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- W1976860340 abstract "A model for the elastic-viscoplastic flow of semi-crystalline polymers is presented. The deformation gradient is decomposed multiplicatively into elastic and plastic parts. The reference configuration for the plastic response is chosen to coincide with the intermediate configuration on which the micromechanics texture evolution is defined. A macroscopically averaged formulation of anisotropic plastic flow is derived from the microscopic description of texture proposed by Chen et al. (1996). The derivation employs tensor function representation theory and the equivalence of plastic power between the macroscopic and microscopic scales. Elasticity is included to describe the effect of elastic constraint on the development of the plastic zone. Small elastic strain is assumed. A finite element scheme is formulated within the present constitutive framework. The results of detailed numerical calculations are reported, and these results are believed to elucidate the phenomenon of crack tip superblunting. The simulated results reconfirm the essential features of crack tip superblunting and its rate dependency." @default.
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- W1976860340 date "1998-02-01" @default.
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- W1976860340 title "Simulation of crack tip superblunting in semi-crystalline polymers" @default.
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- W1976860340 doi "https://doi.org/10.1016/s0022-5096(97)00066-5" @default.
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