涡流悬浮系统

R. Rabinovici, V. Berdichevsky, M. Shvartsas, A. Shoihet
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引用次数: 8

摘要

在电磁悬浮过程中熔化金属是一种众所周知的技术,用于避免坩埚材料污染的风险,因为在传统的感应加热系统中。实现稳定的悬浮熔化过程的基本要求与金属负载的总体稳定性有关,即系统将负载悬浮在固定平衡位置的能力。研究发现,过程稳定性不仅受线圈几何形状的影响,还受电源设计的影响。对一个简单串联谐振变换器作为电源的仿真表明,由于球体运动和变换器电流包络线之间的相位延迟而引起的不稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Eddy-currents levitation system
Melting metals in a process of electromagnetic levitation is a well-known technique used to avoid the risk of contamination by crucible material as in conventional induction heating systems. A fundamental requirement to achieve a stable levitation melting process relates to the bulk stability of the metallic load, which is the ability of the system to keep the load suspended at a fixed equilibrium position. It is found that the process stability is affected not only by the coil geometry but also by the power supply design. Simulations of a simple series resonant converter as the power supply showed instabilities caused by a phase delay between the sphere movement and the current envelope of the converter.
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