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Overview St. Venant’s Principle The stresses reasonably distant from an applied load on a boundary are not significantly altered if this load is changed to a Statically Equivalent Load. The distribution of stress and strain is altered only near the regions of load application FEA Which Includes with a large number of parts, the new Submodeling feature allows you to improve the results at critical areas without having to rerun the analysis for the whole model. Refining the mesh for a selected portion of the model and rerunning the analysis only for the submodel saves computation time. Key Benefits of Submodeling Transfer of Complex Global Loads from the entire structure to Local Regions  to obtain Accurate Stress in a Local Region. Enables to experiment with Different Designs for the Region of Interest by refining mesh on the particular part Rerunning the analysis only for the submodel saves computation time

Improve your product performance, quality and reduce your prototyping costs

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What is  SolidWorks   Simulation? SolidWorks Simulation virtually tests the product designs in real time conditions before manufacturing. With Simulation, designers and engineers can develop new concepts and innovate with design insights Why SolidWorks Simulation? SolidWorks Simulation helps the design engineers to validate for extreme loading conditions and various classes of materials in the real time conditions . It performs complex part and assembly problems within integrated SolidWorks environment. The tool helps the designers to make the decision for their exact product requirement. Designers can concentrate on various factors like Stress, Strain, Displacement, Factor of Safety and Temperature Distribution to obtain the optimised product design. This tool will also validate for non linear and dynamic problems and vibration effects on the designs. Benefits of SolidWorks Simulation Reduce prototyping costs Easily tackle the...

Reverse your Engineering to Success

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There can be no better tool than SOLIDWORKS to market your product efficiently.

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Costing template for Machining using SOLIDWORKS

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HVAC using SolidWorks Flow Simulation

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What is HVAC? HVAC stands for Heating, Ventilation and Air Conditioning. The purpose of HVAC system is to control the Temperature and Moisture of air. Air Handling Units (AHUs) used to cool, heat, humidify, dehumidify, filters and ventilate the air before it distributes to different areas of a building. Why SolidWorks Flow Simulation HVAC? HVAC System designer can efficiently and easily evaluate and optimize HVAC Systems with CAD embedded CFD, augmented with the HVAC application module. Designer can ensure Thermal Performance and design Quality at the start and avoid costly rework later on. How SolidWorks Flow Simulation HVAC helps designer? Human Comfort Factors - calculate eight comfort parameters (including 'Predicted Mean Vote' [PMV] and 'Predicted Percent Dissatisfied' [PPD]) to measure thermal comfort and identify potential problem areas Advanced Radiation - model absorption of radiation in solid bodies and definition of the radiation sp...

Design Validation on Special Purpose Machines (SPM)

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Design validation is the process of ensuring the quality of Designed product, by conforming to user specifications and requirements. Special Purpose Machine (SPM) designers and Manufacturers produce tailor-made machine tools as dictated by their customers. Validation of these machines fall into two categories - Analytical and Physical. Analytical methods include Finite Element Analysis (FEA), Computational Fluid Dynamics (CFD), Kinematic Analysis of Mechanisms and Free-Body Diagram. Physical testing include deflection measurements, strain gauging, vibration testing, measuring fluid flow parameters, temperature measurement, accelerated durability testing and frequency response measurements. Virtual design validation simplifies the Conventional process and requires only a 3d CAD Model to validate product's mechanical resistance, durability, natural frequencies, heat transfer and buckling instabilities. SPM design Challenges: Increased design cycle time...

Are you stuck doing repetitive tasks on your product design?

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In today's competitive market, every product developer, specifically companies making custom products and high volume manufactures, want to automate their product design instead of doing it right from the scratch to shorten the design cycle time and reduce cost due to manual errors. SOLIDWORKS 3D CAD provides a fantastic in-built automation tool, DRIVEWORKS XPRESS which helps to automate design task benefiting companies in generating infinite variations of model using rules based project. Set up the rules once and run it again and again to get the automated manufacturing drawing in no matter of time.   SOIDWORKS 3D CAD give designers and engineers powerful tools to accelerate the development of design variants and automate repetitive design tasks thereby fastening the design process, saving time and development costs and increases productivity.   Team EGS Website Mail id Social Media  

Customize Costing Template as per Industry Requirement

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Optimise Plastic Part Design in the initial stages of development

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Design plastic parts more efficiently and accurately. Take the complexity out of getting your injection molds right the VERY first time . In a matter of minutes you can test your designs for possible flaws and defects, eliminating rework of expensive molds and reducing costs. SolidWorks Plastics makes it easy for parts and injection molds. You don’t have to be an expert to easily identify and address companies that design plastic parts or potential defects by making changes to the part or mold design, plastics material, or injection molds to predict and avoid processing parameters, saving resources, time and money. Manufacturing defects during the earliest stages of design, eliminating costly rework, improving quality, and accelerating time-to- intuitive workflow and design advise to market. Fully integrated with SolidWorks CAD, SolidWorks Plastics works directly on your 3D model, avoiding model conversion issues. You see this intuitive software helps part designers, the impact ...

Design for Manufacturing and Assembly using SOLIDWORKS

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Design for Manufacturing (DFM) and Assembly (DFA) always has been a challenging proposition when it comes to new product development or cost savings on existing products. At the end of the day, products have to meet the requirements of our end customers. This presentation is about design for manufacturing and assembly, how we use our CAD tools day-in and day-out, in terms of leveraging on the capabilities of 3D CAD, specifically as addressed by quality requirements. It starts with manufacturing of the individual parts and assembling of the same. Benefits of DFM and A using SOLIDWORKS First time right Improved profitability Reduced service calls Enhance Quality Team EGS Website Mail id Social Media

Best Design using SOLIDWORKS SIMULATION Standard

Which design works best? How do you know you have the best design? When it comes to choosing the best design for your project, do you: Go with your gut? Cross your fingers and hope for the best? Methodically test a series of expensive physical prototypes? Now there is a better way. Validate your designs before Prototype and manufacture Products, with design validation tools from SolidWorks Simulation.    SolidWorks Simulation Standard is recently introduced by SolidWorks to enable every designer and engineer to simulate and analyze their product performance with fast, easy-to-use CAD-embedded analysis solution. It will also keep your investment low.    SolidWorks Simulation Standard can helps you to predict product performance accurately, while your in design stage itself a nd to speedup your design process, innovate faster, and more confident in the product performance. SolidWorks Simulation Standard software is u...