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Course Outline
Introduction
- Review of core SolidWorks fundamentals
Multibody Design Techniques
- Developing multibody parts
- Controlling the visibility of tree items
- Applying patterns to bodies
- Merging distinct bodies
- Creating intersections with solid bodies
- Using the indent feature
- Removing solid bodies
Managing Solid Bodies
- Differences between multibody parts and assemblies
- The body saving function
- Inserting new components
- Designing for rapid tooling
- Splitting components
- Automating assembly processes
Sketching with Splines
- Incorporating curves into sketches
- Working with splines
- Analyzing solid geometry
- Style and fit spline applications
Basics of Sweeping
- Fundamentals of sweeping
- Sweeping using guide curves
- Utilizing the SelectionManager
3D Sketching and Curve Features
- Applying curve features
- Sweeping along 3D paths
- Executing 3D sketches
- Using helix curves and spiral features
- Merging curves
- Smoothing transitions
Threads and Library Feature Parts
- Bottle features
- Storing library feature parts
- Performance optimization considerations
- Generating sweep paths and edges
Advanced Sweeping
- Exploring sweep options
- Configuring sweep parameters
- Managing profile orientation
- Intersection curve features
- Visualizing cross-sections of sweeps
Loft and Boundary Features
- Comparing complex feature types
- Executing loft and boundary operations
- Duplicating and editing sketches
Advanced Loft and Boundary Features
- Incorporating additional curves into lofts and boundaries
- Centerline-based lofting
- Inserting sketch segments
- Refining and cleaning up models
- Manipulating faces
Advanced Filleting and Additional Features
- Fillet configurations and parameters
- Various fillet options
- Using FilletXpert
- Wrap and deform features
Smart Features and Components
- Investigating advanced feature patterns and configurations
- Streamlining design modifications with smart features
- Leveraging design library components and customizable features
Finite Element Analysis (FEA)
- Overview of FEA principles
- Setting up FEA simulations in SolidWorks
- Assigning materials and boundary conditions
- Mesh generation and model refinement
- Conducting static and dynamic analyses
- Interpreting FEA outcomes
- Optimizing designs based on FEA insights
Macros and Design Notebook
- Introduction to SolidWorks macros for task automation
- Developing custom tools, menus, and macros to boost productivity
- Using the design notebook
- Combining macros with the design notebook
Conclusion and Future Directions
Requirements
- Fundamental computer literacy
- Knowledge of mechanics and electronics principles
- A solid grasp of basic SolidWorks concepts
Target Audience
- Mechatronics engineers
- Mechanical engineers
- Electrical engineers
- Electronics engineers
35 Hours
Testimonials (1)
The practices and the fact that you can share your screen for guidance from the trainer