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SOLIDWORKS Solutions for Quality /Inspection

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DIMXPERT Detail designs without errors, automatically dimension “manufacturing” features in 3D. Check the dimensional completeness of your design Graphically display dimensional status Display dimensions created in 3D automatically on the drawing Apply +/- or geometric dimension and tolerances Ease the Process of Creating manufacturing Dimensions TOLANALYST TolAnalyst uses the input from Dimxpert. Powerful tolerance analysis tool that automatically checks the effects of tolerances on parts and assemblies to ensure consistent fit of components and to verify tolerancing schemes before the product goes into production. The tolerance analysis can be rerun instantly if a dimensioning or tolerancing change is made, enabling you to get to an optimized tolerancing scheme more quickly. SIGMUNDWORKS Five analysis types including; Worst Case, RSS (Root Sum Square), Modified RSS, Process Centering RSS, and Monte Carlo Simulations are possible ...

COLLABRATIVE WORKING IN A MULTI-USER ENVIRONMENT

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Working in a multi-user environment is a challenging and error-prone task in an engineering sector. SOLIDWORKS has options and tools to perform tasks in a multi-user environment to a great extent in an easy manner. But it is important to setup a systematic multi-user environment. Setting a Multi-user Environment: The first step for a multi-user system is assigning defined tasks for each and every person & maintaining separate level for work flow. 1) Manager : Scheduling the task & Instructing the required changes 2) Supervisors / Leaders : Check the data and assigning & coordinating the work 3) Bottom level workers / Designers : Will perform the assigned work (Designing) File Storage: The most important task is to keep data files in a centralized server or system. It should contain only read-only access to avoid accidental changes in data files. It is difficult to work together if the files are stored in the local hard drives, especially in SOLIDWORKS. Hence p...

Design Optimization Using SOLIDWORKS Configuration Publisher

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Configuration Publisher provide a solution for design optimization. It is used to create custom Property Manager for selecting configurations of parts and assemblies. Configuration Publisher is placed in the property manager. Use the Property Manager when adding a component to an assembly in SOLIDWORKS or when downloading a model from 3D Content Central. To work with configuration Publisher, Microsoft Excel must be installed on our system. Configuration Publisher to control the ranges of features in the part to optimized automatically in the design table. The Configuration Publisher dialog box, you can able to create an interface for specifying configurations of parts and assemblies. It will use the interface of SOLIDWORKS and 3DContentCentral. 1. Right click the top of the feature manager design tree and select the Configuration Publisher as in Fig 1. 2. If you not create design table,The Configure Publisher to auto-create the design table.clic...

SOLIDWORKS Electrical - Renumbering Unused Wires

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Now, let’s take a look on Ref [Fig 1] section of wires. If one of these wires is deleted, redrawn and numbered. Previously it would not look for the lowest available mark and automatically take the highest existing mark and increment by one. In this case, that would be 9 Ref [Fig 3.1]. With SOLIDWORKS Electrical 2018 , now you can control this default response not just for wires, can also for cables and components as well. In the Wire and component numbering dialog box, for Assign unused mark, select Wires and equipotentials, Cables , or Components Ref [Fig 2]. If you enable any of these options, on renumber the software will use the first available mark from 0. Here it will now use 6 Ref [Fig 3.2], the first unused mark after 0. Fig 1 Fig 2 Fig 3.1 Before 2018 Enhancement Fig 3.2 After 2018 Enhancement  

SOLIDWORKS Design Checker

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SOLIDWORKS Design Checker verifies design elements such as dimensioning standards, fonts, materials, and sketches to ensure that SOLIDWORKS documents meet company standards. With SOLIDWORKS Design Checker you can:  Verify designs against company standards   Automatically correct nonconforming design and drafting issues Build Checks—Set up and save specific design and drafting checks Check specifically for fonts, dimensions, arrows, units, and other documentation details Compare your drawing to past results from reviews of other drawings Options available to check:  Check Active Document —Run the check to validate your document (drawing or model) against the requirement Check against Existing File —Validate the active document against design checks created from existing files Learn Checks Wizard —Retrieve design checks based on attributes from an existing SOLIDWORKS part, assembly, or drawing document To enable Design Checker in SOLIDWORKS  ...

Stack up Analysis

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SOLIDWORKS  Stack up Analysis is a mathematical calculation used to measure a gap and interference value between parts in an Assembly due to variation in its form, orientation and location. Stack up Analysis is an analytical reasoning tool used to decide the allowable value of interference or gap between parts from the key perspectives of its functional requirements in an assembly and its manufacturability. Why stack up is necessary To ensure all the part fits together in assembly To measure the Allowable value in form due to the variants in manufacturing To understand the worst case of the fit and form of all parts in an assembly For manufacturing the parts by assuring the allowable variation in size and location SOLIDWORKS  tolerance stack up analysis provides solution for finding the minimum and maximum deviation and root sum squared (RSS) tolerance analysis . Benefits: Well understanding of the functional requirement of the each part i...

Comparison of SolidWorks Simulation with Mathematical Calculation

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Mathematical Calculation The below shown in figure 1 which formed by two different materials AISI 1020 and Alloy Steel. The component is fixed at one end and in other side axial load is applied. Figure 1 The compound beam as two elements and three nodes as shown in figure 2 Figure 2 SolidWorks Simulation Simulation Procedure Cad Geometry Type of Analysis Type of Materials Fixtures Loads Meshing Results Cad Geometry Study Results Stress Results Displacement Results