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Effects of Schmid factor and slip nucleation on deformation mechanism in columnar-grained nanotwinned Ag and Cu

机译:施密特因子和滑动成核对柱状晶粒纳米孪晶Ag和Cu变形机制的影响

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摘要

We report the results of a molecular dynamics study of the effect of texture on the yield and peak stresses in columnar-grained nanotwinned Ag and Cu. The simulations suggest that in pure nanotwinned face-centered cubic metals, the strength is determined primarily by the cooperation or competition between two major factors: the magnitude of the Schmid factors for the available slip systems and the effectiveness of grain boundaries (and their triple-junctions) in generating dislocations. These factors and their relative impact depend on the geometry of the specimen relative to the applied stress, which is typically reflected in the texture of the material in experimental studies. The detailed mechanisms of plastic deformation are discussed for seven specific geometries that represent a range of different textures.
机译:我们报告了分子动力学研究结果对柱状晶粒纳米孪晶银和铜的屈服和峰值应力的影响的分子动力学研究。模拟表明,在纯纳米孪晶面心立方金属中,强度主要取决于两个主要因素之间的配合或竞争:可用滑移系统的Schmid因子的大小和晶界的有效性(以及它们的三重连接处)。这些因素及其相对影响取决于样品相对于所施加应力的几何形状,通常在实验研究中反映在材料的质地上。针对代表一系列不同纹理的七个特定几何形状,讨论了塑性变形的详细机制。

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