Review the basic functionality of the SOLIDWORKS Nonlinear module. Show activation of SOLIDWORKS Simulation Add-In. Learn three basic nonlinear phenomena in engineering calculations. Review of control methods available in the module. Review of basic material models available in the module.
Animations provide an extra visual representation of how an assembly can be put together, taken apart, and shows the order in which parts are added. Animations compliment exploded views incredibly well and help manufacturers and assemblers understand exactly how the components come together. Animations also serve as a great marketing tool, as they can show off the complexities of the design as well as how refined the final product is. In this lesson, an Animation will be created in SOLIDWORKS Composer by exploding additional components in this assembly.
Understand how to start routing and how the route subassembly organizes and stores the components of a route. Enable the Routing add-in. Locate the Piping, Tubing and Electrical menus. Understand a routing subassembly. Identify routing library components. Use the routing library manager to load settings.
Learn how to optimize designs to reduce model weight by varying model dimensions. Apply parameters and constraints to optimize your design to meet goals. Learn how design studies are used with Simulation.
Exploded views can be created in SOLIDWORKS Composer and are incredibly helpful when trying to show all the components used in an assembly, or for showing how to assemble, disassemble, or repair the assembly. Exploded views can also be used for other purposes such as showing off a design by a marketing team. In this lesson, an exploded view and detailing the individual components will be shown by adding labels to each part in the assembly.
Observe stress analysis of a part using SimulationXpress to determine the deformation of the part under the influence of a load (force or pressure). Understand the assumptions and limitations of SimulationXpress. Observe stress analysis being performed on a part.
Generate a cam profile based on an input follower displacement from a data set. Define a motion of a follower using Data Points. Generate a cam profile using Trace Path. Verify the generated cam profile.
Simulate a mechanism placing an object into a box and a cover on the box. Apply servo motors. Add proximity sensors. Create and run event based motion study.
Understand the components of SOLIDWORKS PDM Standard, the role of each component, and how the components interact with each other. These components include: Microsoft® SQL Server® Express. SOLIDWORKS PDM Database Server. SOLIDWORKS PDM Archive Server. The three SOLIDWORKS PDM Client types.
Understand how to install and configure the components of SOLIDWORKS PDM Standard. Install and configure Microsoft® SQL Server® Express. Install Microsoft® SQL Server® Management Studio. Install the SOLIDWORKS PDM Database Server. Install the SOLIDWORKS PDM Archive Server. Install the SOLIDWORKS PDM CAD Editor client.
Automate the conversion of imported part geometry into a SOLIDWORKS feature-based, parametric model. Open an imported data file in SOLIDWORKS. Use the Import Diagnostics tool to repair imported geometry. View the FeatureWorks options. Use the Automatic feature Recognition Mode. Map the features to the part model. Guide the Automatic Recognition Mode for the best results.
Learn about SOLIDWORKS Flow Simulation software. View sample applications from the real world. View sample real world examples where the software was used.
Prepare SOLIDWORKS geometry for Flow Simulation analysis. Create lids manually. Create lids using the Lid Creation tool. Check if the geometry is water tight for internal flow analysis. Detect leaks in improperly sealed geometry.
Build the SOLIDWORKS Flow Simulation project. Use Wizard to define Flow Simulation project. Define boundary conditions. Define goals. Mesh the model geometry.
Run SOLIDWORKS Flow simulation and monitor it. Postprocess Flow simulation results. Launch the SOLIDWORKS Flow simulation and monitor it in the solver window. Monitor execution of the simulation in the solver window. Postprocess results using cut plots, surface plots, flow trajectories. Create 2D graphs from the calculated results, extract results on desired geometrical entities.
SOLIDWORKS Motion is a virtual prototyping tool for engineers and designers interested in understanding the performance of their assemblies. Perform a basic motion analysis using SOLIDWORKS Motion. Simulate the weight of a vehicle on the jack. Determine toque and power required to lift it.
Examine the motion of a catapult as it is loaded and throws a projectile. Add solid bodies contact, add a spring and apply friction. Determine torque required to rotate the crank and load the catapult. Determine the displacement of the loading spring. Study the effect of contact friction on the motion of the projectile.
Discover how to create groups, split parts, use the Preview Options, and, for SOLIDWORKS Visualize Professional users, add “Baked Lighting” to a project. Located in the Models Tab, the Scene Tree is the keeper of your 3D data and can help organize your project. Explore all the options and features available in the Models Tab. Learn how to organize your model into parts and groups to make complex animations much easier. Use the handy Part Splitter tool for extracting parts directly within Visualize to apply separate appearances. Understand the benefits of Baked Lighting for realtime presentations.
Being able to incorporate SOLIDWORKS Composer files into a Word document or a PDF gives more flexibility to share information with manufacturers and assemblers. Even if a user doesn’t have SOLIDWORKS Composer downloaded on their machine, incorporating an SMG file into a Word document or a PDF can be a way to communicate efficiently using Composer files. In this lesson, you will see how to link SOLIDWORKS Composer file into a Word Document and a PDF as well as show how different configurations can be loaded in the same document.
Learn how shells are used to model thin structures. Create shells on thin structures using the shell manager. Apply symmetry fixtures to reduce computational efforts.
Create a sheet metal part of constant wall thickness using sheet metal features. Explore the fundamentals of creating sheet metal parts using the flange method. Create a base flange in a sheet metal part. Understand the use of gauge tables and sheet metal options. Flatten a sheet metal part.
Understanding the import process into SOLIDWORKS Visualize is essential to working efficiently, and can be controlled by both the import settings and the organization of the original CAD file. Learn the two most common import settings to setup the Visualize project for different workflows; one to make the model quick and easy to work with and the other to allow for live updates and more flexibility with the model grouping. Learn how to best prepare your CAD file for the desired Visualize experience. Understand how to efficiently import models into Visualize by selecting the appropriate Import Settings. Utilize CAD Live-Update for a seamless design process.
Create a weldment frame from a series of layout sketches. The weldment environment uses standard weldment profiles to define the type of structural members in the weldment. Members of the same type and size are created in one feature. Create a weldment frame. Insert structural members. Relocate the profile sketch. Change corner treatments.
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