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GENERAL PLASTICITY THEORY
BASIC THEORY OF PLANE PLASTIC FLOW
APPLICATION TO SPECIFIC PROBLEMS
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analysis angle anisotropy Appl applied ASME axial B-line base point base slip line Chapter coefficients column vector components compression constructed coordinates curve defined deformation mode determined drawing Engng equilibrium evaluated extrusion field solutions flow rule force fracture friction frictionless geometric given Hencky equations Hill hodograph Hodograph to Fig hot rolling hydrostatic pressure indentation isotropic Johnson line field load material matrix operators Mech Mechanics metal normal obtained orthogonal Phys plane plastic flow plane strain plastic deformation plastic strain plastic yielding plate Prager principal stress problems Proc punch r-value radius of curvature ratio reduction referred region rigid rotation shear stress sheet shown in Fig slip line OA slip-line field slip-line-field solution stress and velocity stress field SUBROUTINE symmetry tangential tensile tensor theoretical theory of plasticity tool Trans upper-bound velocity discontinuity velocity field wedge wedge-shaped yield criterion yield stress yield surface zero zone