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Eutectic colony formation: A stability analysis

机译:共晶菌落形成:稳定性分析

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Experiments have widely shown that a steady-stare lamellar eutectic solidification front is destabilized on a scale much larger than the lamellar spacing by the rejection of a dilute ternary impurity and forms two-phase cells commonly referred to as "eutectic colonies." We extend the stability analysis of Datye and Langer [V. Datye and J. S. Langer, Phys. Rev. B 24, 4155 (1981)] for a binary eutectic to include the effect of a ternary impurity. We find that the expressions for the critical onset velocity and morphological instability wavelength are analogous to those for the classic Mullins-Sekerka;a instability of a monophase planar interface, albeit with an effective surface tension that depends on the geometry of the lamellar interface and, nontrivially, on interlamellar diffusion. A qualitatively new aspect of this instability is the occurrence of oscillatory modes due to the interplay between the destabilizing effect of the ternary impurity and the dynamical feedback of the local change in lamellar spacing on the front motion. Ina transient regime, these modes lead to the formation of large scale oscillatory microstructures for which there is recent experimental evidence in a transparent organic system. Moreover, it is shown that the eutectic front dynamics on a scale larger than the lamellar spacing can be formulated as an effective monophase interface free boundary problem with a modified Gibbs-Thomson condition that is coupled to a slow evolution equation for the lamellar spacing. This formulation provides additional physical insights into the nature of the instability and a simple means to calculate an approximate stability spectrum. Finally, we investigate the influence of the ternary impurity on a short wavelength oscillatory instability that is already present at off-eutectic compositions in binary eutectics. [S1063-651X(99)18010-3]. [References: 33]
机译:实验已广泛表明,稳定稀疏的层状共晶凝固前沿由于排斥稀三元杂质而在比层状间隔大得多的尺度上不稳定,并形成通常称为“共晶菌落”的两相细胞。我们扩展了Datye和Langer [V. Datye和J. S. Langer,物理学。 Rev.B 24,4155(1981)],以使二元共晶包括三元杂质的影响。我们发现临界开始速度和形态不稳定性波长的表达式与经典Mullins-Sekerka的表达式类似;单相平面界面的不稳定性,尽管有效表面张力取决于层状界面的几何形状,并且层间扩散。这种不稳定性的定性新方面是振荡模式的出现,这是由于三元杂质的去稳定作用与片层间距局部变化对前向运动的动态反馈之间的相互作用所致。在瞬态状态下,这些模式导致形成大规模的振荡微结构,为此,在透明的有机体系中有最新的实验证据。此外,已表明,可以将大于层状间隔的尺度上的共晶前沿动力学公式化为具有修正的吉布斯-汤姆森条件的有效单相界面自由边界问题,该条件耦合到层状间隔的缓慢演化方程。该公式为不稳定性的性质提供了更多的物理见解,并提供了一种计算近似稳定性谱的简单方法。最后,我们研究了三元杂质对二元共晶中非共晶成分中已经存在的短波长振荡不稳定性的影响。 [S1063-651X(99)18010-3]。 [参考:33]

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