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Analysis for Temperature Field and Thermal Stress of the Pulsed Inductor

机译:脉冲电感器的温度场和热应力分析

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摘要

The pulsed inductor is a key device in the pulse power supply (PPS) in electromagnetic launch and electromagnetic propulsion systems. With the requirements of the weaponization of PPS, whether the continuous pulse discharge can be realized is an important criterion for testing the performances of the PPS. During the continuous pulse discharge, the temperature distribution and the thermal stress are created in the pulsed inductor when the electric current flows, and these greatly affect the efficiency and the mechanical structure of the pulsed inductor. The objective of this paper is to investigate the effects of the temperature distribution and the thermal stress on pulsed inductors. First, by using the finite-element method, the theoretical calculation for the temperature distribution is provided. Next, the experiment for studying the temperature distribution of the pulsed inductor is designed; a thermocouple is used to measure the temperature generated during the pulse discharge to show the reasonability of simulation results. Based on the aforementioned results, the theoretical calculation for the thermal stress is given. This paper will help to improve the mechanical structure design and the performance of the pulsed inductor.
机译:脉冲电感器是电磁发射和电磁推进系统中脉冲电源(PPS)的关键设备。根据PPS武器化的要求,能否实现连续脉冲放电是测试PPS性能的重要标准。在连续脉冲放电过程中,电流流过时,在脉冲电感器中会产生温度分布和热应力,这极大地影响了脉冲电感器的效率和机械结构。本文的目的是研究温度分布和热应力对脉冲电感器的影响。首先,通过使用有限元方法,提供了温度分布的理论计算。接下来,设计了用于研究脉冲电感器温度分布的实验;热电偶用于测量脉冲放电期间产生的温度,以显示仿真结果的合理性。基于上述结果,给出了热应力的理论计算。本文将有助于改善机械结构设计和脉冲电感器的性能。

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