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High current vacuum arc phenomena of nanocrystalline CuCr25 contact material

机译:纳米晶CuCr25触头材料的高电流真空电弧现象

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Research on the vacuum arc phenomena of the nanocrystalline CuCr25 contact material is interested for its potential application on high current interruption. In order to investigate the vacuum arc phenomena of the nanocrystalline CuCr25 contact material, a traditional CuCr25 material was also prepared for comparison. 12mm and 25mm diameter contacts were assembled in vacuum interrupters, which have a glass envelope and no shield. A high-speed CCD camera was used to observe the anode phenomena and the cathode phenomena through the glass envelope. The test vacuum interrupters were operated by a permanent magnet mechanism. The average opening velocity can be adjusted to two velocities: 1.3m/s to 1.8 m/s. The arc current frequency was 50Hz and arc duration was 9ms∼10ms. The experimental results showed that at same current and average opening velocity, the arc energy and the mean value of arc voltage of nanocrystalline CuCr25 was lower than the traditional CuCr25 contact material. The distribution of cathode spots on the nanocrystalline CuCr25 contact was more uniformly than of the traditional CuCr25 contact. And the carrying current per cathode spot of the nanocrystalline contact material was about ⅓ of that of the traditional contact material. However, the anode phenomena of the nanocrystalline CuCr25 contact were more active than the traditional CuCr25 contact material when passing the same high currents. At a threshold current at the first high-current anode mode appeared, it was found that the threshold current of nanocrystalline CuCr25 contact material was lower than that of traditional CuCr25 contact material, which means the nanocrystalline CuCr25 contact material was more prone to appear the high-current anode mode than the traditional CuCr25 contact material.
机译:对纳米晶CuCr25接触材料的真空电弧现象的研究对其在大电流中断方面的潜在应用感兴趣。为了研究纳米晶CuCr25接触材料的真空电弧现象,还制备了传统的CuCr25材料进行比较。直径为12mm和25mm的触点安装在真空灭弧室中,该灭弧室有一个玻璃外壳,没有屏蔽。使用高速CCD相机通过玻璃外壳观察阳极现象和阴极现象。测试真空灭弧室由永磁机构操作。可以将平均打开速度调整为两种速度:1.3m / s至1.8 m / s。电弧电流频率为50Hz,电弧持续时间为9ms〜10ms。实验结果表明,在相同电流和平均打开速度下,纳米晶CuCr25的电弧能量和电弧电压均值均低于传统的CuCr25触头材料。阴极点在纳米晶CuCr25触点上的分布比传统的CuCr25触点更均匀。纳米晶接触材料的每个阴极点的载流电流约为传统接触材料的载流电流的1/3。然而,当通过相同的高电流时,纳米晶态CuCr25触头的阳极现象比传统的CuCr25触头材料更活跃。发现在第一个大电流阳极模式下出现阈值电流时,发现纳米晶态CuCr25接触材料的阈值电流低于传统的CuCr25触头材料,这意味着纳米晶态CuCr25接触材料更容易出现高电流。电流阳极模式要比传统的CuCr25触头材料大。

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