Get in Touch

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

Number of participants


Price per participant

Testimonials (1)

Upcoming Courses

Related Categories