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首页> 外文期刊>Physica, B. Condensed Matter >Evolution of icosahedral clusters during the rapid solidification of liquid TiAl alloy
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Evolution of icosahedral clusters during the rapid solidification of liquid TiAl alloy

机译:液态TiAl合金快速凝固过程中二十面体团簇的演变

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摘要

The evolution characteristics of icosahedral clusters during the rapid solidification of TiAl alloy under different cooling rates are investigated based on molecular dynamics simulations. The short-range order structural properties of liquid and amorphous TiAl alloy are analyzed by several structural characterization methods. It is found that the cooling rate plays a key role during the evolution of icosahedral clusters and has significant effect on the glass transition temperature. Simultaneously, the medium-range order structural evolutions are described in detail by quantitative method and visualization technology during the rapid solidification. The results reveal that the medium-range order icosahedral clusters have good structural stability and configural continuity during the rapid cooling process. Furthermore,the icosahedral structures have significant improvements with decreasing cooling rate. The structures block the crystal nucleation and improve the glass forming ability of supercooled liquid.
机译:基于分子动力学模拟,研究了不同冷却速率下TiAl合金快速凝固过程中二十面体簇的演化特征。通过几种结构表征方法分析了液态和非晶态TiAl合金的短程结构性能。发现冷却速率在二十面体簇的演化过程中起关键作用,并且对玻璃化转变温度有显着影响。同时,通过快速凝固过程中的定量方法和可视化技术详细描述了中程结构演化。结果表明,中程二十面体簇在快速冷却过程中具有良好的结构稳定性和结构连续性。此外,随着冷却速率的降低,二十面体结构得到了显着改善。该结构阻止晶体成核并提高过冷液体的玻璃形成能力。

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