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Elastoplastic constitutive model for particle-dispersed composites accounting for interfacial damage

机译:考虑界面损伤的颗粒分散复合材料的弹塑性本构模型

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摘要

For establishing the constitutive law, the property of a composite material is generally described by focusing on the relation between the average stress and the average strain in multiple phases. While the interface between matrix and inclusions undergoes damage, this relation should be modified accordingly. The effects of damaged interface on the strain field in composite are considered in two ways. First, the degradation of matrix-inclusion interface makes the strain field inside inclusions no longer uniform as that of inclusions with perfectly bonded interface. Secondly, it contributes to the average strain in composite by an additional strain, which is yielded from an integration of relative displacement between matrix and inclusion over their interface. In present paper, the first part is considered by using a modified Eshelby's S-tensor. After deriving the local relative displacement distributions between matrix and inclusion at the interface, the second effect of damaged interface on the average strain can be expressed in terms of the corresponding eigenstrain, by introducing a damage-relevant tensor D, which is a fourth order tensor, and tends to zero when the interface is perfect. Both the tangential and normal discontinuities at the interface are independently modeled. The numerical results are also shown. It is found that the interface conditions of debonding and or sliding give detrimental effects on the overall properties of composites. Thus, the establishment of the most appropriate model describing properly the meso-local phenomena.
机译:为了建立本构定律,通常通过关注多相中的平均应力与平均应变之间的关系来描述复合材料的性能。当基体与内含物之间的界面受到破坏时,应相应地修改此关系。有两种方式考虑了界面破坏对复合材料应变场的影响。首先,基质-夹杂物界面的退化使得夹杂物内部的应变场不再像具有完美结合界面的夹杂物一样均匀。其次,它通过附加的应变来促进复合材料的平均应变,这是由于基体和界面上的夹杂物之间的相对位移积分而产生的。在本文中,通过使用改良的Eshelby的S张量来考虑第一部分。导出界面处基体与夹杂物之间的局部相对位移分布后,通过引入与损伤有关的张量D(即四阶张量),可以用相应的本征应变来表示受损界面对平均应变的第二影响。 ,并且在界面完美时趋于零。界面处的切向和法向不连续都独立建模。还显示了数值结果。发现脱粘和/或滑动的界面条件对复合材料的整体性能产生有害影响。因此,建立了最恰当地描述中观局部现象的模型。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2002年第3期|p.259-266|共8页
  • 作者

    Huajian Chang;

  • 作者单位

    Shiei Shin-Futase Jutaku 1-132, 83-1, Ooaza Aida, Iizuka-Shi, Fukuoka, 820-0052, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 原子能技术;
  • 关键词

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