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Progress and Perspective of Processing Glass Forming Melts in Low Gravity

机译:低重力玻璃熔体加工的进展与展望

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A review of the results from previous low-gravity experiments conducted on glass-forming melts is presented with particular emphasis on nucleation, crystallization, glass formation, and chemical homogeneity for high-temperature melts in low gravity. A review of this kind is important for 1) understanding the kinetics of glass formation (conversely, nucleation and crystallization) and the mechanism(s) of homogenization of high-temperature melts in low gravity, 2) avoiding duplication in future low-gravity experiments, and 3) properly utilizing low-gravity conditions for improving present-day glass processing techniques and, hence, the quality of glasses on Earth. It is consistently observed that glasses prepared in low gravity are more chemically homogeneous and more resistant to crystallization than those of the comparable glasses prepared on Earth, which is somewhat surprising. A hypothesis based on "shear thinning" of a melt is proposed as an explanation for these low-gravity results. A scheduled flight experiment, whose purpose is to acquire data on nucleation and crystal growth kinetics for Li_2O.2SiO_2 glass prepared in low gravity, is discussed.
机译:回顾了先前对玻璃形成熔体进行的低重力实验的结果,其中特别强调了低重力下高温熔体的成核,结晶,玻璃形成和化学均匀性。进行此类审查对于以下方面很重要:1)了解玻璃形成的动力学(相反,成核和结晶)以及低重力下高温熔体均质化的机理; 2)避免在以后的低重力实验中重复,以及3)适当利用低重力条件来改善当今的玻璃加工技术,从而改善地球上玻璃的质量。始终观察到,与在地球上制备的可比玻璃相比,在低重力下制备的玻璃在化学上更均一,并且更抗结晶。提出了基于熔体“剪切稀化”的假设作为这些低重力结果的解释。讨论了一个有计划的飞行实验,其目的是获得有关在低重力下制备的Li_2O.2SiO_2玻璃的成核和晶体生长动力学的数据。

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