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Horizontal electromagnetic casting of thin metal sheets

机译:薄金属板的水平电磁铸造

摘要

Thin metal sheets are cast by magnetically suspending molten metal deposited within a ferromagnetic yoke and between AC conducting coils and linearly displacing the magnetically levitated liquid metal while it is being cooled to form a solid metal sheet. Magnetic flux increases as the molten metal sheet moves downward and decreases as the molten metal sheet moves upward to stabilize the sheet and maintain it in equilibrium as it is linearly displaced and solidified by cooling gases. A conducting shield is electrically coupled to the molten metal sheet by means of either metal sheet engaging rollers or brushes on the solidified metal, and by means of an electrode in the vessel containing the molten metal thereby providing a return path for the eddy currents induced in the metal sheet by the AC coil generated magnetic flux. Variation in the geometry of the conducting shield allows the magnetic flux between the metal sheet and the conducting shield to be varied and the thickness in surface quality of the metal sheet to be controlled. Side guards provide lateral containment for the molten metal sheet and stabilize and shape the magnetic field while a leader sheet having electromagnetic characteristics similar to those of the metal sheet is used to start the casting process and precedes the molten metal sheet through the magnet and forms a continuous sheet therewith. The magnet may be either U-shaped with a single racetrack coil or may be rectangular with a pair of facing bedstead coils.
机译:通过磁悬浮沉积在铁磁轭内和交流导电线圈之间的熔融金属,并在冷却过程中线性移动磁悬浮液态金属以形成固态金属板,来铸造薄金属板。随着熔融金属板的向下移动,磁通量增加;随着熔融金属板的向上移动,磁通量减小,以使金属板稳定并在其被冷却气体线性移动和固化时保持平衡。借助于金属板接合辊或固化金属上的电刷,并通过装有熔融金属的容器中的电极,将导电屏蔽层与熔融金属板电连接,从而为在管道中感应出的涡流提供返回路径。金属板通过交流线圈产生磁通量。导电屏蔽的几何形状的变化允许金属板和导电屏蔽之间的磁通量变化,并且金属板的表面质量的厚度可以被控制。侧护板为熔融金属板提供横向包容并稳定和整形磁场,而具有与金属板类似的电磁特性的引导板则用于开始铸造过程,并先于熔融金属板穿过磁体并形成一个与之连续的片材。磁体可以是带有单个跑道线圈的U形,也可以是带有一对相对的床架线圈的矩形。

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