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Wear resistance of TiAl intermetallics by plasma alloying and plasma carburization

机译:等离子合金化和等离子渗碳处理TiAl金属间化合物的耐磨性

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The duplex treatment of plasma carburization on plasma alloyed TiAl with Nb was carried out in order to improve the tribological properties of TiAl. Dry sliding wear behavior of the duplex-treated TiAl was investigated by using pin-on-disk wear testing method with the counterface of a high carbon steel compared with those of untreated and plasma-carburized TiAl. The microstructure of the existed phases in the surface layer and the distribution of the carbon element in the surface layer were characterized using optical microscopy, scanning electron microscopy, glow discharge spectrum and X-ray diffraction. The results showed that the duplex-treated TiAl is effective in enhancing the wear resistance of TiAl due to a low coefficient of friction and a low wear volume. The existence of NbC and Nb2C carbides and excessive carbon are the main contribution to the tribological performance of TiAl. At the same time, an increased thickness in the hardened layer by NbC and Nb2C carbides and carbon element is also effective in improving the tribological performance of TiAl.
机译:为了改善TiAl的摩擦学性能,对含Nb的等离子合金化TiAl进行了等离子渗碳的双相处理。采用针盘式磨损测试方法研究了经双相处理的TiAl的干滑动磨损行为,与未处理和等离子渗碳的TiAl相比,高碳钢的对立面进行了测试。利用光学显微镜,扫描电子显微镜,辉光放电光谱和X射线衍射对表层中存在的相的微观结构和表层中碳元素的分布进行了表征。结果表明,由于低摩擦系数和低磨损量,经双重处理的TiAl有效地增强了TiAl的耐磨性。 NbC和Nb2C碳化物的存在以及过量的碳是TiAl摩擦学性能的主要贡献。同时,NbC,Nb2C碳化物和碳元素增加了硬化层的厚度,对改善TiAl的摩擦学性能也有效。

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