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- ISBN:9787112181827
- 装帧:一般胶版纸
- 册数:暂无
- 重量:暂无
- 开本:16开
- 页数:316
- 出版时间:2015-09-01
- 条形码:9787112181827 ; 978-7-112-18182-7
本书特色
由赵军、王新玲、楚留声、钱辉、李乐编著的《混凝土结构基本原理(英文版高等学校双语教学系列教材)》基于国家标准《混凝土结构设计规范》(gb50010-2010)和其他新修订的相关规范进行编著,主要内容包括:混凝土结构材料的力学性能,混凝土结构设计方法,钢筋混凝土构件的正截面受弯承载力、斜截面受剪承载力、正截面受压承载力、受拉承载力和受扭承载力的计算方法,钢筋混凝土构件裂缝、变形验算及耐久性,预应力混凝土构件计算等。
内容简介
《混凝土结构基本原理(英文版)》基于《混凝土结构设计规范》(GB50010-2010)和其他新修订的相关规范进行编写,主要内容包括:混凝土结构材料的力学性能,混凝土结构设计方法,钢筋混凝土构件的正截面受弯承载力、斜截面受剪承载力、正截面受压承载力、受拉承载力和受扭承载力的计算方法,钢筋混凝土构件裂缝、变形验算及耐久性,预应力混凝土构件计算等。
目录
chapter 1 introduction 1.1 fundamental concepts of reinforced concrete structures 1.2 historical development of concrete structures 1.3 special features of the bookchapter 2 mechanical properties of reinforced concrete materials 2.1 steel reinforcement 2.2 concrete 2.3bond between concrete and reinforcementchapter 3 basic principles for the design of reinforced concrete structures 3.1 introduction to the limit state design 3.2 analysis of structural resistance 3.3 the current practice of chinese design codeschapter 4 flexural strength of members 4.1 introduction 4.2 experimental phenomena of reinforced concrete beams under flexure 4.3 basic assumptions 4.4 the equivalent stress block 65 4.5 balanced section 4.6 analysis of a singly reinforced rectangular beam 4.7 analysis of doubly reinforced rectangular beams 4.8 analysis of t section and i section beams 4.9 detailina reauirements for sectionschapter 5 shear strength of members 5.1 introduction 5.2 the mechanism of shear resistance in reinforced concrete beams without web reinforcements 5.3 the mechanism of shear resistance in rc beams with web reinforcements 5.4 factors affected the capacity of diagonal section 5.5 strength calculation methods of members under shear 5.6 procedures of shear reinforcements design 5.7 detailing requirements for reinforcementschapter 6 torsional strength of members 6.1 introduction 6.2 the cracking torque tcr 6.3 ultimate strength of members with pure torsion 6.4 strength of members under combined torsion and shear 6.5 strength of members under combined torsion, shear and flexure 6.6 detailing requirements for members under shear and torsionchapter 7 compressive strength of members 7.1 classification and constructional requirements of compression members 7.2 strength of axially loaded members 7.3 strength of the eccentrically loaded members 7.4 biaxial eccentrically loaded members 7.5 shear strength of members under compressionchapter 8 tensile strength of members 8.1 introduction 8.2 strength of member under an axial tension 8.3 strength of member under an eccentric tension 8.4 shear strength of members under tensionchapter 9 crack and deflection control of reinforced concrete members 9.1 introduction 9.2 cracking strength of a member 9.3 control of crack width 9.4 deflection of a memberchapter 10 prestressed concrete members 10.1 basic concept of prestressing 10.2 methods of prestressing 10.3 materials of prestressed concrete 10.4 the control stress and the loss of prestress 10.5 transmission length of prestress 10.6 local bearing of concrete under anchorage 10.7 prestressed concrete axial tension members 10.8 prestressed concrete bending membersappendix
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