模型直流电动机电触点滑动运动电流换相过程的理论推导

Yosuke Ogura, Y. Yokomizu, T. Fukutsuka, K. Oshima
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引用次数: 0

摘要

针对直流电机换向器段中的直流电流,本文首先描述了构建理论体系的尝试,推导了直流电机滑动运动时的换向过程。该理论体系基于(i)包括浓度电阻在内的电路方程,(ii)考虑到接触部分温度的电力平衡方程,以及(iii)施加在滑动表面上的接触力。其次,将构建的理论系统应用于模拟电刷和换向器段的设备,推导出滑动运动过程中的电流换向过程,并最终求出剩余电流。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theoretical Derivation of Current Commutation Process during Electrical-Contact Sliding Movement in Model DC Motor
Concerning a direct current flowing through commutator-segments in a DC motor, first, this paper describes the attempt at constructing theoretical system to derive the direct-current commutation process during sliding movement. The theoretical system is based on (i) electrical circuit equations including concentration resistances, (ii) electric power balance equations taken into account of contact-part temperatures, and (iii) contact forces applied on sliding surfaces. Second, the constructed theoretical system is applied to an equipment for simulating brush and commutator segments to derive the current commutation process during the sliding movement and finally to evaluate a residual current.
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