Ansys Workbench – Analysis Engineering Training Program
Ansys Workbench – Analysis Engineering Training Program, available at $64.99, has an average rating of 4.08, with 100 lectures, based on 624 reviews, and has 3103 subscribers.
You will learn about What's the Finite Element Metod ? Interface of Ansys Workbench Interface of Ansys Mechanical Finite Element Analysis Steps Creating Mesh Model Technique Joints Contacts and Boundary Conditions Static Structural Analysis Dynamic Analysis Modal Analysis Transient Analysis Harmonic Response Analysis Random Vibration Analysis Explicit Analysis This course is ideal for individuals who are Engineering Students or Designers and Engineers or People who wants to be an Analysis Engineer It is particularly useful for Engineering Students or Designers and Engineers or People who wants to be an Analysis Engineer.
Enroll now: Ansys Workbench – Analysis Engineering Training Program
Summary
Title: Ansys Workbench – Analysis Engineering Training Program
Price: $64.99
Average Rating: 4.08
Number of Lectures: 100
Number of Published Lectures: 100
Number of Curriculum Items: 100
Number of Published Curriculum Objects: 100
Original Price: $19.99
Quality Status: approved
Status: Live
What You Will Learn
- What's the Finite Element Metod ?
- Interface of Ansys Workbench
- Interface of Ansys Mechanical
- Finite Element Analysis Steps
- Creating Mesh Model Technique
- Joints Contacts and Boundary Conditions
- Static Structural Analysis
- Dynamic Analysis
- Modal Analysis
- Transient Analysis
- Harmonic Response Analysis
- Random Vibration Analysis
- Explicit Analysis
Who Should Attend
- Engineering Students
- Designers and Engineers
- People who wants to be an Analysis Engineer
Target Audiences
- Engineering Students
- Designers and Engineers
- People who wants to be an Analysis Engineer
ANSYS is a general purpose software, used to simulate interactions of all disciplines of physics, structural, vibration, fluid dynamics, heat transfer and electromagnetic for engineers.
So ANSYS, which enables to simulate tests or working conditions, enables to test in virtual environment before manufacturing prototypes of products. Furthermore, determining and improving weak points, computing life and foreseeing probable problems are possible by 3D simulations in virtual environment.
ANSYS software with its modular structure as seen in the table below gives an opportunity for taking only needed features. ANSYS can work integrated with other used engineering software on desktop by adding CAD and FEA connection modules.
Course Curriculum
Chapter 1: INTRODUCTION TO TRAINING PROGRAM
Lecture 1: What We Will Learn in this Training course !
Chapter 2: INTORDUCTION TO ANSYS
Lecture 1: Chapter – 1 : Introduction to Finite Element Metod
Lecture 2: Chapter – 2 : Introduction to Ansys Workbench
Lecture 3: Chapter – 3 : Material Assignment
Lecture 4: Chapter – 4 : Ansys Mechanical Interface
Lecture 5: Introduction to Ansys Interface
Chapter 3: INTRODUCTION
Lecture 1: Chapter – 5 : Creating Mesh Model Tecniques
Lecture 2: Chapter – 6 : Contact & boundary Conditions
Lecture 3: Example Aplication – 1 : Al Cab Pressure Analysis
Lecture 4: Example Application – 2 : Force Reaction Calculation of a Gear
Lecture 5: Defining Parameters in ansys Workbench !
Lecture 6: Saving a Project
Lecture 7: Example Application – 3 : Static Structural Analysis of a Line body Table
Lecture 8: Example Application – 4 : Bearing Load Analysis For a Belt Pulley Mechanism
Lecture 9: Example Application – 5 : Creating a Mesh Model
Lecture 10: Example Application – 6 : Static Structural Analysis For a Bracket Part
Lecture 11: Example Application – 7 : Static Structural analysis For a Bridge
Lecture 12: Example Application – 8 : Static Structural Analysis With Bolt Connections
Lecture 13: Example Application – 9 : Defining Gap Between Cylinder and Piston
Lecture 14: Example Application – 10 : Defining joint Connections For a Piston
Lecture 15: Example Application- 11 : Analysis With 2D Axisymmetry Behavior
Lecture 16: Chapter – 7 : Modal Analysis
Lecture 17: Example Application – 12 : Modal analysis of a Motor Cover !
