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Nanoscale interface of metals for withstanding momentary shocks of compression

机译:纳米级的金属界面承受瞬时冲击压缩

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摘要

The failure of the nanoscale metallic interface has raised concerns owing to the effect interfacial amalgamation has on its application in nanoelectronic devices. Single crystal copper [110] and [100], which are set as two components of [110]||[100] nanocrystalline copper, are used to simulate the interfacial properties using molecular dynamics simulations. Repeated tension and compression cycles show that the two components of the interface can come into contact and separate without interfacial amalgamation. The [ 110]|| [ 100] interface could withstand momentary shocks of compression and heat produced by the momentary shocks. This property of the [110]||[100] interface is dominated by crystalline orientations of interfacial structure, in comparison with [111]||[100] and [111]||[110] interfaces under the same conditions.
机译:纳米金属的失败界面引发了担忧,由于效果吗界面融合在其应用程序在纳米电子设备。[110]和[100],设置为两个组件的[110]| |[100]纳米晶体铜、使用模拟界面属性分子动力学模拟。和压缩循环显示组件的接口可以接触和单独的界面融合。的[110]| |[100]接口能够承受瞬间产生的压缩和热冲击的瞬时冲击。[110] | |[100]接口是由晶体取向的界面结构,相比,[111]| | [100][111] | |[110]在相同的接口条件。

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