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Effective Shortening of Break Arc Duration s of Ag and Several Ag-based Contacts in DC Load Conditions with Increased Contact Opening Speeds and External Magnetic Field

机译:在直流负载条件下,随着触点断开速度和外部磁场的增加,有效缩短了Ag和几个基于Ag的触点的断开电弧持续时间

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, and AgC contact pairs were conducted in a DC inductive (L=5.7mH) load circuit with 14V-12A, 20V-7A and 20V-17A at different contact opening speeds from 1 to 200 mm/s and with/without external magnetic field application of about 120 mT in air. Break arc voltage waveforms were observed, and total break arc durations and metallic phase durations were determined based on the observed arc voltage waveforms. After the experiments, averages for the total arc durations as well as the metallic phase and gaseous phase (when observed) durations were calculated at each condition. Faster contact opening speeds caused reductions in total break arc durations in all of tested conditions, and realized almost inversely-proportional reductions for metallic phase durations. External magnetic field application showed no influences on metallic phase duration, while leading to shorter gaseous phases in certain conditions.
机译:,并且在具有14V-12A,20V-7A和20V-17A的DC电感式(L = 5.7mH)负载电路中以1至200 mm / s的不同触点打开速度以及有无外部磁场对AgC触点对进行了测试空气中约120 mT的应用。观察到中断电弧电压波形,并基于观察到的电弧电压波形确定总中断电弧持续时间和金属相持续时间。实验后,在每种条件下计算总电弧持续时间以及金属相和气相(观察时)的持续时间的平均值。更快的触点打开速度导致在所有测试条件下的总断开电弧持续时间减少,并且实现了金属相持续时间几乎成反比例的减少。施加外部磁场对金属相持续时间没有影响,而在某些条件下会导致较短的气相。

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