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Lamellar eutectic growth with anisotropic interphase boundaries: Experimental study using the rotating directional solidification method

机译:具有各向异性相间边界的层状共晶生长:基于旋转定向凝固法的实验研究

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摘要

We report on an experimental study of the effects of interphase boundary anisotropy on eutectic microstructures using a new methodology called rotating directional solidification (RDS), which consists of rotating a thin sample with respect to a fixed unidirectional thermal gradient. The systems used are thin, large eutectic grains of the CBr_4-C_2Cl_6 and In-In_2Bi lamellar eutectic alloys. The shape of the observed RDS lamellar trajectories turns out to be a reproducible eutectic-grain-dependent feature, in agreement with the theoretical prediction that these trajectories are approximately homothetic to the Wulff form of the interphase boundary in the sample plane. We show that different modes of lamellar growth, ranging from quasi-isotropic to (crystallographically) locked, exist in different eutectic grains of the two alloys studied. A detailed characterisation of these modes is given, with particular attention to the as-yet poorly understood aspects of locked lamellar growth.
机译:我们报告了一种称为旋转定向凝固 (RDS) 的新方法对相间边界各向异性对共晶微观结构影响的实验研究,该方法包括相对于固定的单向热梯度旋转薄样品。使用的系统是CBr_4 C_2Cl_6和In-In_2Bi层状共晶合金的薄而大的共晶晶粒。观测到的RDS层状轨迹的形状被证明是一个可重复的共晶晶粒依赖性特征,这与理论预测一致,即这些轨迹与样品平面中相间边界的Wulff形式近似同质。我们表明,从准各向同性到(晶体学)锁定的不同层状生长模式存在于所研究的两种合金的不同共晶晶粒中。给出了这些模式的详细表征,特别关注了尚未了解的锁定层状生长方面。

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