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Orientation-dependent mechanical behaviour of electrodeposited copper with nanoscale twins

机译:Orientation-dependent力学行为电镀铜纳米双胞胎

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The mechanical properties of electrodeposited copper with highly-oriented nanoscale twins were investigated by micropillar compression. Uniform nanotwinned copper films with preferred twin orientations, either vertical or horizontal, were obtained by controlling the plating conditions. In addition, an ultrafine grained copper film was synthesized to be used as a reference sample. The mechanical properties were assessed by in situ SEM microcompression of micropillars fabricated with a focused ion beam. Results show that the mechanical properties are highly sensitive to the twin orientation. When compared to the ultrafine grained sample, an increase of 44% and 130% in stress at 5% offset strain was observed in quasistatic tests for vertically and horizontally aligned twins, respectively. Inversely strain rate jump microcompression testing reveals higher strain sensitivity for vertical twins. These observations are attributed to a change in deformation mechanism from dislocation pile-ups at the twin boundary for horizontal twins to dislocations threading inside the twin lamella for vertical twins.
机译:镀层的力学性能铜与高定向纳米双胞胎调查micropillar压缩。nanotwinned铜电影首选的双胞胎方向,垂直或水平通过控制电镀条件。此外,超细粒度的铜膜合成作为一个参考样本。通过原位力学性能进行了评估SEM microcompression micropillars捏造聚焦离子束。机械性能是高度敏感双重取向。粒度的样本,在增长了44%和130%观察应力抵消5%应变垂直和水平的准静态测试分别对齐的双胞胎。率跳microcompression测试显示更高应变灵敏度为垂直的双胞胎。观察是由于改变变形机制从位错滑行水平孪晶界的双胞胎在双薄板混乱线程对垂直双胞胎。

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