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Research on the dynamic behavior of the arc between contacts of DC contactor

机译:直流接触器触头之间电弧的动态行为研究

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Based on magneto-hydrodynamics (MHD) theory, an air arc model is set up for the contacts and arc inducing plate at chamber inlet of a certain type of DC contactor and the dynamic behavior of the arc is simulated. The variation laws of arc length and the main conductive area migrating from moving contact to arc inducing plate were studied quantitatively under the influence of breaking speed and the applied magnetic field. The relationships between the change of breaking condition and position of conductive area, the migration time of area with high conductivity are revealed. And the experimental platform is set up to study arc dynamic development process of DC contactor which is consistent with the simulation results under the same conditions. The research of this paper has certain guiding significance for improving the breaking capacity of DC contactor and optimizing the structure of arc extinguishing chamber.
机译:基于磁流体动力学(MHD)理论,建立了某类型直流接触器腔室入口处触头和引弧板的电弧模型,并模拟了电弧的动态行为。在断裂速度和外加磁场的影响下,定量研究了电弧长度的变化规律和从活动触点到引弧板的主要导电区域的迁移规律。揭示了断裂条件的变化与导电区域位置,高导电区域迁移时间之间的关系。建立了实验平台,研究直流接触器的电弧动态发展过程,与相同条件下的仿真结果相吻合。本文的研究对提高直流接触器的分断能力和优化灭弧室的结构具有一定的指导意义。

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