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Solidification and Melting - Asymmetries and Consequences

机译:凝固和熔化 - 不对称和后果

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Solidification and melting are phase transitions from the liquid to solid state or vice versa and are thus often assumed to be similar processes with only opposite direction. However, they can be fundamentally different, i.e. asymmetric, in aspects of both thermodynamics and kinetics. It is known that superheat in the solid is difficult to obtain, unlike supercooling in the liquid. This is often attributed to the fact that nucleation in the liquid can occur (homogeneously or heterogeneously) in the bulk, in the solid it will occur at outer or inner surfaces of the crystal. A further asymmetry is evident as the growing phase is a phase with fast diffusion kinetics in the case of melting, with slow diffusion kinetics in the case of solidification. Two types of experiments (solutal melting and melting/resolidification in a temperature gradient) are presented that allow an evaluation and quantification of the consequences of these asymmetries.
机译:凝固和熔化是从液体到固态的相转变,反之亦然,因此通常假设仅具有相反方向的类似过程。然而,它们可以从根本上不同,即不对称,在热力学和动力学的各方面。众所周知,与液体中的过冷难以获得固体中的过热。这通常归因于液体中的成核可以在体积中(均匀或异烯),在固体中它将发生在晶体的外表面或内表面。随着越来越多的相对于熔化的情况是具有快速扩散动力学的相位,进一步的不对称性是显而易见的,在凝固的情况下,具有缓慢的扩散动力学。提出了两种类型的实验(在温度梯度中的溶解和熔化/溶解质),其允许评估和定量这些不对称的后果。

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