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Erosion Behavior of a Cu-Ti3AlC2 Cathode by Multi-Electric Arc

机译:多电弧腐蚀Cu-Ti3AlC2阴极的行为

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摘要

A Cu-Ti3AlC2 cathode was eroded by arc discharging at 10 kV. The cross-sectional and horizontal morphologies of the eroded surface were recorded by a field emission scanning electron microscope (FE-SEM). The energy dispersive X-ray spectroscopy (EDS) and Raman spectrometry were carried out to analyze the compositions. The color-eroded surface was obtained by a three-dimensional laser scanning confocal microscope (3D LSCM). After 100 times of arc erosion, the Cu-Ti3AlC2 melted and resolidified. An eroded layer about 10 μm thick was formed, covered with pits, protrusions, and pores. The breakdown current was kept between 37 to 43 A. Under the action of a high temperature arc, Cu-Ti3AlC2 was oxidized to CuO and TiO2, accompanying the evaporation of the Al element.
机译:Cu-Ti3AlC2阴极通过10 kV的电弧放电腐蚀。通过场发射扫描电子显微镜(FE-SEM)记录侵蚀表面的横截面和水平形态。进行了能量色散X射线光谱(EDS)和拉曼光谱分析以分析组成。通过三维激光扫描共聚焦显微镜(3D LSCM)获得被颜色侵蚀的表面。经过100次电弧腐蚀后,Cu-Ti3AlC2熔化并重新凝固。形成了约10μm厚的腐蚀层,覆盖着凹坑,突起和孔。击穿电流保持在37至43 A之间。在高温电弧的作用下,伴随着Al元素的蒸发,Cu-Ti3AlC2被氧化为CuO和TiO2。

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