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This course is designed to make SOLIDWORKS Simulation users productive with the SOLIDWORKS Simulation Professional extension. This 1 day course will provide an in-depth coverage on the advanced topics in Finite Element Analysis (FEA) including heat transfer analysis, frequency analysis, fatigue, stability analysis based on the linear buckling concepts, and pressure vessel modulus. Example of parts and assemblies including those with various gap contact conditions are reviewed. 

buy now buttonLength: 1 day
Prerequisites: Students must have attended the introductory SOLIDWORKS Simulation Course (3 Days) or must have working knowledge of the SOLIDWORKS Simulation software. Knowledge of SOLIDWORKS and basic mechanical engineering concepts is recommended.

View Lessons Below 
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  • 01Frequency Analysis of Parts 
    Objectives 
    Modal Analysis Basics 
    Frequency Analysis with Supports 
    Frequency Analysis without Supports 
    Frequency Analysis with Load 
  • 02Frequency Analysis of Assemblies 
    Objectives 
    All Bonded and Free Contact Conditions
    Bonded and Allow Penetration Contacts 
  • 03Buckling Analysis
    Objectives 
    Buckling Analysis 
  • 04Load Cases 
    Objectives
    Load Cases
  • 05Submodeling
    Objectives
    Submodeling
    Parent Study
    Child Study
  • 06Thermal Analysis
    Objectives 
    Thermal Analysis Basics 
    Project Description
    Steady-State Thermal Analysis 
    Transient Thermal Analysis
    Transient Analysis with Time Varying Load 
    Transient Thermal Analysis Using Thermostat
  • 07Thermal Analysis with Radiation
    Objectives 
    Steady State Analysis 
  • 08Advanced Thermal Stress 2D Simplification 
    Objectives 
    Thermal Stress Analysis 
    Project Description
    Thermal Analysis 
    Thermal Stress Analysis 
    3D Model 
    Microchip Testing Assembly 
    Thermoelectric Cooler 
  • 09Fatigue Analysis 
    Objectives 
    Fatigue
    Stress-Life Based Fatigue
    Thermal Study 
    Thermal Stress Study
    Fatigue Terminology
    Fatigue Study
    Fatigue Study with Dead Load 
  • 10Variable Amplitude Fatigue
    Objectives 
    Project Description
    Fatigue Study 
  • 11Drop Test Analysis 
    Objectives 
    Drop Test Analysis 
    Rigid Floor Drop Test 
    Elastic Floor Drop Test 
    Elasto-Plastic Material Model
    Drop Test with Contact 
  • 12Optimization Analysis
    Objectives 
    Optimization Analysis
    Static and Frequency Analysis
    Optimization Analysis
    Design Study 
  • 13Pressure Vessel Analysis 
    Objectives 
    Project Description
    Pressure Vessel Analysis 
    Manhole Nozzle Flange and Cover