Mechanical Behavior of Materials |
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Page 722
... ratio , 286 Young's modulus / density ratio , 286 Boron nitride ( BN ) density , 252 properties in fiber form , 252 Young's modulus , 252 Brass stress corrosion cracking in NH , 648 stress corrosion environments , 642 Young's modulus ...
... ratio , 286 Young's modulus / density ratio , 286 Boron nitride ( BN ) density , 252 properties in fiber form , 252 Young's modulus , 252 Brass stress corrosion cracking in NH , 648 stress corrosion environments , 642 Young's modulus ...
Page 723
... ratio , 59 , 60 Burgers vector , 241 , 243 compliance coefficients , 60 , 81 critical resolved shear stress , 88 density , 82 , 289 diffusion coefficient of C in bcc form , 84 dislocation cell size as function of drawing strain , 222 ...
... ratio , 59 , 60 Burgers vector , 241 , 243 compliance coefficients , 60 , 81 critical resolved shear stress , 88 density , 82 , 289 diffusion coefficient of C in bcc form , 84 dislocation cell size as function of drawing strain , 222 ...
Page 724
... ratio , 252 , 397 Phenol - formaldehyde ( Bakelite ) Poisson's ratio , 49 Platinum activation energy for self- diffusion and creep , 297 properties of platinum - based metallic glasses , 369 Polyacrylonitrile , Mer , 377 Polyamide ...
... ratio , 252 , 397 Phenol - formaldehyde ( Bakelite ) Poisson's ratio , 49 Platinum activation energy for self- diffusion and creep , 297 properties of platinum - based metallic glasses , 369 Polyacrylonitrile , Mer , 377 Polyamide ...
Contents
Overview of Mechanical Behavior | 1 |
Toughening Mechanisms and the Physics of Fracture | 10 |
A The Tension Test B StrainRate Sensitivity C Yielding Under | 28 |
Copyright | |
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alloys applied stress behavior bonding brittle Burgers vector ceramics Chap CHAPTER Coble creep composite crack growth crack propagation crack tip creep fracture creep rate Crystalline Materials cubic curve cyclical decreases diffusional discussed dislocation density dislocation line dislocation motion displacement ductile ductile fracture edge dislocation embrittlement energy equation example fatigue fiber Figure flow stress Fracture Mechanics fracture toughness glass grain boundaries hardening high-temperature increases initial length linear elastic loading low-temperature martensite material's matrix mechanism map microscopic MN/m² Mode modulus nucleation obstacles particle phase plastic deformation plastic flow plastic strain polycrystalline polycrystals polymers precipitation Prob ratio region result Schematic screw dislocation SECTION shear stress shown in Fig single crystal slip direction slip plane slip systems solids solute atom steel strain rate strengthening stress levels stress-strain structure superplastic surface takes place temperature tensile strength tensile stress tion toughening transition viscoelastic volume fraction yield strength