Ansys Workbench - Introduction to simulation design
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A good introduction to the software and how we use it properly.
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The features were explained thoroughly and basics were covered. The course is very fruitfull for beginner and intermediates.
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The coerce provide a good introduction.
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Training
Online

Beschreibung
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Kursart
Training
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Niveau
Beginner
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Methodik
Online
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Beginn
nach Wahl
This course presents a collection of classes aimed at the basic management of ANSYS Workbench, one of the most comprehensive and extended solids modeling, simulation, and optimization programs.
Classes go through topics of geometry creation, stress analysis, heat transfer, and vibration modes. We will also discuss the generation of finite element meshing.
The progress of the course is planned to follow the design steps in a logical order, so each topic will help us reach increasingly complex analyzes.
As we discuss the basics, you will find practical examples that you can run on your own computer to increase your skills. You can advance at your own pace, or even go to topics where you need to reinforce knowledge.
ANSYS Workbench 15.0 has been developed on a framework that allows you to introduce a new way of working with your projects in a schematic way. Here you will learn to use these tools, whether you have worked with previous versions or if you are starting.
DesingModeler
In the geometry creation section, we will guide you through the process of creating and editing geometries in preparation for analysis in ANSYS Mechanical, covering topics such as:
-User interface
- Creation of sketches
- Creation of 3D geometries
- Import data from other modelers
- Model with parameters
- Mechanical
In the following sections, we will focus on the mechanical simulation module. Here you will learn how to use this module effectively to build a mechanical simulation model, analyze it, and interpret the results, covering topics such as:
- The analysis process
- Static structural analysis
- Vibration Modes Analysis
- Thermal analysis
- Case studies with multiple scenarios
We will always be updating the information for you, so you will have a dynamic course where you can find useful and practical data.
Wichtige Informationen
Welche Ziele verfolgt der Kurs?:
- Use ANSYS Workbench to interact with the ANSYS family of solvers.
- General User Interface Understanding.
- Understand the procedures for performing static, modal and thermal simulations.
- Use parameters to generate various scenarios.
Ist dieser Kurs für mich?:
- Engineers
- Mechanical technicians in the design area
Wie geht es nach der Informationsanfrage weiter?: Receive the link to get the course.
Voraussetzungen: - It is recommended to have prior knowledge of finite element analysis but it is not necessary to have an engineering degree. - It is recommended to have the program installed on your personal computer to be able to follow the classes with your own practices. - Previous experience in the management of programs with CAD environment. - Prior knowledge of the fundamental laws of mechanical, structural and thermal design.
Standorte und Zeitplan
Lage
Beginn
Beginn
Themen
- Ansys Workbench
- Ansys
- Modelling
- Vibration mode
- Design Modeler
- Electromagnetism
- Geometry
- Stress Analysis
- Fluid flow
- Simulation
- Mechanical simulation
- Model Builder
- Modelling skills
- 3D drawing
- 3D Models
- Design Training
- Design Skills
- Design Analysis
- Drawing software
- Design Tools
Inhalte
1. Finite elements and Ansys
Section 2: Interface (Workbench)
2. Workflow in Ansys
3. Material data
Section 3: Geometry (DesignModeler)
4. Introduction to Ansys DesignModeler
5. Drawing and modification tools
6. Sizing and restrictions
7. Sketches and dimensions (Practical example)
8. Body types in DesignModeler
9. General Solid Tools
10. Extrusion tool
11. Revolution tool
12. Swept tool
13. Patterns
14. Operations with bodies
15. Boolean operators
16. Solid creation (Practical example)
17. Import geometry
18. Parameterization
Section 4: Mechanical Simulation Module
19. Interface Description
20. Analysis procedure
21. Basic analysis (Practical example)
22. Rigid and flexible bodies
23. Contacts
24. Mesh (Global controls)
25. Mesh (Local Controls)
Section 5: Structural Static Analysis
26. Static structural analysis
27. Analysis Settings
28. Load application
29. Supports Definition
30. Results Plot
31. Results Tools
32. Practical example - Industrial Wheel
Section 6: Modal Analysis
33. Free vibration analysis
34. Free vibration analysis - Simple
35. Prestressed vibration analysis
Section 7: Stationary Thermal Analysis
36. Stationary Thermal Analysis
37. Thermal contacts and initial conditions
38. Temperature results
Section 8: Parameterized scenarios
39. Analysis for various design points
Section 9: Conclusion
40. Farewell
Ansys Workbench - Introduction to simulation design