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Deformation behavior and indentation size effect of Au49Ag5.5Pd2.3Cu26.9Si16.3 bulk metallic glass at elevated temperatures

机译:Au49Ag5.5Pd2.3Cu26.9Si16.3大块金属玻璃在高温下的变形行为和压痕尺寸效应

摘要

Instrumented nanoindentation was conducted on an Au49Ag5.5Pd2.3Cu26.9Si16.3 bulk metallic glass from room temperature to supercooled liquid region. It was found that the hardness decreases as the depth of the indentation increases at a modest loading rate (e.g. ∼0.5 mN s-1), which is known as the indentation size effect (ISE). The transition from inhomogeneous to homogeneous flow was clearly observed at the glass transition temperature. However, the deformation behavior of the metallic glass in the supercooled liquid region showed strong loading rate dependence. The deformation mode changed from homogeneous to inhomogeneous, and even exhibited a reverse indentation size effect when the loading rate was sufficiently high (i.e., ≥10 mN s-1 in the study). The different deformation behaviors and indentation size effects at various temperatures and loading rates are discussed in terms of free volume theory.
机译:从室温到过冷液体区域,在Au49Ag5.5Pd2.3Cu26.9Si16.3大块金属玻璃上进行了仪器化的纳米压痕。已经发现,随着在适当的加载速率(例如〜0.5mN s-1)下压痕深度的增加,硬度降低,这被称为压痕尺寸效应(ISE)。在玻璃化转变温度下清楚地观察到从不均匀流动到均匀流动的转变。然而,金属玻璃在过冷液体区域的变形行为表现出强烈的加载速率依赖性。当加载速率足够高时(即研究中≥10 mN s-1),变形模式从均质变为不均质,甚至表现出反向的压痕尺寸效应。根据自由体积理论讨论了在不同温度和加载速率下不同的变形行为和压痕尺寸效应。

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