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所在平台: Udemy |
课程主页: https://www.udemy.com/course/ansys-finite-element-analysis-and-industrial-applications/
课程评论:没有评论
课程名称:Ansys - 有限元分析与工业应用 课程概述:本课程将深入探讨线性静态分析,通过详细的教程教您如何使用Ansys。学习完必要的基础知识后,我们将重点关注静态结构部分,涵盖各种载荷、支撑、接触、连接和网格类型的应用。教程使用了版本19.2、19.3和2020R2。在学习过程中,课程将分为初级和高级两部分。 初级课程内容: - 本课程的主要目标是教授如何使用Ansys,每节课针对一个具体主题进行深入讲解。 - 学习过程中不会涉及非线性分析,这属于高级内容,初学者阶段不适合。同时,课程避免了复杂情景(如货车碰撞、飞机飞行等)的讨论。 - 重点包括边界条件、拓扑优化(减重)、优化设计以及静态分析中必不可少的桁架系统与结构分析,特别是对连接件(如螺栓连接)的分析。 高级课程内容: - 在高级部分,将回顾工程基本概念,包括应力、应变、杨氏模量和泊松比等重要材料属性。 - 将详细讲解如何在SpaceClaim中准备几何模型,注意折简化与保留的内容以及如何为网格划分做准备。 - 介绍高级网格的课程,讲解网格元素类型、订单及其对结果的影响,如何找到优化的元素大小,及网格收敛研究。 - 讨论高级接触类型,如何创建接触区域,以及这些设置如何影响分析结果。 - 学习如何创建子模型及其注意事项,这是分析中不可或缺的部分。 - 最后,介绍工业应用,通过一些真实的工程问题分析展示,从分析的开始到结束进行详细探讨。 此课程为想要深入了解有限元分析及其在工业中的应用的学员提供了全面的知识体系与实践经验。
-- Check My Website (importfea) --We are going to make a detailed examination of linear static analysis in the tutorial. After learning the necessary fundamentals, we will focus on the static structural section. In the static structural section, we'll see all of the loads, supports, contacts, joints, and mesh types with applications.Versions 19.2, 19.3, and 2020R2 were used in the tutorial. For more detailed information and surprises, don't forget to visit my Instagram page (@ansysegitim):)We can gather the tutorial under 2 topics as introductory and advanced tutorials. We will be learning the topics below for the introductory course. Before reviewing these topics, I need to make it clear to you. First of all, let's talk about what the tutorial does not include:)I did not include the non-linear analysis at this stage, since the topic is advanced. You are not going to see crashed trucks, plate-piercing bullets, flying aircraft, rockets, tanks or rifles, etc in the tutorial. All of these need separate courses. For this reason, learning them as a beginner in 10 minutes, 30 minutes, or 1-hour courses only teaches you to make colorful animations of that truck or plane:) The topics require mastery separately.Now, let's examine what awaits us in the course. In the introduction part, my aim is to teach to use the Ansys. Each of the lessons is created with the aim of learning one specific topic within Ansys and is focused on that purpose. For example, if we are trying to learn the topic of boundary conditions, then we don't struggle to get fine mesh quality or structures or we don't need to prepare the model for meshing while we are learning the topic of contacts. You will get a better understanding of the applications after the theoretical lessons.In the tutorial, we will not only go to the analysis results with a few mouse clicks, we will reach the results by explaining which option we used and why we used it. Thus, after a while, you will be able to make many applications yourself.I have also covered in detail topology optimization (weight reduction) which is indispensable for design.I have also covered the topic of optimization. You will learn how to keep stresses below your desired value while improving the design by creating parameters.I have included in detail truss systems and structural analysis which are indispensable for static analysis.You will learn how to analyze fasteners especially bolted connections. I also added many more topics and applications related to static analysis to the first section of the tutorial In the second section, the advanced sections, we will be examining the following topics.Firstly, I wanted to make a reminder by going back to the fundamentals of engineering concepts from the very beginning. The fundamentals are topics that we must know and even develop. Under the title of fundamentals of engineering, you will see the topics of Stress, Strain, Young's modulus, Poisson's Ratio, and some important Material Properties. I explained all the commands separately that we will use frequently while preparing the geometries on SpaceClaim. We will discuss how to prepare a geometry/model, what should we pay attention to while preparing a geometry, what we should simplify, what should we keep in the geometry, and how to prepare geometry for meshing. I tried to explain the topic of advanced mesh in great detail from the scratch in advanced level mesh lessons. I started by teaching the mesh element types, the element orders, the effect of element types on the results, how to find the optimized element size, and how to make a mesh convergence study. I also gave you the tips that FEA Experts frequently use to obtain fine mesh structures. I suggest you definitely don't miss this part. Under the title of advanced contact, we discussed the questions of what we should pay attention to while creating contact regions, which contact type is decent for which structures and what sub-settings come out while creating contact regions, how does it affect the results, when to use it and when to ignore it.We examined the topic of submodeling which is indispensable for an analysis. You will learn how to create a submodel and what you should pay attention to while creating them. And the final and great topic is the Industrial Applications. You should definitely not miss it. You will see some real-world engineering problems that I have run the analysis as a structural analysis engineer. We examined these projects in detail and examined how we solved them from the very beginning to the very end of the analysis (The dimensions of the projects were changed and some changes were made to ensure that they were not exactly the same but you will get the main idea).Goodbye for now...