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Effect of Compositional Short Range Order on Glass Formation in Binary Metallic System

机译:作曲短距顺序对二元金属系统玻璃形成的影响

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Molecular Dynamics simulation was carried out to study the glass transition and crystallization in the metal-metalloid binary system with pair-wise potentials. The results show that a repulsive potential between metalloid (small) atoms increases the glass forming ability. The observation is consistent with the recent theory of bulk metallic glass formation through local glass transition and nano-glass formation. The theory predicted that the compositional short-range order (CSRO) prevents the small atom pairing so as to increase the glass forming ability (GFA). The present results demonstrate the important role of CSRO in bulk metallic glass formation.
机译:进行了分子动力学模拟,以研究金属 - 金属二元体系中的玻璃化转变和结晶,具有配对潜力。结果表明,金属体(小)原子之间的排斥潜力增加了玻璃形成能力。观察结果与局部玻璃化转变和纳米玻璃形成最近的散装金属玻璃形成的理论一致。该理论预测,组成短程顺序(CSRO)防止小原子配对,以增加玻璃形成能力(GFA)。本结果表明了CSRO在散装金属玻璃形成中的重要作用。

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