Become CAE Analyst with Abaqus Implicit Solver & Hypermesh
Become CAE Analyst with Abaqus Implicit Solver & Hypermesh, available at $59.99, has an average rating of 4.4, with 44 lectures, based on 98 reviews, and has 473 subscribers.
You will learn about Industrial workflow of CAE with ABAQUS Solver This course is ideal for individuals who are Mechanical Engineers or Automobile Engineers or Civil Engineers or CAE Enthusiast or Design Engineers It is particularly useful for Mechanical Engineers or Automobile Engineers or Civil Engineers or CAE Enthusiast or Design Engineers.
Enroll now: Become CAE Analyst with Abaqus Implicit Solver & Hypermesh
Summary
Title: Become CAE Analyst with Abaqus Implicit Solver & Hypermesh
Price: $59.99
Average Rating: 4.4
Number of Lectures: 44
Number of Published Lectures: 44
Number of Curriculum Items: 44
Number of Published Curriculum Objects: 44
Original Price: $199.99
Quality Status: approved
Status: Live
What You Will Learn
- Industrial workflow of CAE with ABAQUS Solver
Who Should Attend
- Mechanical Engineers
- Automobile Engineers
- Civil Engineers
- CAE Enthusiast
- Design Engineers
Target Audiences
- Mechanical Engineers
- Automobile Engineers
- Civil Engineers
- CAE Enthusiast
- Design Engineers
******************* Course Structure ***************************
If you are beginner in CAE, I will highly recommend you to first complete my course:
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On hypermesh : titled “Complete Altair Hypermesh & Optistruct Course”.
OR
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On ANSA : titled “Complete Course on Preprocessing using ANSA” .
This course is intended for the people who are already working in CAE or for those who knows any preprocessing tools such as hypermesh or ansa.
Main theme of the course is Non-Linear analysis. Course takes you on step by step journey in which you will get deeper
understanding on working professionals uses Abaqus to solve physical problems. For most options along with the implementation their theory and repercussions of changing various parameters on results have been discussed in depth.
Below is the brief outline of the course and various modules involved in the course.
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Theory of FEA/CAE
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Objective of this module is to get you familiar with FEA/CAE.
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Understanding problem solving techniques.
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How FEA works.
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Abaqus & Hypermesh Overview
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Creating .inp File
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Abaqus RUN Command Line
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Postprocessing – Plate
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File Structure in ABAQUS
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Node Keyword
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Element Keyword
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Property Keyword
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Material Keyword
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Deck Keywords
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.dat File
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Streamlining our Workflow
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*NODE PRINT
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RBE2 Element
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*MONITOR
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Non Linear Analysis
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Introduction -Types of Nonlinearity
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Geometric Non-Linearity
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Material Non-Linearity
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Conversion from engg to true stress strain
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*PLASTIC
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Bilinear Material Model
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Equivalent Plastic Strain (PEEQ)
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Why We Need Contacts
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Creating Groups
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Surface Interaction ( Friction Property)
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Dataline for Contact Pair,Friction,Surfaces
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Dataline to Guide Non-Linear Analysis
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Step, Increment and Iteration
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CSTRESS_3D_Element
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CSTRESS_2D_Element
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Master Slave Surface Selection – 01
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Master Slave Surface Selection – 02
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Node to Surface vs Surface to Surface
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So Enroll now and start this exciting journey with me.
******************* Course Updates ***************************
1. Added section on theory of CAE .
Objective : this section will help beginners to understand concept explain in main body of course more easily. This section covers basic concepts related to CAE and FEA.
2.Added new video titled “Implicit vs Explicit”.
Course Curriculum
Chapter 1: Theory of CAE
Lecture 1: Product Lifecycle Management
Lecture 2: Degrees of Freedom
Lecture 3: Methods to Solve Engineering Problem
Lecture 4: Intuition of CAE Software's/Tools
Lecture 5: CAE and it's Domains
Lecture 6: Steps in FEA
Lecture 7: FEA and Interpolation Function
Lecture 8: Types of Numerical Methods
Lecture 9: Types of Elements
Lecture 10: Linear vs Non-Linear and Steady vs Transient
Lecture 11: Types of Structural Analysis
Lecture 12: Types of Dynamic Analysis
Lecture 13: Implicit vs Explicit
Chapter 2: Abaqus & Hypermesh Overview
Lecture 1: Creating .inp File
Lecture 2: Abaqus RUN Command Line
Lecture 3: Postprocessing – Plate
Chapter 3: File Structure in ABAQUS
Lecture 1: Node Keyword
Lecture 2: Element Keyword
Lecture 3: Property Keyword
Lecture 4: Material Keyword
Lecture 5: Deck Keywords
Lecture 6: .dat File
Chapter 4: Streamlining our Workflow
Lecture 1: *NODE PRINT
Lecture 2: RBE2 Element
Lecture 3: *MONITOR
Chapter 5: Non Linear Analysis
Lecture 1: Introduction -Types of Non-linearity
Lecture 2: Geometric Non-Linearity
Lecture 3: Material Non-Linearity
Lecture 4: Conversion from engg to true stress strain
Lecture 5: *PLASTIC
Lecture 6: Bilinear Material Model
Lecture 7: Equivalent Plastic Strain (PEEQ)
Lecture 8: Why We Need Contacts
Lecture 9: Creating Groups
Lecture 10: Surface Interaction ( Friction Property)
Lecture 11: Dataline for Contact Pair,Friction,Surfaces
Lecture 12: Dataline to Guide Non-Linear Analysis
Lecture 13: Step, Increment and Iteration
Lecture 14: CSTRESS_3D_Element
Lecture 15: CSTRESS_2D_Element
Lecture 16: Master Slave Surface Selection – 01
Lecture 17: Master Slave Surface Selection – 02
Lecture 18: Node to Surface vs Surface to Surface
Chapter 6: Deck Preparation in ANSA
Lecture 1: Abaqus Deck Preparation : Example 01
Instructors
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Orville Academy
CAE Engineer at reputed MNC
Rating Distribution
- 1 stars: 0 votes
- 2 stars: 0 votes
- 3 stars: 9 votes
- 4 stars: 35 votes
- 5 stars: 54 votes
Frequently Asked Questions
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Can I take my courses with me wherever I go?
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