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    • 结构设计原理(高等学校交通运输与工程类专业教材建设委员会规划教材)(英文版)
      • 作者:编者:叶见曙//熊文|责编:卢俊丽//王景景
      • 出版社:人民交通
      • ISBN:9787114200724
      • 出版日期:2024/12/01
      • 页数:608
    • 售价:34
  • 内容大纲

        本书是根据高等院校土木工程以及道路、桥梁与渡河工程专业《结构设计原理》课程的教学要求编写的。它参考了中华人民共和国的国家标准以及交通运输部现行的交通行业标准和设计规范。本书详细介绍了公路桥涵钢筋混凝土结构、预应力混凝土结构和钢结构各类基本构件的受力特点、设计原理、计算方法以及结构设计。
        本书主要作为高等院校土木工程专业(以道路、桥梁与渡河方向为主)学生的教材,同时也可供公路和城市建设领域中从事桥梁工程设计、研究、施工和管理等方面的专业人士参考使用。
  • 作者介绍

  • 目录

    Introductions
      0.1  Features and applicability of concrete structures
      0.2  Problems need attention when learning this course
    Chapter 1  Structure design method based on limit state design
      1.1  Concept of probabilistic limit state design method
      1.2  Calculation method of the Code for Design of Bridges and Culverts
      1.3  Action, representative value of an action and combination of actions
      1.4  Values of material properties
      Questions
    Chapter 2  Introduction to reinforced concrete structures and material properties
      2.1  Introduction to reinforced concrete structures
      2.2  Concrete
      2.3  Reinforcing bar
      2.4  Bond between reinforcing bar and concrete
      Questions
    Chapter 3  Load carrying capacity for normal section of flexural members
      3.1  Flexural members section and configuration
      3.2  Normal section mechanical performance and failure mode of flexural members
      3.3  Calculation of normal section flexural load bearing capacity
      3.4  Flexural member with rectangular section reinforced in tension zone
      3.5  Flexural member with rectangular reinforced in tension and compression zone
      3.6  Flexural member with T section
      Questions
    Chapter 4  Calculation of oblique section bearing capacity of flexural member
      4.1  Force characteristics and failure pattern of oblique section of flexural member
      4.2  Main factors affecting shear capacity of the oblique section of flexural member
      4.3  Shear capacity of oblique section of flexural member
      4.4  Flexural capacity of oblique section of flexural member
      4.5  Checking and structural requirements of full beam bearing capacity
      4.6  Shear capacity of oblique section of continuous beams
      Questions
    Chapter 5  Calculation of normal section bearing capacity of axial compression member
      5.1  Axial compression members with longitudinal reinforcement and common stirrup
      5.2  Axial compression member with longitudinal reinforcement and spiral stirrups
      Questions
    Chapter 6  Calculation of normal section bearing capacity of eccentric compression members
      6.1  Force characteristics and failure pattern of normal section of eccentric compression member
      6.2  Longitudinal bending of eccentrically compressed members
      6.3  Eccentric compression member with rectangular section
      6.4  I section and T section eccentric compression members
      6.5  Eccentric compression member with circular section
      Questions
    Chapter 7  Basic concepts and materials of prestressed concrete
      7.1  Summary
      7.2  Methods and equipments of prestressing
      7.3  Materials for prestressed concrete structures
      7.4  Three concepts of prestressed concrete structure
      Questions
    Chapter 8  Design and calculation of prestressed concrete flexural member
      8.1  Stress stage and design calculation method

      8.2  Calculation of section bearing capacity of prestressed concrete flexural members
      8.3  Calculation of restoring force and estimation of prestress loss
      8.4  Calculation of section stress of prestressed concrete flexural member
      8.5  Checking calculation of crack resistance of prestressed concrete flexural members
      8.6  Calculation of deflection (deformation) of prestressed concrete flexural members
      8.7  Calculation of end anchorage zone
      8.8  Design of prestressed concrete simply supported beam
      8.9  Calculation example of prestressed concrete simply supported beam
      Questions
    Chapter 9  Class B partially prestressed concrete flexural member
      9.1  Mechanical characteristics of partially prestressed concrete structures
      9.2  Calculation of Class B partially prestressed concrete flexural members
      9.3  Design of Class B partially prestressed concrete flexural members
      9.4  Structural requirements
      Questions
    Chapter 10  Concept of steel structure: concept and material
      10.1  Features of steel structure and its applications
      10.2  Primary mechanical properties of steel
      10.3  Factors affecting the steel properties
      10.4  Steel types, specifications and selection
      Questions
    Chapter 11  Computation methods for steel structure
      11.1  Basic computation methods for the design of steel structure
      11.2  Principle and methods for design calculation of highway steel bridge structure
      Questions
    Chapter 12  Connections in steel structure
      12.1  Welding connection
      12.2  Ordinary bolt connection
      12.3  High strength bolt connection
      Questions
    Chapter 13  Steel truss
      13.1  Construction of steel truss
      13.2  Solid web type axial tension member
      13.3  Solid web type axial compression member
      13.4  Lattice type axial compression member
      13.5  Solid web type tension flexure member and compression flexure member
      13.6  Steel truss joint design
      Questions
    Chapter 14  Steel plate beam
      14.1  Construction of steel plate beam
      14.2  Strength checking calculation of steel plate beam
      14.3  Fatigue checking calculation of steel plate beam
      14.4  Deflection checking calculation and pre camber calculation of steel plate beam
      14.5  Overall stability of steel plate beam
      14.6  Local stability of steel plate beam and design of stiffener for web plate
      14.7  Cross section change of steel plate beam
      Questions
    Appendix
    References