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Dendritic growth velocities in an undercooled melt of pure nickel under static magnetic fields: A test of theory with convection

机译:纯镍过冷熔体在静磁场下的树枝状生长速度:对流理论的测试

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摘要

Dendritic growth velocities in an undercooled melt of pure nickel under static magnetic fields up to 6 T were measured using a high-speed camera. The growth velocities for undercoolings below 120 K are depressed under low magnetic fields, but are recovered progressively under high magnetic fields. This retrograde behavior arises from two competing kinds of magnetohydrodynamics in the melt and becomes indistinguishable for higher undercoolings. The measured data is used for testing of a recent theory of dendritic growth with convection. A reasonable agreement is attained by assuming magnetic field-dependent flow velocities. As is shown, the theory can also account for previous data of dendritic growth kinetics in pure succinonitrile under normal gravity and microgravity conditions. These tests demonstrate the efficiency of the theory which provides a realistic description of dendritic growth kinetics of pure substances with convection.
机译:使用高速相机测量了纯镍过冷熔体在高达6 T的静磁场下的树枝状生长速度。 120 K以下过冷的生长速度在低磁场下会降低,但在高磁场下会逐渐恢复。这种逆行行为是由熔体中的两种相互竞争的磁流体动力学引起的,对于更高的过冷度来说,这是无法区分的。测量的数据用于测试最近的对流树突生长理论。通过假设磁场相关的流速可以获得合理的协议。如图所示,该理论还可以解释以前在纯重力和微重力条件下纯丁二腈中树突生长动力学的数据。这些测试证明了该理论的有效性,该理论提供了对流纯物质的树枝状生长动力学的现实描述。

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