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Coupled elastic–plastic damage model for a porous aggregate with an incompressible matrix displaying tension–compression asymmetry

机译:多孔骨料的弹塑性损伤耦合模型,其不可压缩基质表现出拉压不对称性

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摘要

A significant strength differential effect (different behavior in tension versus compression) is observed at the polycrystal level, if either twinning or non-Schmid type slip are contributors to plastic deformation at the single crystal level. Despite recent progress in modeling the asymmetry in yielding, a description of damage by void growth in such materials remains a challenge. In this paper, an elastic–plastic damage model with yielding described by a plastic potential that depends on all invariants of the stress deviator is used. Singleelement tests illustrate the salient features of the model. Simulation results of sheet-metal blanking show that if the compressive strength of the matrix is lower than its tensile strength, void growth and damage expansion is restricted.
机译:如果双晶或非施密德型滑移是单晶水平塑性变形的原因,则在多晶水平上会观察到明显的强度差异效应(拉伸与压缩行为不同)。尽管在模拟屈服不对称方面取得了新的进展,但是描述这种材料中空洞生长造成的损害仍然是一个挑战。在本文中,使用了一种由塑性势描述的屈服弹塑性损伤模型,该塑性势取决于应力偏向器的所有不变量。单元素测试说明了模型的显着特征。钣金落料的仿真结果表明,如果基体的抗压强度低于其抗拉强度,则会限制空隙的增长和损伤的扩展。

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