MICROMECHANICAL MODELING OF LARGE PLASTIC-DEFORMATION AND TEXTURE EVOLUTION IN SEMICRYSTALLINE POLYMERS

被引:165
作者
LEE, BJ [1 ]
PARKS, DM [1 ]
AHZI, S [1 ]
机构
[1] MIT,DEPT MECH ENGN,CAMBRIDGE,MA 02139
关键词
D O I
10.1016/0022-5096(93)90018-B
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A MICROMECHANICALLY-BASED composite model is proposed to study large plastic deformation and texture evolution in semi-crystalline polymers. The microstructure of many semi-crystalline polymers consists of co-existing crystalline and amorphous phases locally associated with each other in a fine plate-like morphological structure. An aggregate of two-phase composite inclusions is used to model these materials. Special consideration is given to molecular chain inextensibility within the crystalline phase. The introduction of a back stress tensor in the constitutive model of the amorphous phase accounts for hardening due to deformation-induced molecular alignment. Interface compatibility and traction equilibrium are enforced within each composite inclusion. A Sachs-like model and two newly-developed self-consistent-like hybrid models are proposed to relate volume-average deformation and stress within the two-phase composite inclusion to the remote (macroscopic) fields. Applications of these composite models are made to predict stress-strain behavior and texture evolution in initially isotropic high density polyethylene (HDPE) under different modes of straining.
引用
收藏
页码:1651 / 1687
页数:37
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