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Training Cancellation Policy:

Registrations cancelled more than 7 days prior to a class are fully refundable.

Registrations cancelled within 7 days prior to a class, including no-shows, are not refundable; however, 50% of the fees paid may be credited toward registration for a future or rescheduled class.

If we cancel a class for any reason, you will receive, at your option, either a full refund of fees paid or full credit for fees if paid toward registration in any future class offered.

 

 

 

Autodesk® Simulation Mechanical New User

Training Schedule
Date Location Fee
  July 17, 18, 19 Anaheim, CA

$ 1430 

Select a class above and then click the register button below:

Click here to request additional information.

Course Details
Class name: Autodesk Simulation Mechanical New User
Prerequisite: Suitable for users with experience using the Autodesk Inventor product
Manual: Autodesk Simulation Mechanical
Length: Three days
Time 8 a.m. to 4: 30 p.m. (California classes start at 8:30 a.m.)
Classroom fee: Shown in table above, per person, includes manual
Customized fee: Applicable per day pricing, plus $75 for manual

Course Overview:
This course will introduce you to the analysis products available within Autodesk Simulation Mechanical. These capabilities include static stress with linear material models, heat transfer, and linear dynamics analyses. The course will focus exclusively on models originating from CAD solid modeling programs. You will learn the various meshing options available for creating solid and plate elements. You will also learn the various load and constraint options for each of the covered analysis types and how to evaluate the results of the analysis and create presentations of those results, including images, animations and HTML reports.

Topics Include:

·    Introducing Autodesk Simulation Mechanical
·    Static stress analysis using CAD solid models
·    Results evaluation and presentation
·    Midplane messing and plate elements
·    Meshing and convergence testing
·    Introduction to Contact
·    Introduction to Linear Dynamics
·    Steady-State and Transient Heat Transfer
·    Thermal Stress