材料科学
固态
分子动力学
应变率
机制(生物学)
拉伤
纳米技术
物理化学
复合材料
计算化学
医学
认识论
内科学
哲学
化学
作者
Sichen Liu,Shuang Zhao,Donglin Zhang,Taiyu Wang,Liang Chen,Sujun Shi,Hong Li,Xiuchen Zhao,Gang Zhang,Yongjun Huo
标识
DOI:10.1021/acsami.5c00590
摘要
This study employs molecular dynamics simulations to investigate the bonding mechanism and high strain rate response of (1 1 1)-oriented nanotwinned silver (NT-Ag). By constructing one idealized model with atomic-level flatness and one more realistic model considered surface roughness, it uncovers the atomic-level bonding process, revealing that the realistic model proposed more closely replicates real experimental characteristics, thereby demonstrating strong validity. High strain rate tensile tests show NT-Ag possessing a great impact resistance, with toughening mechanisms such as strain-induced amorphization. The study recommends using moderate bonding temperatures (393-593 K) and optimal interference values (around 2-3 nm) to enhance material performance, confirming the potential of NT-Ag for applications in high-strength, extreme environments. These findings provide theoretical guidance for optimizing bonding conditions to improve NT-Ag's durability and toughness in demanding applications.
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