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Progress in Research on Solidification in a Strong Static Magnetic Field

机译:强静磁场中凝固的研究进展

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摘要

Strong magnetic fields available from superconducting magnets are opening a way to new phenomena that could lead to new methods in materials processing including solidification. The principal research involving solidification in strong static magnetic fields is emphasizing four aspects: control of crystal orientation, convection damping, thermoelectric magnetohydrodynamics (TEMHD) and change in thermodynamics. Under high magnetic intensity, aligned structural textures are induced in both magnetic and non-magnetic materials. Since in strong magnetic field the melt flow is suppressed by convection damping, the microstructure being formed during solidification is affected heavily; this phenomenon applies to eutectic, monotectic and peritectic alloys as well as to dendritic morphologies typical of directional solidification. If strength and orientation of a magnetic field are controlled appropriately, this strong damping effect will generate more homogeneous crystals as a result of achieving diffusion-controlled solute transport conditions. TEMHD more easily occurs in strong magnetic fields, resulting in equiaxed crystals even under directional solidification. It is evidenced experimentally and theoretically that the thermodynamics of phase transformation and nucleation are changed by strong magnetic fields.
机译:超导磁体提供的强磁场为新现象开辟了道路,新现象可能导致材料处理(包括凝固)方面的新方法。涉及在强静磁场中固化的主要研究重点是四个方面:晶体取向的控制,对流阻尼,热电磁流体动力学(TEMHD)和热力学变化。在高磁场强度下,磁性和非磁性材料均会感应到对齐的结构纹理。由于在强磁场中,通过对流阻尼抑制了熔体流动,因此严重影响了凝固过程中形成的微观结构。这种现象适用于低共熔,单晶和包晶合金以及定向凝固典型的树枝状形态。如果适当控制磁场的强度和方向,由于达到了扩散控制的溶质传输条件,这种强大的阻尼作用将生成更均匀的晶体。 TEMHD在强磁场中更容易发生,即使在定向凝固下也能形成等轴晶体。实验和理论证明,强磁场会改变相变和成核的热力学。

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