材料科学
熔化温度
相(物质)
转化(遗传学)
熔点
热力学
熔点下降
复合材料
物理
化学
生物化学
量子力学
基因
作者
Valery I. Levitas,B. F. Henson,Laura Smilowitz,B. W. Asay
标识
DOI:10.1103/physrevlett.92.235702
摘要
A new phenomenon is theoretically predicted, namely, that solid-solid transformation with a relatively large transformation strain can occur through virtual melting along the interface at temperatures significantly (more than 100 K) below the melting temperature. The energy of elastic stresses, induced by transformation strain, increases the driving force for melting and reduces the melting temperature. Immediately after melting, the stresses relax and the unstable melt solidifies. Fast solidification in a thin layer leads to nanoscale cracking, which does not affect the thermodynamics and kinetics of solid-solid transformation. Seven theoretical predictions are in quantitative agreement with experiments conducted on the beta-->delta transformation in the HMX energetic crystal.
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