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所在平台: Udemy |
课程主页: https://www.udemy.com/course/abaqus-tutorial-intermediate/
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课程名称: Abaqus教程:粘接接头和复合材料 概述:欢迎参加Abaqus粘接接头和复合材料教程,这是您学习如何在Abaqus软件中建模粘接接头和复合材料所需的唯一课程。该课程专为想要扩展有限元知识的机械工程和土木工程学生或工程师设计。课程内容包括输入参数背后的理论、建模过程以及结果分析。本项目适合已经具备基础Abaqus知识的个人,如您是Abaqus初学者,请先参考我的入门课程。 课程内容:该课程分为8个部分,每个部分旨在教授新的知识。为了获得最佳学习效果,建议按顺序学习,因为基本术语仅在初始部分进行了说明。 1. **2D粘接的双持梁(DCB)模型(粘结元件法)**:学习如何用粘结元件法建模二维双持梁。 2. **2D粘接的单搭接连接(SLJ)模型(基于表面的粘结区)**:学习如何用基于表面的粘结区模型建模二维单搭接连接。 3. **3D粘接的双持梁(DCB)模型(粘结元件法)**:学习如何用粘结元件法建模三维双持梁。 4. **2D粘接的双持梁(DCB)模型(XFEM方法)**:熟悉扩展有限元方法(XFEM)来建模二维双持梁。 5. **2D粘接的端缺弯曲梁(ENF)模型(XFEM方法)**:学习如何用XFEM方法建模二维端缺弯曲梁。 6. **2D粘接的端缺弯曲梁(ENF)模型(粘结元件法)**:学习如何用粘结元件法建模二维端缺弯曲梁。 7. **柔性粘接(2020年5月新更新)**:学习如何在Abaqus软件中建模柔性粘接,包括柔性粘接的超弹性特性、体积柔性样本、带柔性粘接的单搭接连接及柔性粘接的梯形拉伸分离法。 8. **复合板的屈曲与后屈曲分析**:学习如何建模复合板并分析其屈曲和后屈曲状态。 未来更新:复合管的压缩载荷下破坏、复合板的三点弯曲、复合面板在冲击载荷下的反应、3D复合单搭接连接(预计在2021年1月更新)。 希望大家喜欢这些教程。如您有任何意见或建议改进课程质量,请随时与我联系。非常感谢! 注意:本课程仅面向认真学习的学生。课程内容力求提供对软件、理论和分析的实用理解,但可能在网络上无法找到。课程示例不特指任何特定情况,学生需自行验证分析结果的准确性,作者对课程中的任何错误或失误不承担责任。版权所有,未经授权的广播、公开演出、复制或重新录制将构成侵权。
Welcome to the Adhesive Joints and Composite Material Abaqus Tutorial, the only course you need to learn how to model adhesively bonded joint and composite material in Abaqus software. This course is specially designed for mechanical, civil engineering students or engineers who want to expand their finite element knowledge. This course will teach you the theory behind input parameters as well as modelling and analysing the results.** This project is intended for individuals who already have a basic understanding of Abaqus and are interested in learning about adhesives and composites. If you're new to Abaqus, please refer to my beginner course to get started.What you will get in this course:**This Course is divided into 8 sections, I try to teach you sth new in each section. So, in order to get the most advantage of it, I highly recommend you to follow the course in order as the basic terms have been only explained in the initial sections.Section 1: 2D adhesively bonded DCB (cohesive element)In this section, you will learn how to model two dimensional double cantilever beam (DCB) using the cohesive element method.Section 2: 2D Adhesively bonded SLJ (Surface-Based Cohesive)In this section, you will learn how to model a two-dimensional Single-lap joint using a surface-based cohesive zone.Section 3: 3D adhesively bonded DCB (Cohesive element)In this section, you will how model three dimensional double cantilever beam using cohesive element method. Section 4: 2D adhesively bonded DCB (XFEM method)In this section, you will become familiarize with eXtended finite element method (XFEM) to model two dimensional double cantilever beam. Section 5: 2D adhesively bonded ENF (XFEM method)In this section, you will learn how to model two dimensional end notched flexure beam using eXtended finite element method. Section 6: 2D adhesively bonded ENF (Cohesive element method)In this section, you will learn how to model two dimensional end notched flexure using cohesive element method. Section 7: Flexible adhesive (New Update May 2020)This is a new section is that I added to this course in May 2020, This section will help you to learn how to model flexible adhesive in Abaqus software. The following subjects will be discussed in this section: Hyper-elastic properties of flexible adhesive, Bulk flexible Specimen, Single-lap joint with flexible adhesive, Trapezoidal traction separation law for flexible adhesive. Section 8: Buckling and Post Buckling of Composite PlateThis section will help you to learn how to composite plate and analyse buckling and post-buckling condition on the plate. Future updates: Composite tube under crushing compression loading, Composite plate under 3 point bending, Composite panel under impact loading, 3D composite single lap joint (Estimated new update January 2021). I hope you all enjoy these tutorials. Please send me a message if you think anything can improve the quality of this course as I am updating the course regularly.Many thanksArmin **This course is only intended for Serious Students. A lot of efforts have been done to provide a practical understanding of the Software, theory and analysis which is not available anywhere on the internet. ** These course examples are not intended to apply to any particular situation. Students are cautioned to satisfy themselves as to the accuracy and results of their analyses. The author shall not be responsible for the consequences of any errors or mistake that may appear in this course.** All rights reserved, Any unauthorised broadcasting, public performance, copying or re-recording will constitute an infringement of copyright.