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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Traveling waves, two-phase fingers, and eutectic colonies in thin-sample directional solidification of a ternary eutectic alloy
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Traveling waves, two-phase fingers, and eutectic colonies in thin-sample directional solidification of a ternary eutectic alloy

机译:三元共晶合金薄样品定向凝固中的行波,两相指状物和共晶菌落

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摘要

We present an experimental investigation of the morphological transition of lamellar eutectic growth fronts called "formation of eutectic colonies" by the method of thin-sample directional solidification of a transparent model alloy, CBr4-C2Cl6. This morphological transition is due to the presence in the melt of traces of chemical components other than those of the base binary alloy (impurities). In this study, we use naphthalene as an impurity. The formation of eutectic colonies has generally been viewed as an impurity-driven Mullins-Sekerka instability of the envelope of the lamellar front. This traditional view neglects the strong interaction existing between the Mullins-Sekerka process and the dynamics of the lamellar pattern. This investigation brings to light several original features of the formation of eutectic colonies, in particular, the emission of long-wavelength traveling waves, and the appearance of dendritelike structures called two-phase fingers, which are connected with this interaction. We study the part played by these phenomena in the transition to eutectic colonies as a function of the impurity concentration. Recent theoretical results on the linear stability of ternary lamellar eutectic fronts [Plapp and Karma, Phys. Rev. E 60, 6865 (1999)] shed light on some aspects of the observed phenomena. [References: 40]
机译:我们通过薄模型定向凝固的透明模型合金CBr4-C2Cl6的方法,对称为“共晶集落的形成”的层状共晶生长前沿的形态转变进行了实验研究。这种形态转变是由于在熔体中存在除基础二元合金(杂质)以外的微量化学成分。在这项研究中,我们使用萘作为杂质。共晶菌落的形成通常被认为是层状前沿包膜的杂质驱动的Mullins-Sekerka不稳定性。这种传统观点忽略了Mullins-Sekerka过程与层状图案动力学之间存在的强大相互作用。这项研究揭示了共晶菌落形成的几个原始特征,特别是长波长行波的发射以及与这种相互作用有关的被称为两相指状的树状结构的出现。我们研究了这些现象在向共晶菌落过渡过程中所起的作用,它是杂质浓度的函数。三元层状共晶前沿线性稳定性的最新理论结果[Plapp and Karma,Phys。 E 60,6865(1999)。]阐明了观察到的现象的某些方面。 [参考:40]

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