Deformation and Fracture Mechanics of Engineering MaterialsUpdated to reflect recent developments in our understanding of deformation and fracture processes in structural materials. This completely revised reference includes new sections on isostress analysis, modulus of rupture, creep fracture micromechanicsms, and many more. |
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Page xxiv
591 CHAPTER 13 FATIGUE CRACK PROPAGATION 13 . 1 Stress and Crack
Length Correlations with FCP 591 13 . 2 Macroscopic Fracture Modes in Fatigue
604 13 . 3 Microscopic Fracture Mechanisms 606 13 . 4 Crack Growth Behavior
at ...
591 CHAPTER 13 FATIGUE CRACK PROPAGATION 13 . 1 Stress and Crack
Length Correlations with FCP 591 13 . 2 Macroscopic Fracture Modes in Fatigue
604 13 . 3 Microscopic Fracture Mechanisms 606 13 . 4 Crack Growth Behavior
at ...
Page 784
... 219 characteristics , 219 composite properties , 251 , 252 elastic modulus , 7 ,
8 fatigue crack propagation , 665 , 670 , 671 , 686 fracture surface , 307 repeat
unit , 213 tensile strength of , 20 , 21 Oxide - dispersion hardened alloys , 143 ,
144 ...
... 219 characteristics , 219 composite properties , 251 , 252 elastic modulus , 7 ,
8 fatigue crack propagation , 665 , 670 , 671 , 686 fracture surface , 307 repeat
unit , 213 tensile strength of , 20 , 21 Oxide - dispersion hardened alloys , 143 ,
144 ...
Page 785
... repeat unit , 216 Poly ( vinylidene fluoride ) : fatigue crack propagation , 665 ,
671 tensile strength of , 20 , 21 Pyrolitic graphite , fatigue crack propagation , 679
Quartz , elastic modulus , 7 , 8 Rare earth , additions to steel , 421 - 423 , 525 ...
... repeat unit , 216 Poly ( vinylidene fluoride ) : fatigue crack propagation , 665 ,
671 tensile strength of , 20 , 21 Pyrolitic graphite , fatigue crack propagation , 679
Quartz , elastic modulus , 7 , 8 Rare earth , additions to steel , 421 - 423 , 525 ...
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Contents
CHAPTER 2 | 50 |
ELEMENTS OF DISLOCATION THEORY | 57 |
CHAPTER 13 | 62 |
Copyright | |
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addition alloy aluminum applied associated atoms behavior brittle ceramics Chapter component composite Consequently constant contains corresponding crack creep critical crystal curve decrease defined deformation depends described determined developed direction discussed dislocation edge effect elastic embrittlement energy engineering example factor failure fiber FIGURE flow fracture fracture surface fracture toughness given grain boundaries greater growth important increasing initial involves lattice length load lower material matrix maximum mechanisms Metals modulus necessary normal notch Note occur orientation parallel particles permission phase plane plastic plate polymer produce properties reduced region relation relative represents Reprinted resistance respectively response result revealing rupture sample shear showing shown in Fig slip solid solution specimen steel strain strength strengthening stress stress level structure surface Table temper temperature tensile thermal thickness toughness twin values volume yield strength