A multiphysics model of processes in electromagnets and actuators of vacuum switching devices taking into ac-count contact interaction of structural elements

Mykhailo Panteliat, A. Kuzmin
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Abstract

The purpose of the work is to improve mathematical models and algorithms of computer modeling of multiphysics processes in electromagnets and actuators of vacuum switching devices by taking into account the contact interaction of structural elements when changing their stress-strain state. In the design of modern vacuum circuit breakers and contactors, there is a significant use of electromagnetic actuators based on high-coercive hard magnetic rare earth composite materials NdFeB and SmCo. The most promising for use as drives of circuit breakers and contactors are polarized electromagnets based on the use of these high-coercive permanent magnets. However, the existing serial designs of electromagnets and actuators need to be significantly improved in order to increase reliability and service life, reduce weight and cost, further reduce energy consumption, improve the manufacturability of the mass production process. Computer simulation is proposed to be performed by the Finite Element Method in 2D formulation using commercial software products and/or software created directly for these investigations. One of the priority areas for improving mathematical models and algorithms for computer modeling of processes in the mechanical circuit of vacuum switching devices of medium and high voltage is to take into account the contact interaction of the structural elements of the devices under consideration. The next step, thanks to the use of an advanced mathematical model, is to perform a set of computational research and based on the obtained numerical results to develop recommendations aimed at creating designs of electromagnets and actuators that would meet world standards and be competitive in the world market.
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考虑结构元件接触相互作用的真空开关装置电磁铁和执行器过程的多物理场模型
本文的目的是通过考虑结构元件在改变应力-应变状态时的接触相互作用,改进真空开关器件中电磁铁和执行器多物理场过程计算机建模的数学模型和算法。在现代真空断路器和接触器的设计中,大量使用了基于高矫顽力硬磁稀土复合材料NdFeB和SmCo的电磁执行器。最有希望用作断路器和接触器驱动器的是基于使用这些高矫顽力永磁体的极化电磁铁。然而,为了提高可靠性和使用寿命,减轻重量和成本,进一步降低能耗,提高批量生产过程的可制造性,现有的电磁铁和执行器的系列化设计需要得到显著改进。建议使用商业软件产品和/或直接为这些调查创建的软件,通过二维公式中的有限元方法进行计算机模拟。改进中高压真空开关器件机械电路过程计算机建模的数学模型和算法的优先领域之一是考虑所考虑的器件结构元件的接触相互作用。由于使用了先进的数学模型,下一步是进行一系列计算研究,并根据获得的数值结果制定建议,旨在创建符合世界标准并在世界市场上具有竞争力的电磁铁和执行器的设计。
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