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On effective behavior of microstructures embedding general interfaces with damage

机译:关于嵌入一般界面的微结构的有效行为与损伤

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摘要

The interface between constituents of a multiphase material exhibits properties different from those of the bulk and can lead to major alternation of the material response. Interface effects are particularly important for multiphase nano-materials where the area-to-volume ratio is significantly large. In this contribution, we study the influence of a degrading general interface. That is, we allow for the initiation and accumulation of damage on a generalized interface accounting for both jumps of the displacement and the traction across the interface. The applicability of the proposed framework is demonstrated through several numerical examples. We present a parametric study on the influence of a broad range of interface material parameters on the overall behavior of various microstructures subject to volumetric loading and unloading. The numerical results illustrate that the resistance along the interface plays a key role in the resulting damage mechanism and could potentially prevent the detachment of the inclusion from the matrix regardless of the resistance across the interface or bulk material parameters. This behavior is observed and shown for both two- and three-dimensional examples. Moreover, the size-effect due to the general interface model is examined and compared against other interface models. Finally, the influence of the boundary conditions on the effective response and damage initiation of several microstructures is studied.
机译:多相材料成分之间的界面表现出与本体不同的性质,并可能导致材料响应的重大变化。界面效应对于面积体积比非常大的多相纳米材料尤为重要。在这篇文章中,我们研究了退化的一般界面的影响。也就是说,我们允许在广义界面上开始和累积损伤,同时考虑位移的跳跃和跨界面的牵引力。通过几个数值算例证明了所提出的框架的适用性。我们提出了一项参数化研究,研究了广泛的界面材料参数对体积加载和卸载下各种微观结构整体行为的影响。数值结果表明,沿界面的电阻在由此产生的损伤机制中起着关键作用,并且无论界面上的电阻或块状材料参数如何,都可能防止夹杂物从基体中分离。在二维和三维示例中都观察到并显示了此行为。此外,还研究了通用界面模型引起的尺寸效应,并将其与其他界面模型进行了比较。最后,研究了边界条件对几种微观结构的有效响应和损伤萌生的影响。

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