FE Analysis control parameter- Basic

Course Name: FE Analysis control parameter- Basic Course Code :  AE20AM8002V0   Course Description : In this course on analysis tool training advance and basic, from BridgeNow Academy. Key pointers about the course on aircraft metallic materials ·       Creation of FE model in another pre-processor like PATRAN or use of FE model created in Hypermesh into another pre-processor by importing […]

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Course Overview

Course Name: FE Analysis control parameter- Basic

Course Code :  AE20AM8002V0  

Course Description
:

In this course on analysis tool training
advance and basic, from BridgeNow Academy.

Key pointers about the course on aircraft metallic
materials

·      
Creation of FE model in another
pre-processor like PATRAN or use of FE model created in Hypermesh into another
pre-processor by importing HM files

·      
Update and modify properties,
materials, loads and boundary conditions etc.

·      
Isotropic, anisotropic and
orthotopic material creation like Metallic and composite

·      
Use of utility and tool bar
menu options.

·      
Example problem from MSC
software for common linear static analysis, free-free and normal mode analysis.

·      
Application of knowledge base
from example problem to a real complex engineering problem.

·      
Creation of analysis deck for
linear static analysis, free-free and normal mode analysis, direct and
model-based frequency response analyses.

·      
Analysis control parameters for
various analyses and submission of analysis deck to solver.

·      
Post processing of analysis
results and result interpretation

Course Takeaways / Overview

The takeaways from this course are

·      
Perform different types of
analysis.

·      
Importing and update FE model
created in Hypermesh into other pre-processors.

·      
0D, 1D, 2D and 3D properties
and respective metallic and composited material can be created and applied to
FE model.

·      
To create and edit the solver
deck outside pre-processor.

·      
Application and use of utility
and tools option.

·      
Example problem and
extrapolation of knowledge to real complex engineering problems.

·      
Solution parameter control for
basic linear, normal mode, frequency response analyses.

·      
To import, visualize and
interpret the FEA results

·      
To make logical conclusions
from analysis results and result presentation

Course Structure:

·       Lesson 1: Normal mode and frequency response

·       Lesson 2: Linear Static Analysis

Pre-requisite:   Mechanical/Aeronautical/Automobile Engineer

Training Method: Instruction based

Course Validity: 90 days from the date of enrolment.

Downloadable Exercises: NA

Recommended Practice Hours: NA

Student Review