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首页> 外文期刊>Applied Physics Letters >Plasticity and ultra-low stress induced twin boundary migration in nanotwinned Cu by in situ nanoindentation studies
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Plasticity and ultra-low stress induced twin boundary migration in nanotwinned Cu by in situ nanoindentation studies

机译:通过原位纳米压痕研究可塑性和超低应力诱导孪晶纳米铜中的双边界迁移

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摘要

Nanotwinned metals have rare combinations of mechanical strength and ductility. Previous studies have shown that detwinning occurs in plastically deformed nanotwinned metals. Although molecular dynamics simulations have predicted that fine nanotwins can migrate at low stress, there is little in situ evidence to validate such predictions. Also it is unclear if detwinning occurs prior to or succeeding plastic yielding. Here, by using in situ nanoindentation in a transmission electron microscope, we show that a non-elastic detwinning process in nanotwinned Cu occurred at ultra-low indentation stress (0.1 GPa), well before the stress necessary for plastic yielding. Furthermore, the in situ nanoindentation technique allows us to differentiate dislocation-nucleation dominated microscopic yielding preceding macroscopic yielding manifested by dislocation-transmission through twin boundaries. This study thus provides further insights for understanding plasticity in nanotwinned metals at microscopic levels.
机译:纳米孪晶金属具有机械强度和延展性的罕见组合。先前的研究表明,解缠现象发生在塑性变形的纳米孪晶金属中。尽管分子动力学模拟已经预测到细的纳米孪晶可以在低应力下迁移,但是很少有就地证据可以证实这种预测。还不清楚脱胶是否在塑料屈服之前或之后进行。在这里,通过在透射电子显微镜中使用原位纳米压痕,我们表明纳米双晶铜中的非弹性解缠过程在超低压痕应力(0.1 GPa)时发生,远远早于塑性屈服所需的应力。此外,原位纳米压痕技术使我们能够区分以位错-成核为主的微观屈服,而之前的宏观屈服表现为通过孪生边界的位错-传输。因此,本研究为从微观角度理解纳米孪晶金属的可塑性提供了进一步的见解。

著录项

  • 来源
    《Applied Physics Letters》 |2014年第23期|1-5|共5页
  • 作者单位

    Department of Materials Science and Engineering, Texas A&M University, College Station, Texas 77843, USA|c|;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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