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所在平台: Udemy |
课程主页: https://www.udemy.com/course/abaqus-tutorial-for-engineering-student/
课程评论:没有评论
课程名称:工程学生的 Abaqus 教程(初学者) 课程概述: 欢迎参加工程学生的必修 Abaqus 教程,这是您第一次学习 Abaqus 所需的唯一课程。本课程专为大学二、三年级的工程学生设计,目的是帮助他们了解有限元分析软件(ABAQUS)。课程共分为四个部分,为了获得最佳学习效果,强烈建议按顺序学习,因为基础术语仅在前几节中进行了说明。虽然本课程会教授软件的使用,但仍需学习者具备基本的有限元理论知识。如果您对有限元理论没有任何了解,建议阅读 ABAQUS 理论文档和 Logan 的《有限元法第一课》。 课程内容: 第一部分:本教程概述。 第二部分:(如果您从未使用过 Abaqus,请务必学习此部分)此部分介绍了 Abaqus 的基本概念,如部件、属性、装配、步骤、交互、载荷、网格和作业。在此部分中,您将学习每个输入参数背后的逻辑。按顺序完成此部分学习将帮助您更高效地掌握软件。 第三部分:此部分包含八个基本工程示例,帮助您理解软件的功能。大多数示例包含分析和数值计算,便于比较结果并检查数值模型的精度。具体示例包括简单桁架、弯曲和扭转、简单支撑梁、复合梁、在分布载荷下的支架分析、屈曲分析、圆形壳简单支撑梁、对称边界条件等。 第四部分:此部分为进阶学生设计,不建议错过第二和第三部分的学生学习,因为基本概念在此部分未进行说明。这一部分有七个示例,挑战您解决实际工程问题的能力,包括体育场屋顶、体育场屋顶坍塌、单 lap 粘合接头、三点弯曲加固混凝土梁、超弹性材料和支架螺栓连接等。 希望您能享受这些教程。如果您有任何建议可以提高课程质量,请随时向我发送消息,我会定期更新课程。非常感谢您。 **本课程仅面向认真学习的学生。为了提供实用的软件、理论和分析理解,投入了超过100小时的精力,这是网络上无法获得的。** 本课程使用的 Abaqus 版本为 6.19,因此为打开资源部分的文件,您需拥有此版本或任何更新版本。不过,您仍可以使用旧版本进行学习。** 本课程的示例不针对任何特定情况。学生需自行确认分析的准确性和结果。作者对本课程中可能出现的任何错误或失误不承担责任。** 保留所有权利,任何未经授权的广播、公开表演、复制或重新录制都将构成版权侵权。
Welcome to the Essential Abaqus Tutorial for Engineering Students, the only course you need to how to use Abaqus for the first time. This course has been designed for second and third-year engineering students at University, who want to learn more about FEA software (ABAQUS). What you will get in this course:** This Course is divided into four sections and 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.** This course will teach you how to use the software only, some theory background is covered however the learner requires to have a basic finite element theory understanding. If you do not have any knowledge of FEA theory I suggest you read ABAQUS theory documentation and A First Course in the Finite Element Method by Logan. Section 1:An overview of this tutorial.Section 2: (Please do not miss this section if you have never used Abaqus)This section begins with the fundamentals of Abaqus such as Part, Properties, Assembly, Step, Interaction, Load, Mesh and Job. In this section, you will learn the logic behind each input parameter. It is important that you follow this section in order so you can learn software more efficiently. Section 3:This section contains eight basic engineering examples to help you understand the software and its ability. Most examples contain both analytical and numerical calculations, which helps you compare results and check the accuracy of the numerical models. The following examples are in these sections: Simple truss, Bending and Torsion, Simply supported beam, Composite beam, Bracket analysis under distributed load, buckling analysis, Shell circular simply supported beam, symmetrical boundary condition Section 4:This section is designed for improver students and is not recommended for students who missed sections 2 and 3 of this course, as the basic concept has not been explained in section 4. This section has seven examples which challenge your ability for real-life engineering problems. The following examples are in these sections: Stadium roof, Stadium roof collapse, single lap adhesive joint, three-point bending on reinforced concrete beam, Hyperelastic materials and bracket bolted joint.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 effort (over 100 hours) has been done to provide a practical understanding of the Software, theory and analysis which is not available anywhere on the internet. ** Abaqus version 6.19 is used for this course, therefore in order to open files in the recourses section, you should have this version or any later version. However, you can still use the older version to do this tutorial.** 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 mistakes that may appear in this course.** All rights reserved, Any unauthorised broadcasting, public performance, copying or re-recording will constitute an infringement of copyright.