Ansys Tutorial

所在平台: Udemy

课程主页: https://www.udemy.com/course/ansys-tutorial/

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**Course Summary: ANSYS Composite PrepPost (ACP) Tutorial** This Coursera course provides a comprehensive tutorial on using ANSYS Composite PrepPost (ACP) for the analysis of layered composite structures. Composites, known for their strength and lightness, are crucial in modern product design, enabling complex shapes and superior performance. The tutorial is structured into 11 sections, guiding beginners through the process step-by-step. * **Section 1:** Introduces ANSYS software and ACP tools, focusing on adding ACP to the project schematic and creating simple geometries. * **Section 2:** Details essential ACP tools: Draping, Rules, Rosette, and Orientation. This section is critical and should not be skipped. * **Section 3:** Demonstrates modeling a T-beam shape in ANSYS ACP and performing stress analysis, an excellent exercise for beginners. * **Section 4:** Dedicated to buckling analysis in composite materials, this section covers how to find eigenvalues for simple composite plates. * **Section 5:** Explores the integration of ACP with other ACT extensions, specifically the Honeycomb Creator, for generating and combining honeycomb structures with composite models. * **Sections 6, 7, and 8:** Focus on combining ACP models with mechanical models in ANSYS Workbench, presenting three distinct mechanical examples. * **Sections 9, 10, and 11:** Cover advanced topics including fatigue analysis, natural frequencies, and various failure modes like rebounding, delamination, and progressive failure. Beginners are strongly advised to complete the earlier sections before attempting these. With approximately 1800 students having enrolled, the instructor emphasizes the importance of following the tutorials sequentially from Sections 1 to 5 to build a strong foundation for creating any model in ANSYS ACP. Regular course updates based on student feedback are ongoing. **Note:** Unauthorized broadcasting, public performance, copying, or re-recording is a copyright infringement.

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Composite materials are created by combining two or more layered materials, each with different properties. These materials have become a standard for products that are both light and strong. Composites provide enough flexibility so products with complex shapes, such as boat hulls and surfboards, can be easily manufactured. Engineering layered composites involves complex definitions that include numerous layers, materials, thicknesses and orientations. The engineering challenge is to predict how well the finished product will perform under real-world working conditions. This involves considering stresses and deformations as well as a range of failure criteria. ANSYS Composite PrepPost provides all necessary functionalities for the analysis of layered composite structures.This tutorial has been divided to 11 sections. in order to get the best result please follow tutorials step by steps if you are beginners.The first section of this tutorial is an introduction to Ansys software and ACP tools. You will learn how to add ACP tools into project schematic and create very simple geometry. In the second section you will learn about tools inside ACP such as Draping, Rules, Rossete, Orientation. This section is crucial for everyone in order to continue tutorials. This section all tools explained step by step (PLEAEE DO NOT MISS THIS SECTION) In the third section, you will learn how to model T beam shape in ANSYS ACP and do stress Analsys. This is a good example for beginners to test their modelling skills in ACP software.Buckling is one of the important subject in composite material. Therefore, the whole section four is dedicated to this matter to find eigenvalue for simple composite plate ACP tool can be coupled with other ACT extensions such had honeycomb creator. In this section, you will learn how to create honeycombs and combine that with composite model in ACP. In the section sixth, seventh and eighth you will learn how to combine model with mechanical model and ACP. Three different mechanical examples have been solved with ACP and mechanical model in ANSYS workbench. DO NOT MISS SECTION 6 Sections 9, 10 and 11 are dedicated to fatigue, natural frequencies, failure such as rebounding, delamination and progressive failure. PLEASE DO NOT ATTEMPT TO DO THESE SECTION WITHOUT DOING PREVIOUS SECTIONS IF YOU ARE BEGINNERS. This course has around 1800 students so far and I noticed some students skip the basic tutorials and jump to advanced examples then they complain that videos did not cover everything. In order to have the best of this course is better to start from basic and learn all the tools from section 1 to 5 then you would be able to create any model in ANSYS ACP. I hope you all enjoy this tutorials. Please send me message if you think anything can improve the quality of this course as I am updating course regularly. Many thanks Armin"All rights reserved,Any unauthorized broadcasting, public performance, copying or re-recording will constitute an infringement of copyright"

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