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The influences of different factors on the descaling effects in removing oxide layer on metal surface by vacuum arc

机译:不同因素对真空电弧去除金属表面氧化层除垢效果的影响

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Vacuum arc descaling technique is a dry and green substitute for the traditional acid-washing and mechanical cleaning technique widely used in the metallurgical industry. It mainly utilizes the high energy density property and the selective motion property of cathode spots. In this paper, the influences of different factors, mainly the vacuum arc circuit, the protect gas pressure, and the electrode gap distance on the effects of descaling process are investigated experimentally. Experiments are conducted in a vacuum chamber with a protect argon gas pressure of 1-1000Pa. The vacuum arc circuit and the electrode gap distance are set to 25-200A and 10-20mm, respectively. The images of vacuum arc and cathode spots during the descaling process are photographed by a high speed digital camera with an exposure time of 2μs. The photos of cathode surface after descaling are analyzed with the help of the images of vacuum arc and cathode spots captured by the high-speed camera. The influences of different factors on the descaling rate (descaled quality per unit time) and the surface cleanliness of cathode are mainly analyzed.
机译:真空电弧除氧化皮技术是冶金工业中广泛使用的传统酸洗和机械清洁技术的一种干燥绿色替代品。它主要利用高能量密度特性和阴极斑点的选择性运动特性。本文主要研究了真空电弧电路,保护气体压力和电极间隙距离等因素对除垢过程的影响。实验是在具有1-1000Pa保护氩气压力的真空室中进行的。真空电弧电路和电极间隙距离分别设置为25-200A和10-20mm。除垢过程中真空电弧和阴极斑点的图像由高速数码相机拍摄,曝光时间为2μs。除垢后的阴极表面照片借助于真空电弧和高速相机捕获的阴极斑点的图像进行分析。主要分析了不同因素对除垢率(单位时间除垢质量)和阴极表面清洁度的影响。

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