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Overview of Mechanical Behavior
Anisotropic Linear Elasticity
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alloys applied associated atomic axis behavior bonding boundary brittle cause ceramics CHAPTER compared composite considered constant containing crack creep crystal crystalline curve decreases deformation density depends described determined direction discussed dislocation displacement ductile edge effect elastic embrittlement energy engineering equal equation example fatigue fiber Figure flow force fraction fracture further given glass grain grain boundaries greater growth hardening high-temperature higher illustrated increases initial lead length less loading material matrix maximum mechanism metals Mode modulus motion normal noted obstacles obtained occurs particle phase plastic plastic deformation polymers produce propagation properties ratio region relative result shear shear stress shown in Fig shows single situation slip plane solids solute Stage steel strain strain rate strength strengthening structure surface takes place temperature tensile tion toughness transition void volume yield strength