Finite Element Analysis. SolidWorks Simulation. P5: PIN & CONN

所在平台: Udemy

课程主页: https://www.udemy.com/course/finite-element-analysis-solidworks-simulation-p5-pinconn/

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课程简介

本课程是“有限元分析 SolidWorks Simulation”系列的延续,重点介绍 FEA 中的连接器(CONNECTIONS)的高级技术。本课程旨在通过深入讲解和实际案例,帮助学员掌握各种连接器的配置和应用,从而提高 FEA 仿真的准确性和效率。 **课程内容概述:** * **连接器基础与高级概念:** * **弹簧连接器 (SPRING CONNECTOR):** 学习如何利用弹簧连接器节省时间和计算成本,理解其在张力、压缩、刚度校准、预加载调整及剪切刚度影响等方面的应用。 * **连杆连接器 (LINK CONNECTOR):** 探讨连杆连接器(包括 Link Connector 和 Linkage Rod Connector)的优势,以及如何在起重过程仿真中进行校准。 * **销连接器 (PIN CONNECTOR):** 了解销连接器在机械工程中的作用,学习如何在 FEA 中使用,包括接触交互、可接受性、轴向/剪切/弯曲载荷以及其优势。 * **轴承连接器 (BEARING CONNECTOR):** 探索轴承机制,理解刚性与柔性、自适应、稳定轴旋转等配置的意义和应用场景。 * **收敛性问题 (CONVERGENCE ISSUES):** 学习处理因复杂几何、高级 FEA 工具、接触交互与连接器组合以及特定连接器定义而引起的收敛性问题。 * **真实场景案例分析 (REAL SCENARIOS):** 通过一系列实际项目,如拉力计、耕作机臂、连杆系统、底盘举升、联轴器系统、曲柄连杆结构、曲轴系统等,巩固所学知识,并学习如何分析和解决实际工程问题。 **学习目标:** * 深入理解 FEA 中各种连接器的参数和配置,并计算合适的参数以确保仿真模型的正确行为。 * 掌握弹簧、连杆、销和轴承连接器的应用,并能在不同工程场景中选择和配置。 * 识别和解决 FEA 模型中的收敛性问题。 * 通过大量的真实案例分析,提升独立解决复杂 FEA 问题的能力和信心。 * 学习提高定义过程效率和准确性的方法论。 本课程强调“边做边学”的学习方式,通过实践和案例分析,培养学员在未来项目中自信地处理各种 FEA 场景的能力。

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课程详情

Welcome Back to the Finite Element Analysis World!Let me first congratulate you on your interest in improving your level in this fantastic field which will empower your professional career to the next level.As we were reviewing in previous courses, after my years of experience, I could experience all the benefits for different industries when they use the Finite Element Method (FEM) during the development process.They produce better and efficient designs that save time and, most importantly, save MONEY.This is a fact: The demand of FEA professionals is continuously increasing, so we need to encourage people to join us in this field.Therefore, I designed previous courses to take you from a complete beginner in FEA to a confident simulation professional, equipped with all the essential skills. Moving then to more advanced techniques in Contact Interactions and Bolted and Welding Connections.You will find these courses in my Udemy's Profile. The order is this one: Finite Element Analysis. SolidWorks Simulation. RealProjectsFinite Element Analysis. SolidWorks Simulation. P2: CONTACTSFinite Element Analysis. SolidWorks Simulation. P3: BOLTSFinite Element Analysis. SolidWorks Simulation. P4: WELDINGAnd now, we are going to continue exploring more advanced models that will require the use of advanced techniques in FEA.In this specific case, you will learn how to manage with the rest of CONNECTIONS in FEA.But the important thing here is that I am not going to just show you what clicks you need to do to define a Connector in FEA.Here we are going to explore each parameter you need to know and calculate to ensure your connectors have the proper configuration.And, achieve a good behavior of your FEA Simulation models.Throughout the course, you will master the following techniques:SPRING CONNECTOR How Spring connectors in FEA save us a huge amount of time and computational costMain points of Spring ConnectorsSPRING IN TENSIONStiffness CalibrationSPRING IN COMPRESSIONPreLoad AdjustmentShear Stiffness InfluenceWhat is the purpose of each Connector configuration and when to use themSimulate Real cases where you will apply each of them.LINK CONNECTOR How Link connectors in FEA save us a huge amount of time and computational costMain points of Link ConnectorsLINK CONNECTORLink Connector vs. Real LinkLINKAGE ROD CONNECTORAdvantages of this interesting ConnectorHow to calibrate a model in a Lifting Process SimulationPIN CONNECTOR How PIN connectors contribute to the mechanical engineering field and how to use them in FEA Main points of PIN ConnectorsContact Interactions for PIN ConnectionPIN AcceptabilityComponent Forces AXIAL, SHEAR & BENDINGAdvantages of Pin ConnectorsBEARING CONNECTOR Exploring the interesting BEARING mechanisim Main points of BEARING ConnectorsRigid vs. FlexibleSelf AlignmentStabilize Shaft RotationWhat is the purpose of each Connector configuration and when to use themSimulate Real case where you will explore each configuration.CONVERGENCE ISSUES. You will face new problems that you can find when defining your FEA model due to: Complex GeometryAdvance tools in FEACombination of contact interactions and connectorsSpecific Connector DefinitionsREAL SCENARIOS. We will apply all that concepts and knowledge to more complete projects. PROJECT 01: Tension GaugePROJECT 02: Cultivator ArmPROJECT 03: Link SystemPROJECT 04: Chassis Frame LiftingPROJECT 05: Coupling SystemPROJECT 06: Boom Crank StructurePROJECT 07: Crank-Shaft SystemWe will start from the easiest definition and go through all the cases as we progress during this course.Showing you how to speed up the process of definition and increase your efficiency by very cool METHODOLOGIES.I want to practice with you how to analyse each of the REAL SCENARIOS to know how to respond when you find different problems in your future projets.In addition, I will guide you to calculate the proper parameters to have the correct configuration for your connectors and so your project will have the correct behaviour to be analysed.As always, the key is to LEARN BY DOING and that is exactly what we are going to do here. With all the examples that we are going to review, you will obtain the corresponding CRITERIA & CAPABILITIES to manage with scenarios during your future projects with confidence.So, Get ready to continue exploring advanced problems in FEA.See you inside!

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