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Yanyi Xu 《中国物理 B》2021,30(8):84701-084701
Gain refinement in metal alloy can be achieved by applying an electric current pulse (ECP) in solidification process. Forced flow inside the melt has been proved to be a key role in grain refinement. In this paper, the fluid flow inside Ga 20 wt%-In 12 wt%-Sn alloy induced by a damping sinusoidal ECP flowing through two parallel electrodes into the cylindrical melt was investigated by both experimental measurements and numerical simulations. Experimental results showed that a strong descending jet was induced beneath the bottom of electrodes under the application of ECP. Besides, it was found that flow intensity increases with the increase of amplitude, frequency, and pulse width, respectively. In order to unlock the formation mechanism of flow pattern and the relevance of flow intensity varied with electrical parameters, a three-dimensional numerical model under the application of ECP was established. Meanwhile, a comparative study was conducted by numerical simulations to reveal the distributions of electromagnetic fields and forced flow. Numerical results showed that the downward Lorentz force induced by ECP was concentrated beneath the bottom of electrodes. This downward Lorentz force induces a descending jet and provokes a global forced flow. According to numerical simulations, the evolution of flow intensity with electrical parameters under the application of ECP can be understood by the time averaged impulse of Lorentz force.  相似文献   
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龚永勇  祁长鸿  干福熹 《光学学报》1990,10(12):1063-1069
通过对尺寸分布非均匀加宽的激子吸收带选择激发的方法,研究了玻璃中几个nm量级的CuCl微晶的激子发光光谱.发现尺寸量子化的激子态劈裂形成多个分量.通过对尺寸量子化所产生的球形微晶中激光跃迁能级劈裂的分析,得到CuCl的z_(1.2)激子跃迁质量,Luttinger参数以及x线性项系数等数据.  相似文献   
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