Vibration and Thermal Analysis with ANSYS: Theory & Practice

所在平台: Udemy

课程主页: https://www.udemy.com/course/mastering-ansys-with-fea-v2-vibration-thermal-analysis/

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课程名称:使用ANSYS进行振动和热分析:理论与实践 课程概述:本课程深入探讨应用于振动和热问题的有限元分析(FEA),通过我精心设计的UDEMY课程《使用ANSYS进行振动和热问题的有限元分析及其理论验证》。您将踏上一段变革性的旅程,全面了解工程分析技术,充分利用ANSYS这一前沿的商业化通用有限元程序。解锁ANSYS Mechanical APDL的潜力,这一工具是Workbench Mechanical用户界面中隐藏的高级功能基石。 无论您是初学者还是经验丰富的ANSYS Mechanical用户,本课程都为您提供了一个动手实践的引导,融合有限元理论与行业最佳实践,以进行模型开发、验证和结果解释。工程师和专业人士将会从中获得深刻的理解,解析ANSYS程序的结构和行为。您将体验到模拟结构、电子产品和机械部件的计算机模型,分析诸如强度、韧性、弹性、温度分布和流体流动等特性。借助ANSYS,您可以设想各种规范并在不实际制造原型的情况下预测产品性能,而无需再依赖物理原型或撞击测试。 本课程分为两个部分,各自关注工程分析的关键方面。第一部分通过ANSYS Mechanical APDL,带您深入现实工程问题的振动分析。您将掌握模态分析的细节,并探讨固定梁、有集总质量的固定梁以及有集总质量的简支梁的理论验证。深入研究在循环载荷下的阶梯棒的谐波分析和受循环载荷影响的固定梁的瞬态分析。 第二部分将重点转向使用ANSYS Mechanical APDL进行的FEA热分析。我们将揭开热现象的复杂世界,研究FEA热分析的理论验证和实践应用。深入探讨复合板的热分析、带对流和导热的炉膛分析、复合墙体分析以及恒定热流下的杆体热分析。此外,还将分析具有绝热顶部和底部的构件、复合圆柱体、具有不同边界条件的L形物体、使用结构化和普通网格技术的烟囱、薄膜、同心半球形容器和具有分段元素的管道。 整个课程包含十八个视频模块,每个模块均配有现实分析类型的实际应用。我还自豪地呈现使用有限元分析和ANSYS Mechanical APDL进行的理论验证。 开启工程分析卓越的领域,提升您解决最复杂的振动和热挑战的知识和技能。立即报名参加我的UDEMY课程《使用ANSYS进行振动和热问题的有限元分析及其理论验证》,踏上重新定义您对有限元分析理解的旅程。

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Course Description: Delve into the intricacies of finite element analysis (FEA) applied to vibration and thermal problems through my meticulously crafted UDEMY course, "Finite Element Analysis of Vibration and Thermal Problems using ANSYS and its Theoretical Validation." Embark on a transformative journey where you will gain comprehensive insights into engineering analysis techniques, leveraging ANSYS, a cutting-edge commercial general-purpose finite element program.Unlock the potential of ANSYS Mechanical APDL, the bedrock of advanced functionalities concealed within the Workbench Mechanical user interface. Regardless of your background, be it a novice or an experienced Ansys Mechanical user, this course provides a hands-on introduction to the powerful world of FEA. Immerse yourself in a practical and integrated learning experience, seamlessly blending finite element theory with industry best practices for model development, verification, validation, and result interpretation.Engineers and professionals will relish the profound comprehension this course offers, unraveling the structure and behavior of the ANSYS program. Witness its prowess as we simulate computer models of structures, electronics, and machine components, enabling analysis of attributes such as strength, toughness, elasticity, temperature distribution, fluid flow, and more. Gone are the days of building physical prototypes or conducting crash tests to predict product functionality; ANSYS empowers you to envision various specifications and determine product performance without materializing them physically.The course comprises two distinct sections, each addressing critical aspects of engineering analysis. The first section immerses you in vibrational analysis of real-world engineering problems using ANSYS Mechanical APDL. Master the nuances of modal analysis and delve into the theoretical validation of a fixed beam, a fixed beam with lumped mass, and a simply supported beam with lumped masses. Explore the harmonic analysis of a stepped bar under cyclic loading and a fixed beam subjected to cyclic loading. Gain expertise in the transient analysis of a beam subjected to step loading.In the second section, we shift our focus to FEA thermal analysis employing ANSYS Mechanical APDL. Demystify the complex world of thermal phenomena as we investigate the theoretical validation and practical applications of FEA thermal analysis. Dive deep into topics such as thermal analysis of a composite slab, furnace analysis with convection and conduction, composite wall analysis, and thermal analysis of bars with constant heat flux. Furthermore, unravel the secrets of analyzing members with insulated tops and bottoms, composite cylinders, L-shaped objects with different boundary conditions, chimneys using structured and normal meshing techniques, thin films, concentric hemispherical vessels, and ducts with segmented elements.Throughout the course, you will find an extensive collection of eighteen video modules, each accompanied by real-world applications of diverse analysis types. Moreover, I take great pride in presenting theoretical validations using finite element analysis alongside ANSYS Mechanical APDL.Unlock the realm of engineering analysis excellence and equip yourself with the knowledge and skills to tackle the most intricate vibration and thermal challenges with confidence. Enroll in my UDEMY course, "Finite Element Analysis of Vibration and Thermal Problems using ANSYS and its Theoretical Validation," and embark on a journey that will redefine your understanding of FEA.

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