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The Nature of Oscillations of the Crystallization Front in a Diluted Binary Melt during the Initial Transient Process

机译:在初始瞬态过程中,稀释的二元熔体中晶化前沿的振荡性质

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The cause of oscillations of the crystallization rate of a binary melt that arise in the initial transient process and have been revealed earlier in numerical experiments is investigated theoretically. Within a simple time-dependent model of directed crystallization, the problem of impurity diffusion in the melt from which a crystal is drawn at constant rate is solved in a linear approximation. It is shown that, under certain conditions, the solution represents a superposition of two concentration waves, a traveling and a standing wave. The concept of a characteristic distance of directed crystallization of a binary melt is introduced. It is established that the nonmonotonic behavior of the crystallization rate during the initial transient process, in particular, its damped oscillations, is attributed to the accumulation of impurities in the melt that is excessive with respect to its distribution in the stationary regime. Impurities in the melt are accumulated excessively when the characteristic distance of directed crystallization starts to exceed the characteristic diffusion length of the impurity in the melt.
机译:理论上研究了在初始瞬态过程中出现的二元熔体结晶速率振荡的原因,该原因已在早期的数值实验中得到揭示。在一个简单的与时间有关的定向结晶模型中,以线性逼近法解决了以恒定速率从中提取晶体的熔体中杂质扩散的问题。结果表明,在一定条件下,解表示两个浓度波的叠加,即行波和驻波。引入了二元熔体定向结晶特征距离的概念。可以确定,在初始瞬态过程中结晶速率的非单调行为,特别是其阻尼振荡,是由于熔体中杂质的积累相对于其在固定状态下的分布而言是过量的。当定向结晶的特征距离开始超过熔体中杂质的特征扩散长度时,熔体中的杂质会累积过多。

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