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Characterization of nanometer-scale defects in metallic glasses by quantitative high-resolution transmission electron microscopy - art. no. 144201

机译:用定量高分辨率透射电子显微镜表征金属玻璃中的纳米级缺陷-艺术没有。 144201

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摘要

Although defects can have a significant effect on the properties of amorphous materials, in many cases these defects are poorly characterized and understood. This is at least partly due to the difficulty of imaging defects in amorphous materials in the electron microscope. In this work, we demonstrate the utility of quantitative analysis of high-resolution transmission electron microscopy for the identification and characterization of nanometer-scale defects in metallic glasses. For a proper identification of such defects, it is important to carefully consider the effects of the imaging conditions and thickness variations in the sample, both of which we describe in detail. As an example, we show that regions of localized plastic deformation (shear bands) in bulk metallic glasses contain a high concentration of nanometer-scale voids. These voids apparently result from the coalescence of excess free volume once the applied stress is removed. [References: 11]
机译:尽管缺陷可能会对非晶态材料的性能产生重大影响,但在许多情况下,这些缺陷的表征和了解程度很低。这至少部分是由于难以在电子显微镜中成像非晶态材料中的缺陷。在这项工作中,我们演示了高分辨率透射电子显微镜定量分析在金属玻璃中纳米级缺陷的识别和表征中的实用性。为了正确识别此类缺陷,重要的是要仔细考虑成像条件和样品厚度变化的影响,我们将对此进行详细介绍。例如,我们显示了散装金属玻璃中的局部塑性变形(剪切带)区域包含高浓度的纳米级空隙。一旦消除了施加的应力,这些空隙显然是由于多余自由体积的聚结而产生的。 [参考:11]

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