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The effect of interfacial imperfections on plastic deformation in nanoscale metallic multilayer composites

机译:界面缺陷对纳米金属多层复合材料塑性变形的影响

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Nanoscale metallic multilayer (NMM) composites represent a class of advanced engineering materials that are shown to exhibit high structural stability, mechanical strength, high ductility, toughness and resistance to fracture and fatigue. This paper addresses the question of the effect of the interface imperfections on the strengthening of NMMs with incoherent interfaces, by performing molecular dynamics simulations. Two types of interfaces are considered, a perfect one, and one with discontinuities (steps and ledges). Our simulations demonstrate that the result of the interaction between dislocations and interfaces is the creation of interfacial disconnections made of a dislocation that spreads within the interface, and a step entrapped at the interface. The energy calculations show that these steps increase the total energy of the system and enhance the strengthening effect of the interface by adding extra barriers to slip transmission, thus improving the mechanical properties of the structure.
机译:纳米级金属多层(NMM)复合材料代表一类高级工程材料,这些材料显示出高结构稳定性,机械强度,高延展性,韧性以及抗断裂和疲劳性。本文通过进行分子动力学模拟,解决了界面缺陷对非相干界面增强NMM的影响的问题。考虑了两种类型的界面,一种是完美的界面,另一种是具有不连续性的界面(台阶和壁架)。我们的仿真表明,位错与界面之间相互作用的结果是由界面内散布的位错和在界面处截留的台阶所造成的界面断开的产生。能量计算表明,这些步骤通过为滑移传递增加额外的障碍,从而增加了系统的总能量并增强了界面的加固效果,从而改善了结构的机械性能。

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