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Plastic Deformation Modes of CuZr/Cu Multilayers

机译:CuZr / Cu多层膜的塑性变形模式

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摘要

We synthesized CuZr/Cu multilayers and performed nanoindentation testing to explore the dependence of plastic deformation modes on the thickness of CuZr layers. The Cu layers were 18 nm thick and the CuZr layers varied in thickness from 4 nm to 100 nm. We observed continuous plastic co-deformation in the 4 nm and 10 nm CuZr − 18 nm Cu multilayers and plastic-induced shear instability in thick CuZr layers (>20 nm). The plastic co-deformation is ascribed to the nucleation and interaction of shear transformation zones in CuZr layers at the adjacent interfaces, while the shear instability is associated with the nucleation and propagation of shear bands in CuZr layers. Shear bands are initialized in the CuZr layers due to the accumulated glide dislocations along CuZr-Cu interfaces, and propagate into adjacent Cu layers via slips on {111} plane non-parallel to the interface. Due to crystallographic constraint of the Cu layers, shear bands are approximately parallel to {111} plane in the Cu layer.
机译:我们合成了CuZr / Cu多层膜并进行了纳米压痕测试,以探索塑性变形模式对CuZr层厚度的依赖性。铜层的厚度为18 andnm,CuZr层的厚度在4 tonm至100 nm之间变化。我们观察到在4 nm和10 nm CuZrZ− 18 nm Cu多层膜中连续的塑性共变形,以及在厚的CuZr层(> 20 nm)中塑性诱导的剪切不稳定性。塑性共变形归因于相邻界面处CuZr层中剪切转变区的形核和相互作用,而剪切不稳定性与CuZr层中剪切带的形核和传播有关。剪切带由于沿CuZr-Cu界面累积的滑移位错而在CuZr层中初始化,并通过与界面不平行的{111}平面上的滑移传播到相邻的Cu层中。由于Cu层的晶体学约束,剪切带大致平行于Cu层中的{111}平面。

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