zr基金属玻璃剪切带相互作用位点纳米空洞的形成

Z. Dong, Dongpeng Wang, Yicheng Wu, Y. Geng, Fugang Chen, P. Guo, Yaoxin Qiao, Xin Li, Yuxin Wang
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引用次数: 1

摘要

了解孔洞的形成机制是控制金属玻璃剪切带突变断裂的一个重要问题。本文利用调幅原子力显微镜,研究了Cu50Zr50金属玻璃中剪切带相互作用下纳米空洞的形成。相移的结果表明,纳米孔洞具有更高的能量耗散和更多的软区。根据有限元模拟结果,这些纳米孔隙的形成是由剪切带相互作用引起的拉应力集中造成的。纳米孔洞的出现和剪切带相互作用部位的应力分布对于理解金属玻璃的塑性变形和断裂至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nano-voids formation at the interaction sites of shear bands in a Zr-based metallic glass
Understanding the formation mechanism of voids is a significant issue in controlling the catastrophic fracture in the form of shear bands in metallic glasses. Here, using an amplitude-modulation atomic force microscope, we investigated the nano-voids formation at the mutual interaction of shear bands in a Cu50Zr50 metallic glass. The results of phase shift revealed higher energy dissipation and more soft zones for the nano-voids. The formation of these nano-voids results from tensile stress concentration caused by the interaction of shear bands, based on the results of finite element simulation. The appearance of nano-voids and stress distribution at the site of shear band interaction is essential in understanding the plastic deformation and fracture of metallic glasses.
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