Lecture 18: Example Application – 13 : Modal Analysis With Preloading
Lecture 19: Example Application- 14 : Static Structural Analysis of a Ventilation Pipe
Lecture 20: Example Application – 15 : Bearing load With Using Symmetry Region on CAD Model
Lecture 21: Example Application – 16 : Pulley Analysis With Defining Cyclic Region
Lecture 22: Example Application – 17 : Multiple Analysis (Thermal & Structural & Modal)
Chapter 4: STATIC STRUCTURAL EXAMPLE APPLICATIONS
Lecture 1: Example Applications : Crane Apparatus Structural Analysis
Lecture 2: Example Applications : Structural analysis of a Spring
Lecture 3: Example Applications : Structural Analysis of a Pressure Vessel
Lecture 4: Example Applications : Structural Analysis of a Bike Body
Lecture 5: Example Applications : Structural Analysis of a Prosthetic Bone
Lecture 6: Example Application : Torsion Analysis of a Shaft
Lecture 7: Example Application : Structural analysis of a Pipe & Bolt Connection
Chapter 5: MESHING EXAMPLE APPLICATIONS
Lecture 1: Example Application – 1 : Meshing Basics
Lecture 2: Example Application – 2 : Different Mesh Metods
Lecture 3: Example Applications – 3 : Element Size Effects on Quality
Lecture 4: Example Application 4 – Valve Assembly Mesh Operation
Lecture 5: Example Applications – 5 : Pressure Vessel Meshing
Lecture 6: Example Application – 6 : Bomb Geometry Meshing Operations
Lecture 7: Example Application – 7 : Manifold Geometry MEshing
Chapter 6: DYNAMIC ANALYSIS
Lecture 1: Chapter – 1 : Introduction to Dynamic Analysis
Lecture 2: Chapter – 2 : Modal Analysis
Lecture 3: Example Application : Plate Modal Analysis
Lecture 4: Example Application : Plane Wing Modal analysis With Preloading
Lecture 5: Chapter – 3 : Harmonic Analysis
Lecture 6: Example Application : Beam Harmonic Analysis
Lecture 7: Example Application : Flywhell Analysis
Lecture 8: Chapter – 4 : Spectrum Analysis
Lecture 9: Example Application : Bridge Spectrum Analysis
Lecture 10: Chapter – 5 : Random Vibration Analysis
Lecture 11: Example Application : Girder Assembly Random Vibration Analysis
Lecture 12: Chapter – 6 : Transient Analysis
Lecture 13: Example Application : Transient analysis of a Mechanizm
Lecture 14: Example Application : Caster Wheel Analysis
Lecture 15: Example Application : Damping Effect
Chapter 7: EXPLICIT ANALYSIS
Lecture 1: Example Applications : Car Crash Analysis
Lecture 2: Example Applications : Audi Car Body Crash Test Analysis
Lecture 3: Example Applications : Crash Test Analysis For Two Cars
Lecture 4: Example Applications : Pile up Analysis With Cars
Lecture 5: Example Applications : Bullet Analysis
Lecture 6: Example Applications : Crash Analysis For Two Objects
Chapter 8: RIGID BODY DYNAMICS ANALYSIS
Lecture 1: Example Applications : Circular Gears Analysis
Lecture 2: Example Applications : Conic Gears Analysis
Chapter 9: STEADY STATE THERMAL ANALYSIS
Lecture 1: Example Applications : Copper Pipe Heat Transfer Analysis
Lecture 2: Example Applications : Heat Transfer Analysis With Contacts
Chapter 10: TRANSIENT THERMAL ANALYSIS
Lecture 1: Example Applications : Heat Transfer Analysis on a Radiator
Chapter 11: EIGENVALUE BUCKLING ANALYSIS
Lecture 1: Example Applications : I Section Buckling Analysis
Lecture 2: Example Applications : Topology Optimization of Bracket With Reverse Engineering
Chapter 12: NONLINEAR ANALYSIS
Lecture 1: Chapter – 1 : Introduction to Non Linear Analysis
Lecture 2: Chapter – 2 : Contact Formulations
Lecture 3: Example Application – 1 : Smal & Large Deflection Theory
Lecture 4: Example Application – 2 : Shell Disk Analysis
Lecture 5: Example Applications – 3 : Contact Stiffness Study
Lecture 6: Example Application – 4 : Symmetric & Asymmetric Behavior of Contacts
Chapter 13: TOPOLOGY OPTIMIZATION ANALYSIS
Lecture 1: Chapter – 1 : Introduction to Topology Analysis
Lecture 2: Example Application – 1 : 2D Michell Structure topology Analysis
Lecture 3: Reverse Engineering in Scapce Claim
Lecture 4: Reverse Engineering and Validation Analysis with New Solid Model
Lecture 5: Topology Analysis of Two Connected Parts
Lecture 6: Topology Optimization & Reverse Engineering For a Solid Part
Lecture 7: Bracket Topology Optimization in Different Lod Cases
Lecture 8: Topology ptimization For Modal Analysis
Lecture 9: Bracket Topology Analysis and Reverse Engineering
Chapter 14: SPACECLAIM PROGRAM
Lecture 1: Introduction to SpaceClaim
Instructors
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Academy of Engineering
Institute of Expert Training Programs
Rating Distribution
- 1 stars: 12 votes
- 2 stars: 30 votes
- 3 stars: 98 votes
- 4 stars: 245 votes
- 5 stars: 239 votes
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