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 32
... behavior . Yield points are found also in ionic and covalent materials and are discussed more fully in Section 3.4 . 1.2.5 Elastic - Heterogeneous Plastic- Homogeneous Plastic Response : Type V Type V behavior may be found in the ...
... behavior . Yield points are found also in ionic and covalent materials and are discussed more fully in Section 3.4 . 1.2.5 Elastic - Heterogeneous Plastic- Homogeneous Plastic Response : Type V Type V behavior may be found in the ...
Page 433
... behavior . Since the fatigue limit associated with long cyclic life is strongly dependent on tensile strength , it follows that fatigue behavior should be sensitive to alloy chemistry and thermomechanical treatment . Since large ...
... behavior . Since the fatigue limit associated with long cyclic life is strongly dependent on tensile strength , it follows that fatigue behavior should be sensitive to alloy chemistry and thermomechanical treatment . Since large ...
Page 512
... behavior in both reference and aggressive environments ; ( b ) sustained loading environment cracking behavior ; ( c ) K versus time for one cycle of loading ; ( d ) sustained loading crack velocity versus time . Note that the model ...
... behavior in both reference and aggressive environments ; ( b ) sustained loading environment cracking behavior ; ( c ) K versus time for one cycle of loading ; ( d ) sustained loading crack velocity versus time . Note that the model ...
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alloy aluminum alloy American Society applied stress associated ASTM STP atoms behavior brittle Burgers vector Chapter Charpy component crack growth rate crack length crack tip craze crystal crystalline cycles decreasing depends ductility effect elastic embrittlement engineering environment assisted cracking example failure FIGURE flaw fracture mechanics fracture surface fracture toughness given grain boundary hydrogen initial KIEAC lattice load Materials from copyright metallurgical microstructure modulus MPa Vm notch occur orientation parameter plane strain plane stress plastic deformation plastic zone plate polymer properties R. W. Hertzberg region relationship relative Reprinted with permission response result sample screw dislocation Section sensitivity shear stress shown in Fig slip plane slip systems specimen stacking fault energy strain hardening strain rate stress concentration stress intensity factor stress level stress-strain curve striation Table tensile test temperature Testing and Materials texture thickness Trans transition temperature twin values yield strength