Mechanics of materials / Ferdinand P. Beer, E. Russell Johnston, Jr., John T. DeWolf.
Publication details: Boston : McGraw-Hill Higher Education, c2006.Edition: 4th editionDescription: xix, 787 p. : ill (some col.) ; 26 cmISBN:- 9780072980905 (acidfree)
- 0072980907 (acidfree)
- 9780073107950
- 0073107956
- 620.112 22 BEE
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620.00420285 LEA AutoCAD 2006 companion : essentials of AutoCAD plus solid modeling / | 620.112 BEE Mechanics of materials / | 620.112 BEE Mechanics of materials / | 620.112 BEE Mechanics of materials / | 620.112 BEE Mechanics of materials / | 620.112 BEE Mechanics of materials / | 620.112 BEE Mechanics of materials / |
Contents;
1 INTRODUCTION - CONCEPTS OF STRESS
1.1 Introduction
1.2 A Short Review of the Methods of Statics
1.3 Stresses in the Members of a Structure
1.4Analysis and design
1.5 Axial loading; Normal syress. etc
2 STRESS AND STRAIN-AXIAL LOADING
2.1 Introduction
2.2 Normal Strain Under Axial Loading
2.3 Stress-Stain Diagram
2.4 True stress and true strain
2.5 Hooke's law; Modulus of Elasticity etc.
3 TORSION
3.1 Introduction
3.2 Preliminary Discussion of the Stresses in a Shaft
3.3 Deformations in the Elastic Range
3.4 Stresses in the elastic range etc.
4 PURE BENDING
4.1 Introduction
4.2 Symmetric Member in Pure Bending
4.3 Deformations in a Symmetric Member in Pure, etc.
5 ANALYSIS AND DESIGN OF FOR BENDING
5.1 Introduction
5.2 Shear and Bending-Moment Diagrams
5.3 Determination of the Shearing Stresses in A Beam, etc.
6 SHEARING STRESSES IN BEAMS AND THIN-WALLED MEMBERS
6.1 Introduction
6.2 Shear on the Horizontal Face of a Beam Element
6.3 Determination of the Shearing Stresses in a Beam, etc.
7 TRANSFORMATIONS OF STRESS AND STRAIN
7.1 Introduction
7.2 Transformation of Plans Stress
7.3 Principal Stresses: Maximum Shearing Stress, etc.
8 PRINCIPAL STRESSES UNDER A GIVEN LOADING
8.1 Introduction
8.2 Principal Stresses in a Beam
8.3 Design of Transmission Shafts, etc.
9 DEFLECTION OF BEAMS
9.1 Introduction
9.2 Deformation of a Beam Under Transverse Loading
9.3 Equation of the Elastic Curve, etc.
10 COLUMNS
10.1 Introduction
10.2 Stability of Structures
10.3 Euler's Formula for Pin-Ended Columns, etc.
11 ENERGY METHODS
11.1 Introduction
11.2 Strain Energy
11.3 Strain-Energy Density, etc.
Includes Index: p. 767-775
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