表面金属熔融脉冲电流磁流体动力不稳定性

С.Д. Самуйлов, И.П. Шербаков, Ю.Н. Бочаров, С. И. Кривошеев, С.Г. Магазинов
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引用次数: 0

摘要

结果表明,在脉冲电流作用模式下,各种材料的色散结果与理论估计的MHD不稳定波长相对应。得到的金属晶粒的大小,包括耐火的,与暴露方式相对应,它们的微观结构与形成条件相对应。在Comsol Multiphysics环境中进行的定性建模揭示了电流表面层厚度对液态金属液滴形成和分离动力学的影响。结果表明,造成和增加不稳定性的一个操作因素是当前供应区洛伦兹力分布的非均匀性。
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Магнитогидродинамическая неустойчивость расплавленного импульсным током поверхностного слоя металла
It is shown that the results of dispersion of various materials in the mode of pulsed current action correspond to theoretical estimates of the wavelength of MHD instability. The sizes of the obtained metal grain, including refractory ones, correspond to the modes of exposure, and their microstructure corresponds to the conditions of formation. Modeling in the Comsol Multiphysics environment at a qualitative level revealed the influence of the thickness of the surface layer of the current flow on the dynamics of the formation and separation of liquid metal droplets. It is shown that one of the operating factors that create and increase instabilities is the heterogeneity of the distribution of Lorentz forces in the current supply zone.
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