《ENGINEERING DESIGN A SYNTHESIS OF STRESS ANALYSIS AND MATERIALS ENGINEERING SECOND EDITION》求取 ⇩

CHAPTER 1 MATERIALS AND PROPERTIES1

1-1 The Nature and Properties ofMaterials1

CONTENTS1

1-2 Materials Engineering23

1-3 Analysis ofSize and Shape Effects57

CHAPTER 2 TENSION,TORSION,AND BENDING72

2-1 DirectAxialLoading72

2-2 ShearandTorsion78

2-3 Bending of Prismatic Bars93

3-1 General Analysis of Stress and Strain,146

CHAPTER 3 STRENGTH UNDER COMBINED STRESS146

3-2 Analyses of Complex Stress-Strain Behavior in the Elastic Range170

3-3 Theories of Failure and Application to Design,242

CHAPTER 4 ANALYSIS OF COMPOSITE,HONEYCOMB,AND REINFORCED MATERIALS257

4-1 General Theory ofStructural Composites257

4-2 Filament-Reinforced Structures290

4-3 Laminated and Sandwich Composites307

4-4 Sandwich and Honeycomb Structures320

CHAPTER 5 DESIGNING WITH PLASTICS336

5-1 The Nature and Properties of Viscoelastic Materials336

5-2 Mathematical Description of Viscoelastic Behavior359

5-3 Application of Viscoelastic Principles in Design370

CHAPTER 6 BEYOND THE ELASTIC RANGE386

6-1 Basic Concepts and Stress-Strain Relations386

6-2 Plasticity in Machine and Structural Design407

6-3 Plasticity in Heavy-Walled Spheres,Cylinders,and Metal-Working Applications442

CHAPTER 7 ENERGY METHODS IN DESIGN470

7-1 Fundamental Strain-Energy Relationships470

7-2 Energy Methods in Structural Analysis476

7-3 Application of Strain-Energy Theory483

7-4 Unit Load or Dummy Load Method523

7-5 Flexibility Matrix and Stiffness Matrix529

CHAPTER 8 FINITE ELEMENTS AND FINITE DIFFERENCE METHODS537

8-1 Finite Elements537

8-2 Finite Element Method of Stress Analysis544

8-3 Finite Difference552

CHAPTER 9 THE PROBLEM OF BUCKLING566

9-1 Buckling of Simple Prismatic Bars and Beam Columns566

9-2 Buckling of Complex Structural Elements592

9-3 Buckling of Tubes,Plates,and Shells614

CHAPTER 10 SHOCK,IMPACT,AND INERTIA643

10-1 Mechanical Properties and Dynamic Behavior643

10-2 Analyses of Rate-of-Loading and Inertia Problems655

CHAPTER 11 PRESTRESSING FOR STRENGTH722

11-1 The Nature and Significance of Initial and Residual Stress722

11-2 Measurement of Residual Stress725

11-3 Practical Application of Initial and Residual Stresses726

CHAPTER 12 FATIGUE759

12-1 Fatigue of Materials and Structures759

12-2 Some Factors Influencing Fatigue Behavior766

12-3 Fatigue Properties of Materials779

12-4 Application of Fatigue Data to Design783

12-6 Summary797

12-5 Fatigue Considerations in Design Codes797

CHAPTER 13 NOTCHES,HOLES,AND STRESS RAISERS802

13-1 Experimental Stress Analysis Techniques803

13-2 Analytical Treatment of Stress Concentration Problems803

13-3 Design Data for Stress Concentration Problems853

CHAPTER 14 BRITTLE FRACTURE AND DUCTILITY859

14-1 Brittle Failure ofDuctile Materials859

14-2 Basis of Fracture865

14-3 Designing for Fracture876

14-4 Use of Fracture in Design883

15-1 The Nature of Thermomechanical Behavior889

CHAPTER 15 THERMAL STRESS,CREEP,AND STRESS RUPTURE889

15-2 Time-Independent Thermomechanics897

15-3 Time-Dependent Thermomechanics938

APPENDIX A CENTER OF GRAVITY—CENTROIDS983

A-1 Centroid ofa Line983

A-2 Centroid ofan Area985

A-3 Centroid of a Solid986

APPENDIX B MOMENT OF INERTIA991

B-1 Plane Areas991

B-2 Solids1005

C-1 Cantilever Beam1008

APPENDIX C LARGE ELASTIC DEFORMATIONS1008

C-2 Thin Circular Plates1010

C-3 Thin Rings1011

APPENDIX D JOINTS AND CONNECTIONS1014

D-1 Riveted Connections1014

D-2 Welded Connections1025

D-3 Adhesive and Bonded Joints1027

D-4 Bolted Connections1028

AUTHOR INDEX1037

SUBJECT INDEX1045

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