Design of Steel Structures as per IS 800

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**课程名称:** IS 800 标准下的钢结构设计 **课程概述:** 本课程旨在根据 IS 800 标准,介绍钢结构构件的极限状态设计。课程将通过图示和表格,辅以典型的例题,阐述钢结构设计的基本原理。课程内容涵盖了螺栓连接(剪切、拉伸、断裂、整体剪切)、受拉构件(净截面、屈服、断裂、整体剪切)、受压构件(截面分类、屈曲曲线、长细比)、抗侧向稳定和未抗侧向稳定的梁,以及梁柱(同时承受轴向力和弯矩的构件)的行为和设计。学完本课程后,学员将掌握钢结构构件设计的基本原理和方法。 **先修知识:** 需要具备结构分析的基础知识。 **主要学习内容:** * **钢结构连接设计:** 螺栓剪切、螺栓拉伸、断裂和整体剪切力的计算,以及角撑板连接的设计。 * **受拉构件设计:** 净截面、拉伸屈服、拉伸断裂和拉伸整体剪切力的计算。 * **受压构件设计:** 截面分类、屈曲曲线和长细比的概念。 * **梁设计:** 抗侧向稳定梁和未抗侧向稳定梁的设计。 * **梁柱设计:** 同时承受轴向力和弯矩的构件设计。 **课程结构:** * **第一章:钢结构导论** * 钢结构绪论 * 钢材种类和截面分类 * 钢材材料特性 * **第二章:钢结构连接设计** * 连接设计入门 * 螺栓剪切承载力 * 螺栓拉伸承载力 * 断裂和整体剪切力计算 * 角撑板连接 * 实例讲解 * **第三章:受拉构件设计** * 受拉构件设计入门 * 净截面计算 * 拉伸屈服承载力计算 * 拉伸断裂承载力计算 * 拉伸整体剪切力计算 * 实例讲解 * **第四章:受压构件设计** * 受压构件设计入门 * 实例讲解 * **第五章:梁设计** * 梁设计入门 * 抗侧向稳定梁设计 * 未抗侧向稳定梁设计 * 实例讲解 * **第六章:梁柱设计** * 轴向力和弯矩组合作用 **课程目标:** 通过本课程的学习,学员能够熟练掌握 IS 800 标准下钢结构构件的设计原理和实施方法。

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This course is designed to introduce Steel structural members design according to the limit states design as per IS800 standards. The basic principles of steel structural design are explained using typical example problems with figures, tables. The examples are illustrated with behavior and design of bolted connection, tension members, compression members, laterally restrained and unrestrained beams, beam columns - members subjected to combined axial and bending forces. Students are expected to obtain the knowledge on principles and design of steel structural elements by end of this course. A preliminary knowledge on structural analysis is required before going to this course. The Major topics covered in this course is Bolt Shear, Bolt Tension, Rupture, Block Shear in Connection design, Net area, Tension Yield, Tension Rupture, Tension Block Shear in Tension design, Section classification, buckling curve, slenderness ratio in Compression design, Laterally restrained and Laterally unrestrained members in Beam design, finally combined forces like axial force with bending moment covered in Beam column design. Contents: Introduction to Steel StructuresIntroduction to Steel Structures Introduction to Steel sections, Section classifications and Steel material Chapter 2: Steel Connection design Introduction to connection design Bolt Shear capacity Bolt Tension Capacity Rupture and Block shear calculations Gusset Plate connection Worked examples Chapter 3: Tension member design Introduction to Tension member design Net area calculations Tension Yield capacity calculations Tension Rupture capacity calculations Tension Block Shear capacity calculations Worked examples Chapter 4: Compression member design Introduction to Compression member design Worked examples Chapter 5: Beam Design Introduction to Beam design Laterally Restrained Beam design Laterally Unrestrained beam design Worked examples Chapter 6: Beam Column Design Combined Axial Force and Bending moment 9.3.1Combined Axial Force and Bending moment 9.3.2.2

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