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On the influence of damage evolution in an incompressible material with matrix displaying tension-compression asymmetry

机译:基于矩阵显示张力压缩不对称的不可压缩材料中损伤演化的影响

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A strong difference between the 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 effects of this asymmetry in yielding, its influence on damage evolution remains a challenge. In a recent paper we presented a new constitutive model for voided polycrystal that incorporates the effects of the tension-compression asymmetry of the incompressible matrix on the overall dilatational plastic behavior. In this contribution, this model is used to investigate the influence of the tension-compression asymmetry of the matrix on void evolution for uniaxial loading conditions. It is shown that if the matrix tensile strength is higher than its compressive strength, void growth and damage distribution are similar to that in classical materials obeying Gurson's criterion. On the other hand, for certain porous polycrystals in which the matrix tensile strength is lower than its compressive strength, void growth rate is much slower. Damage distribution is significantly different; the location of the zone of maximum porosity shifts from the center of the specimen outwards. Furthermore, the influence of the evolving microstructure on void growth is studied. It is shown that void growth is significantly affected by the rate of change of the matrix strength differential with plastic strain.
机译:如果孪晶或非乳化型滑动是单晶水平的塑性变形的贡献者,则在多晶层面观察到张力与压缩的行为之间的强烈差异。尽管最近在屈服于屈服于屈服于这种不对称的影响方面,但其对损害进化的影响仍然是一个挑战。在最近的一篇论文中,我们介绍了一种用于空隙多晶的新组成型模型,其掺入了不可压缩基质对整体扩张塑性行为的张力 - 压缩不对称的影响。在该贡献中,该模型用于研究基质张力 - 压缩不对称对单轴负载条件的空隙演化的影响。结果表明,如果基质拉伸强度高于其抗压强度,则空隙生长和损伤分布类似于宣传Gurson的标准中的古典材料。另一方面,对于基质拉伸强度低于其抗压强度的某些多孔多晶,空隙生长速率较慢。损伤分布显着不同;最大孔隙率区域的位置从标本向外的中心移位。此外,研究了演化微观结构对缺点生长的影响。结果表明,通过与塑料应变的基质强度差异的变化率显着影响。

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