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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Tensile deformation behaviors and damping properties of small-sized Cu-Zr-Al metallic glasses
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Tensile deformation behaviors and damping properties of small-sized Cu-Zr-Al metallic glasses

机译:小型Cu-Zr-Al金属玻璃的拉伸变形行为和阻尼特性

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Uniaxial tensile tests were performed on micron-sized Cu-Zr-Al metallic glassy wires (MGWs) to investigate the deformation behaviors. It is found that the MGWs exhibit unusual nonlinear deformation behavior with irreversible elongation, and our analysis indicates that this nonlinear deformation is related to the formation of sub-nanometer voids coalesced from flow defects under tensile stress. MGWs at micrometer scale exhibit a lower Young's modulus than that of the bulk. The strong structure relaxation leads to the increase of the modulus when heating up the MGWs. The internal friction shows that the MGWs become a viscous state above glass transition temperature.
机译:在微米尺寸的Cu-Zr-Al金属玻璃丝(MGW)上进行了单轴拉伸试验,以研究其变形行为。结果表明,MGWs表现出异常的非线性变形行为,具有不可逆的伸长率,我们的分析表明,这种非线性变形与在拉伸应力作用下由流动缺陷聚结的亚纳米空隙的形成有关。微米级的MGW的杨氏模量比本体的低。当加热MGW时,强烈的结构松弛导致模量增加。内摩擦表明,MGW在玻璃化转变温度以上变为粘性状态。

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