AISC Steel Design Course - Part 1 of 7

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课程主页: https://www.udemy.com/course/aisc-lrfd-steel-design-course-part-1-of-7/

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AISC 钢结构设计课程 - 第 1 部分(共 7 部分) 本课程是关于钢结构设计的系列课程的第一部分,将为您打下坚实的设计基础。 **课程内容概览:** * **结构钢基础:** 深入了解结构钢作为一种材料的特性、行为以及其优缺点。 * **钢材属性:** 学习不同类型的钢材截面,以及钢材的应力-应变关系。 * **现代钢结构与经济性:** 探讨现代钢材的应用,以及如何进行经济高效的钢结构设计。 * **结构失效与设计师职责:** 理解结构失效的原理,以及结构设计师的职责和义务。 * **AISC 手册应用:** 学习如何有效地查阅和应用美国国家钢结构学会 (AISC) 手册。 * **荷载与设计方法:** 掌握不同类型的荷载(恒荷载、活荷载、环境荷载),以及在 ASCE 7 标准下,钢结构分析中使用的设计方法(ASD 和 LRFD)、设计理念(LRFD)和荷载组合。 * **理论与实践结合:** 通过各种实际场景,了解这些理论知识的实际应用。 **课程重点:** * 本课程将 **全程采用 LRFD(以荷载效应抗力设计法)** 作为设计方法。 * 所有讲座内容均基于 **《Structural Steel Design, 5th Edition》** (作者: Jack C. MacCormac 和 Stephen F. Csernak)。 * 课程将 **引用 AISC 第 14 版规范**。 **后续课程内容预告:** 未来的课程部分将涵盖: * 拉杆构件的分析与设计 * 压杆构件的设计 * 弯矩构件的设计 * 不同类型的连接设计(螺栓连接、焊接连接) * 以及其他更多主题。 **先修要求:** * 具备良好的结构力学基础。 * 掌握工程水平的数学知识。 * 建议具备 AISC 规范和 ASCE 7 代码的查询能力。

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Part 1 of 7 of the Steel Design Course will teach you the fundamentals of design.It will go over structural steel as a material, its behavior, and other properties such as its advantages and disadvantages, different steel sections, stress-strain relationships in steel, the use of modern steel, economical design of steel structures, structural failure, the duties and responsibilities of a structural designer, and navigating the AISC Manual. This section of the course will also cover the several types of loads (dead, live, and environmental), design methodologies (ASD and LRFD), design philosophies (LRFD), and load combinations utilized in steel structure analysis using the ASCE 7 code. We will also look at its practical use through a variety of scenarios. The design methodology used throughout the course will be LRFD. All the lectures in this course will be based on the book "Structural Steel Design, 5th Edition, by Jack C. MacCormac and Stephen F. Csernak". American Institute of Steel Construction (AISC ) 14th Edition will be referred to throughout the course.Future sections of this course will cover subjects such as tensile member analysis and design, compression member design, flexure member design, different types of connection (bolted, welded) design, and several other topics.All you need is a decent understanding of structural mechanics and engineering-level mathematics. Students are also expected to have access to the AISC Specification and ASCE 7 code.

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