Magnetic-Pulsed Separation of Sheet Metals

Y. Batygin, S. Shinderuk, E. Chaplygin, N. Rudenko, O. Yeryomina
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Abstract

The purpose of the article is to offer the method tool, the characteristic estimates, the theoretical analysis of the ongoing electrodynamic processes and the experimental testing aimed at substantiating the efficiency of magnetic-pulsed separation of two flat tightly adjacent conductive sheets in an inductor system with a rectangular solenoid placed on one of their surfaces. Methodology. For conducting the research, the methods for solving boundary electrodynamics tasks, the mathematical applications from the Wolfram Mathematica package, the experimental research methods in Mechanics and Applied Electrodynamics have been employed. Results. The analytical expressions for the spatiotemporal distribution of magnetic pressure forces in rectangular inductor systems which generate packets of low-frequency plane-parallel electromagnetic waves have been obtained. Successful experimental testing of the magnetic-pulsed separation of aluminum sheet samples confirmed the validity of theoretical conclusions. It was found that for the practical application of this production operation, sufficiently small values of exciting fields, as well as low voltage values on the capacitive energy storage of electromagnetic power sources $(\sim 0.5\ldots 1\ \text{kV})$ are required. Practical implications. The results obtained allow to put into practice effective magnetic-pulsed technologies of separating sheet metals in automated lines and their transportation directly to the processing zone.
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金属板磁脉冲分离
本文的目的是提供方法工具、特性估计、正在进行的电动力学过程的理论分析和实验测试,旨在证实磁脉冲分离电感系统中两个扁平紧密相邻的导电片的效率,其中一个表面放置一个矩形螺线管。方法。为了进行研究,采用了求解边界电动力学任务的方法、Wolfram Mathematica软件包中的数学应用程序、力学和应用电动力学中的实验研究方法。结果。得到了产生低频平面平行电磁波包的矩形电感系统中磁压力的时空分布解析表达式。磁脉冲分离铝板样品的成功实验验证了理论结论的有效性。研究发现,为了实际应用该生产操作,需要足够小的励磁场值和较低的电磁电源电容储能电压值$(\sim 0.5\ldots 1\ \text{kV})$。实际意义。所获得的结果使有效的磁脉冲技术在自动化生产线上分离金属板材并将其直接输送到加工区成为可能。
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