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Mechanical Behavior of Materials : Engineering Methods for Deformation, Fracture and Fatigue,9780135790465
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Mechanical Behavior of Materials : Engineering Methods for Deformation, Fracture and Fatigue

by Norman E. Dowling
ISBN13:

9780135790465

ISBN10:
0135790468
Format:
Hardcover
Pub. Date:
1/1/1993
Publisher(s):
Prentice Hall Professional Technical Reference
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    Mechanical Behavior of Materials : Engineering Methods for Deformation, Fracture, and Fatigue




Summary

Covers stress-strain equations, mechanical testing, yielding and fracture under stress, fracture of cracked members, and fatigue of materials

Table of Contents

Preface
Introductionp. 1
Types of Material Failurep. 2
Design and Materials Selectionp. 10
Technological Challengep. 15
Economic Importance of Fracturep. 18
Structure and Deformation in Materialsp. 23
Bonding in Solidsp. 26
Structure in Crystalline Materialsp. 30
Elastic Deformation and Theoretical Strengthp. 35
Inelastic Deformationp. 39
A Survey of Engineering Materialsp. 49
Alloying and Processing of Metalsp. 50
Irons and Steelsp. 56
Nonferrous Metalsp. 64
Polymersp. 68
Ceramics and Glassesp. 79
Composite Materialsp. 85
Stress-Strain Equations and Modelsp. 96
Rheological Modelsp. 97
Elastic Deformationp. 99
Plastic Deformationp. 110
Creep Deformationp. 117
Anisotropic Materialsp. 123
Mechanical Testing: Tension Test and Other Basic Testsp. 139
Introduction to Tension Testp. 145
Engineering Stress-Strain Propertiesp. 148
Trends in Tensile Behaviorp. 156
True Stress-Strain Interpretation of Tension Testp. 162
Compression Testp. 173
Hardness Testsp. 176
Notch-Impact Testsp. 184
Bending and Torsion Testsp. 190
Review of Complex and Principal States of Stress and Strainp. 201
Plane Stressp. 202
Three-Dimensional States of Stressp. 211
Plane Stress Reconsidered as a Three-Dimensional Casep. 219
Stresses on the Octahedral Planesp. 223
Complex States of Strainp. 224
Yielding and Fracture under Combined Stressesp. 233
General Form of Failure Criteriap. 235
Maximum Normal Stress Fracture Criterionp. 237
Maximum Shear Stress Yield Criterionp. 240
Octahedral Shear Stress Yield Criterionp. 245
Discussion and Comparison of the Basic Failure Criteriap. 251
Coulomb-Mohr Fracture Criterionp. 255
Modified Mohr Fracture Criterionp. 261
Additional Comments on Failure Criteriap. 265
Fracture of Cracked Membersp. 276
Preliminary Discussionp. 278
Mathematical Conceptsp. 285
Application of K to Design and Analysisp. 291
Fracture Toughness Values and Trendsp. 302
Plastic Zone Size, and Plasticity Limitations on LEFMp. 313
Discussion of Fracture Toughness Testingp. 320
Extensions of Fracture Mechanics Beyond Linear Elasticityp. 322
Fatigue of Materials: Introduction and Stress-Based Approachp. 339
Definitions and Conceptsp. 340
Sources of Cyclic Loadingp. 348
Fatigue Testingp. 351
The Physical Nature of Fatigue Damagep. 355
Trends in S-N Curvesp. 358
Mean Stressesp. 370
Multiaxial Stressesp. 377
Variable Amplitude Loadingp. 382
Stress-Based Approach to Fatigue: Notched Membersp. 397
Causes of the k[subscript f] [ k[subscript t] Effectp. 401
Notch Sensitivity and Empirical Estimates of k[subscript f]p. 404
Notch Effects at Intermediate and Short Livesp. 408
Combined Effects of Notches and Mean Stressp. 411
Estimating Long Life Fatigue Strengths (Fatigue Limits)p. 418
Estimating S-N Curvesp. 422
Designing to Avoid Fatigue Failurep. 432
Fatigue Crack Growthp. 456
Preliminary Discussionp. 457
Fatigue Crack Growth Rate Testingp. 464
Effects of R = S[subscript min]/S[subscript max] on Fatigue Crack Growthp. 470
Trends in Fatigue Crack Growth Behaviorp. 477
Life Estimates for Constant Amplitude Loadingp. 483
Life Estimates for Variable Amplitude Loadingp. 495
Design Considerationsp. 498
Plasticity Aspects and Limitations of LEFM for Fatigue Crack Growthp. 501
Environmental Crack Growthp. 508
Plastic Deformation Behavior and Models for Materialsp. 525
Stress-Strain Curvesp. 528
Three-Dimensional Stress-Strain Relationshipsp. 536
Unloading and Cyclic Loading Behavior from Rheological Modelsp. 544
Cyclic Loading Behavior of Real Materialsp. 552
Stress-Strain Analysis of Plastically Deforming Membersp. 570
Plasticity in Bendingp. 571
Residual Stresses and Strains for Bendingp. 584
Plasticity of Circular Shafts in Torsionp. 589
Notched Membersp. 593
Cyclic Loadingp. 605
Strain-Based Approach to Fatiguep. 621
Strain Versus Life Curvesp. 623
Mean Stress Effectsp. 633
Multiaxial Stress Effectsp. 641
Life Estimates for Structural Componentsp. 645
Discussionp. 659
Time-Dependent Behavior: Creep and Dampingp. 678
Creep Testingp. 680
Physical Mechanisms of Creepp. 687
Time-Temperature Parameters and Life Estimatesp. 696
Creep Failure under Varying Stressp. 705
Stress-Strain-Time Relationshipsp. 708
Creep Deformation under Varying Stressp. 714
Creep under Multiaxial Stressp. 721
Component Stress-Strain Analysisp. 725
Energy Dissipation (Damping) in Materialsp. 728
Bibliographyp. 752
Indexp. 762
Table of Contents provided by Blackwell. All Rights Reserved.


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