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Removing Oxide Layers From Carbon-Steel Tubular Surfaces Using Vacuum Arcs Driven by Transverse Magnetic Field

机译:使用横向磁场驱动的真空电弧从碳钢管状表面去除氧化层

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This paper analyzes how removing oxide layer on metal surface by vacuum arc could be a green substitute for the traditional acid-washing and mechanical cleaning technique widely used in the metallurgical industry, which is harmful to the environment. In this paper, the effects of vacuum arc on removing oxide layer on the surface of carbon-steel tubes, which were used as the cathode, is investigated experimentally. External coils are used to generate transverse magnetic field (TMF) driving cathode spots to rotate on tube surface. Experiments are conducted in a vacuum chamber with Ar as the protection gas under different TMF flux densities. Arc images are captured by a high-speed digital camera with an exposure time of 2 $mu{rm s}$ . The influence of transverse magnetic flux density on the characteristics of arc and descaling effect is mainly investigated.
机译:本文分析了通过真空电弧去除金属表面的氧化层如何替代冶金行业广泛使用的传统酸洗和机械清洗技术的绿色替代方法,这种技术对环境有害。通过实验研究了真空电弧对碳钢管表面阴极上氧化层去除的影响。外部线圈用于产生横向磁场(TMF),驱动阴极点在管子表面旋转。在真空室中以不同的TMF通量密度,以Ar作为保护气体进行实验。弧形图像由高速数码相机捕获,其曝光时间为2 $ mu {rm s} $ 。主要研究了横向磁通密度对电弧特性和除鳞效果的影响。

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