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MD Study of Scratching-Induced Deformation in Nanosized Polycrystalline Titanium with Coherent and Incoherent Twins Boundaries

机译:纳米型多晶钛涂层诱导变形的MD研究与相干双胞胎边界

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The article describes the results of molecular dynamics modeling of scratch induced plastic deformation in a nanosized titanium polycrystalline. Coherent and incoherent twins are in the focus of present research. It is established that the development of plastic deformation is determined by the twin boundary type. In the case of incoherent twin boundary there is a nanofragmentation of the material and the curvature of the boundary plane. For the crystallite with coherent twin boundary, the plastic deformation is possible due to the reorientation of the twin lattice into the matrix lattice. This is due to the perfect similarity of two lattices and the lower specific energy of such a defect. These results make it possible to understand better the features of the development of plastic deformation in the surface layers of materials with hcp structure.
机译:本文介绍了纳米钛多晶划痕诱导塑性变形的分子动力学建模的结果。 相干和非电话双胞胎在目前的研究中。 建立塑性变形的发展由双边界型确定。 在非相干双边界的情况下,材料的纳米粗糙度和边界平面的曲率。 对于具有相干双边界的微晶,由于双格子的重新定向到基质晶格中,塑性变形是可能的。 这是由于两个晶格的完美相似性和这种缺陷的较低的特定能量。 这些结果使得可以了解具有HCP结构的材料表面层中塑性变形的塑性变形的特征。

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