用于脉冲磁振荡(PMO)研究的大电流短脉冲发生器

A. Shoihet, M. Shvartsas, B. Gdaliahu, I. Edry
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引用次数: 2

摘要

脉冲磁振荡(PMO)是近十年来在实验结果中发现的一种用于金属和合金凝固组织细化的新技术。当在熔融金属凝固过程中施加电磁脉冲时,洛伦兹力会产生压力波,使其微观结构从柱状枝晶转变为球状晶粒。PMO在精确控制凝固组织方面具有很大的潜力。本文介绍了PMO研究所需的大电流短脉冲发生器的研制和构造。样品结构包括带有熔融金属的不导电坩埚,其同轴放置在电磁线圈内。该脉冲发生器能够将电流幅值为kA级的短脉冲引入线圈。该发电机基于谐振LCL电路结构,采用高电流可控硅开关。电力系统的基本思想是将低功率、长时间的输入转换成大功率、短时间的输出。利用谐振LC拓扑结构,首先建立了持久谐振电容充电工艺,从电网中吸取小电流。然后,高频、高幅度电容器放电过程为工作线圈提供必要的电流。描述了系统参数和运行的计算和仿真,并给出了实验系统性能的结果。理论考虑与试验结果非常相似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High current short pulse generator for pulse magneto-oscillation (PMO) research
Pulse magneto-oscillation (PMO) is one of the new techniques, developed for solidification structure refinement of metals and alloys, as it is was found in experimental results from the last decade. When electromagnetic pulses are applied to a molten metal during its solidification, the Lorentz forces causes to pressure waves, which change the microstructure from columnar dendrites to globular grains. PMO has a great potential in precise controlling of the solidification microstructure. The current work presents the development and the construction of a high current short pulse generator, which was required for the PMO research. The sample configuration consists of the non conductive crucible with a molten metal, which is placed coaxially inside a solenoid coil. The pulse generator is able to introduce short pulses with current amplitude of kA order into the coil. The proposed generator is based on resonance LCL circuit structure using a high current SCR switch. The fundamental idea of the power system is to convert a low-power, long-time input into a high-power, short-time output. Using resonant LC topologies, the durable resonant capacitor charging process established firstly, drawing low current from the net. Afterward, high frequency, high amplitude capacitor discharging process provides the necessary current to the work coil. The calculations and simulations of the system parameters and operation are described and the results of the experimental system behavior are shown. The theoretical considerations and the test results were found to be closely resembled.
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