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Reformation Capability of Short-Range Order and Their Medium-Range Connections Regulates Deformability of Bulk Metallic Glasses

机译:短程有序的重整能力及其中程连接调节大块金属玻璃的变形能力

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摘要

Metallic glasses (MGs) typically have high yield strength while low ductility, and the latter is commonly considered as the Achilles’ heel of MGs. Elucidate the mechanism for such low ductility becomes the research focus of this field. With molecular level simulations, we show the degree of short-range order (SRO) of atomic structure for brittle Fe-based glass decreases dramatically during the stretch, while mild change occurs in ductile Zr-based glass. The reformation capability for SRO and their medium-range connections is found to be the primary characteristics to differentiate the deformability between the two metallic glasses. We suspect that, in addition to the strength of networks formed by SRO structure, the reformation capability to reform SRO networks also plays the key role in regulating the ductility in metallic glasses. Our study provides important insights into the understanding about the mechanisms accounting for ductility or brittleness of bulk metallic glasses.
机译:金属玻璃(MG)通常具有较高的屈服强度而延展性较低,而后者通常被视为MG的致命弱点。阐明这种低延展性的机理成为该领域的研究重点。通过分子水平模拟,我们显示了脆性铁基玻璃在拉伸过程中原子结构的短程有序度(SRO)急剧降低,而韧性Zr基玻璃发生了轻微的变化。发现SRO的重整能力及其中距离连接是区分两种金属玻璃之间可变形性的主要特征。我们怀疑,除了由SRO结构形成的网络的强度外,用于改造SRO网络的重整能力在调节金属玻璃的延展性方面也起着关键作用。我们的研究为理解块状金属玻璃的延展性或脆性的机理提供了重要的见识。

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