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Transformation from slip to plastic flow deformation mechanism during tensile deformation of zirconium nanocontacts

机译:锆纳米触点拉伸变形过程中滑移向塑性流动变形机制的转变

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摘要

Various types of nanometer-sized structures have been applied to advanced functional and structural devices. Inherent structures, thermal stability, and properties of such nanostructures are emphasized when their size is decreased to several nanometers, especially, to several atoms. In this study, we observed the atomistic tensile deformation process of zirconium nanocontacts, which are typical nanostructures used in connection of nanometer-sized wires, transistors, and diodes, memory devices, and sensors, by in situ transmission electron microscopy. It was found that the contact was deformed via a plastic flow mechanism, which differs from the slip on lattice planes frequently observed in metals, and that the crystallinity became disordered. The various irregular relaxed structures formed during the deformation process affected the conductance.
机译:各种类型的纳米级结构已被应用于先进的功能和结构装置。当它们的尺寸减小到几纳米,尤其是减小到几个原子时,强调了这种纳米结构的固有结构,热稳定性和性质。在这项研究中,我们通过原位透射电子显微镜观察了锆纳米接触的原子拉伸变形过程,锆纳米接触是用于连接纳米尺寸的导线,晶体管和二极管,存储设备和传感器的典型纳米结构。发现接触是通过塑性流动机制而变形的,这不同于金属中经常观察到的晶格平面上的滑动,并且结晶度变得无序。在变形过程中形成的各种不规则的松弛结构影响了电导。

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