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Micro-structure evolution of wall based crystals after casting of model suspensions as obtained from Bragg microscopy

机译:从布拉格显微镜获得的模型悬浮液浇铸后,壁基晶体的微观结构演变

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Growth of heterogeneously nucleated, wall based crystals plays a major role in determining the micro-structure during melt casting. This issue is here addressed using a model system of charged colloidal spheres in deionized aqueous suspension observed by Bragg microscopy which is a combination of light scattering and microscopy. We examine the evolution of the three-dimensional size, shape, and orientation of twin domains in monolithic crystals growing from two opposing planar walls into a meta-stable (shear-) melt. At each wall crystal orientation and twinning emerges during nucleation with small domains. During growth these widen and merge. From image analysis we observe the lateral coarsening velocities to follow a power law behaviour L _(XY) t ~(12) as long as the vertical growth continues at constant speed. Lateral coarsening terminates upon intersection of the two solids and hardly any further ripening is seen. Initial lateral coarsening velocities show a Wilson Frenkel type dependence on the melt meta-stability.
机译:异质核,壁基晶体的生长在确定熔铸过程中的微观结构方面起着重要作用。在此,使用通过布拉格显微镜观察到的去离子水悬浮液中带电胶体球的模型系统解决了这个问题,该系统是光散射和显微镜相结合的结果。我们研究了从两个相对的平面壁向亚稳态(剪切)熔体生长的整体晶体中双晶畴的三维尺寸,形状和取向的演变。在每个壁上,晶体取向和孪晶在具有小畴的成核过程中出现。在增长过程中,它们会扩大并合并。从图像分析中,只要垂直增长以恒定速度持续进行,我们观察到横向粗化速度遵循幂律行为L _(XY)t〜(12)。横向粗化在两种固体相交时终止,几乎看不到任何进一步的熟化。初始横向粗化速度显示出Wilson Frenkel类型对熔体亚稳态的依赖性。

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