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Kinetics of colloidal alloy crystallization of binary mixtures of monodispersed polystyrene and/or colloidal silica spheres having different sizes and densities in microgravity using aircraft

机译:使用飞机在微重力下具有不同大小和密度的单分散聚苯乙烯和/或硅胶颗粒的二元混合物的胶体合金结晶动力学

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Crystal growth rates in colloidal ahoy crystallization of binary mixtures of monodispersed polystyrene and/or silica spheres having different sizes and densities are studied in microgravity by parabolic flights of an aircraft. The crystal growth rates are obtained by time-resolved reflection spectroscopy with a continuous circulating-type stopped-flow-cell system. The growth rates of alloy crystallization increase substantially in microgravity up to about 1.7 times those in normal gravity, which is in contrast to the retarding microgravity effect on the crystallization of single-component spheres. The disappearance of the segregation effect in microgravity is the main cause for the enhancing effect. The absence of convection of the suspension and the lack of downward sedimentation of colloidal spheres are also important. [References: 36]
机译:通过飞机的抛物线飞行,研究了具有不同尺寸和密度的单分散聚苯乙烯和/或二氧化硅球的二元混合物的胶态晶体的晶体生长速率。通过具有连续循环型停流池系统的时间分辨反射光谱法获得晶体生长速率。合金结晶的生长速率在微重力下基本增加到正常重力下的约1.7倍,这与阻滞微重力对单组分球体结晶的影响相反。在微重力中偏析作用的消失是增强作用的主要原因。悬浮液的对流的缺乏和胶体球的向下沉降的缺乏也很重要。 [参考:36]

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