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Autodesk Nastran In-Cad 2017 Essentials Autodesk Authorized Publisher [Paperback]

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  • Category: Books (Computers)
  • Author:  Ascent - Center for Technical Knowledge
  • Author:  Ascent - Center for Technical Knowledge
  • ISBN-10:  1943184690
  • ISBN-10:  1943184690
  • ISBN-13:  9781943184699
  • ISBN-13:  9781943184699
  • Publisher:  ASCENT, Center for Technical Knowledge
  • Publisher:  ASCENT, Center for Technical Knowledge
  • Pages:  352
  • Pages:  352
  • Binding:  Paperback
  • Binding:  Paperback
  • Pub Date:  01-Jun-2015
  • Pub Date:  01-Jun-2015
  • SKU:  1943184690-11-MPOD
  • SKU:  1943184690-11-MPOD
  • Item ID: 100162197
  • List Price: $75.00
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  • Delivery by: Dec 28 to Dec 30
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The Autodesk? Nastran? In-CAD 2017 Essentials student guide instructs students in the use of the Autodesk? Nastran? In-CAD software. This student guide was written using the 2017.0.0.27 build of the Autodesk? Nastran? In-CAD 2017 software. The software is a finite element analysis (FEA) tool that is embedded directly in the Autodesk? Inventor? software as an Add-In. It is powered by the Autodesk Nastran solver and offers simulation capabilities specifically tailored for designers and analysts as a tool for predicting the physical behavior of parts or assemblies under various boundary conditions. Through a hands-on, practice-intensive curriculum, students acquire the knowledge required to work in the Autodesk Nastran In-CAD environment to setup and conduct FEA analyzes on part and assembly models.

Topics Covered

  • Activate and navigate the Autodesk Nastran In-CAD environment to conduct FEA analyzes.
  • Create, edit, and assign idealizations and materials (linear, nonlinear, and composites).
  • Manage the creation, setup, and modification of analyses and subcases that are used to analyze both static and dynamic models. Specific analyses types covered in this student guide include: Linear Static, Nonlinear Static, Nonlinear Transient Response, Normal Modes, Direct Frequency Response, Modal Frequency Response, Direct Transient Response, Modal Transient Response
  • Create constraints with the required degrees of freedom and assign them to entities.
  • Create loads that accurately represent the magnitude and location of the loads the model will experience in the working environment.
  • Create Connector elements to simulate how a physical connector such as a rod, cable, spring, rigid body, or bolt will affect the model.
  • Create Surface Contact elements to define contact between interacting components.
  • Assign global and local mesh settilcĄ
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