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High-voltage arc erosion behavior and mechanism of Ti3AlC2 under different ambient atmospheres

机译:不同环境环境下Ti3AlC2的高压电弧侵蚀行为及机制

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摘要

The arc erosion behavior of Ti3AlC2 in oxygen, air, nitrogen, carbon dioxide, argon, and sulfur hexafluoride atmospheres at 9 kV voltage was studied. The breakdown strength increased in the order of oxygen, air, carbon dioxide, nitrogen, argon, and sulfur hexafluoride, whereas the arc energy decreased. Cracks, pits, and bulges on the eroded surface were investigated using scanning electron microscopy and three-dimensional (3D) laser confocal scanning microscopy. Raman spectroscopy and X-ray photoelectron spectroscopy (XPS) were used to determine the composition of the eroded surface. The arc energy and electromagnetic force lead to the formation of erosion characteristics. The mechanism of erosion under the different atmospheres is discussed systematically, and is called the "decomposition-oxidation" process in oxygen, air, and carbon dioxide and the "decompositionrereaction" process in nitrogen and sulfur hexafluoride. This study provides a reference for the application of MAX phase materials in high-voltage electrical appliances.
机译:研究了Ti3AlC2在氧气、空气、氮气、二氧化碳、氩气和六氟化硫气氛中9kV电压下的电弧侵蚀行为。击穿强度按氧、空气、二氧化碳、氮、氩和六氟化硫的顺序增加,而电弧能量则下降。使用扫描电子显微镜和三维(3D)激光共焦扫描显微镜对腐蚀表面上的裂纹、凹坑和凸起进行了研究。利用拉曼光谱和X射线光电子能谱(XPS)测定了腐蚀表面的成分。电弧能量和电磁力导致腐蚀特性的形成。系统地讨论了不同气氛下的侵蚀机理,称为氧气、空气和二氧化碳中的“分解-氧化”过程,以及氮和六氟化硫中的“分解-反应”过程。本研究为最大相材料在高压电器中的应用提供了参考。

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