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Direct-Current Forced Interruption and Breaking Performance of Spiral-Type Contacts in Aero Applications

机译:航空应用中螺旋式触点的直流强制中断和断裂性能

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摘要

This paper analyses the transient characteristics and breaking performance of direct-current (DC) forced-interruption vacuum interrupters in 270 V power-supply systems. Three stages are identified in forced interruption: the DC-arcing stage, current-commutation stage, and voltage-recovery stage. During the current-commutation stage, the reverse peak-current coefficient k , which is a key design factor, is used to calculate the rate of current at zero-crossing ( di / dt ). MATLAB/Simulink simulation models are established to obtain the transient characteristics influenced by the forced-commutation branch parameters and the coefficient k . To study the breaking performance of spiral-type contacts, experiments are conducted for different contact materials and arcing times for currents less than 3.5 kA. During the DC-arcing stage, a locally intensive burning arc is observed in the CuW80 contact; however, it is not observed in the CuCr50 contact. On examining the re-ignition interruption results of the CuW80 contact, the intensive burning arc is found to be positioned within a possible re-ignition region. When the arcing time is longer than 1 ms, the intensive burning arc occurs and affects the breaking performance of the spiral-type contacts. If the DC-arcing stage is prolonged, the total arcing energy increases, which leads to a lower breaking capacity.
机译:本文分析了270 V电源系统直流(直流)强制中断真空断电器的瞬态特性和断裂性能。在强制中断中识别了三个阶段:DC电弧级,电流换向阶段和电压恢复阶段。在当前换向阶段期间,用于键设计因子的反向峰值电流系数k用于计算零交叉(di / dt)时的电流速率。建立MATLAB / SIMULINK仿真模型以获得受强制换向分支参数和系数k影响的瞬态特性。为研究螺旋式触点的断裂性能,对不同的接触材料进行实验和小于3.5ka的电流的电弧时间。在直流电电弧级,在CUW80接触中观察到局部密集的燃烧弧;但是,在CUCR50接触中未观察到。在检查CUW80接触的重新点火中断结果时,发现密集燃烧电弧定位在可能的重新点火区域内。当电弧时间长于1毫秒时,将发生密集燃烧电弧并影响螺旋式触点的断裂性能。如果DC电弧级延长,则总电弧能量增加,这导致断裂能力较低。

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