Improvement of tribological properties of detonation carbosilicide coatings with subsequent pulsed-plasma treatment

IF 0.3 Q4 PHYSICS, MULTIDISCIPLINARY
Zhuldyz Sagdoldina, B. Rakhadilov, D. Buitkenov, L. Zhurerova, A. Kenesbekov
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引用次数: 0

Abstract

This work considers the results of research of mechanical and tribological properties of surface layer of Ti3SiC2 coatings after exposure to pulsed-plasma energy flows. Varying of technological parameters of pulsed-plasma treatment is made by changing the distance of pulse exposure. The analysis of the obtained results shows that the pulsed-plasma treatment technology makes it possible to improve the properties of Ti-SiC based coatings by strengthening the deposited compositions by modifying the structure with an increase in the number of МАХ-phases. It is established that the modification of the structural and phase state of the near-surface layers of the carbosilicide coatings leads to a change in their mechanical properties: an increase in the surface microhardness up to 1.8 times, a decrease in the dry friction coefficient by 1.5-2.0 times and an increase in wear resistance by 2.5 times. Based on the XRD analysis, it is established that the improvement of mechanical and tribological properties of Ti3SiC2 detonation coatings as a result of pulsed-plasma treatment is associated with phase transformations in the surface layer, in particular with an increase in the Ti3SiC2 phase content.
后续脉冲等离子体处理对爆轰硅化碳涂层摩擦学性能的改善
本工作考虑了Ti3SiC2涂层暴露于脉冲等离子体能量流后表面层的力学和摩擦学性能的研究结果。通过改变脉冲曝光距离,改变脉冲等离子体处理的工艺参数。对所得结果的分析表明,脉冲等离子体处理技术可以通过改变结构来增强沉积成分,从而提高Ti-SiC基涂层的性能。研究表明,碳硅化物涂层近表面层的结构和相态的改变导致其力学性能的变化:表面显微硬度提高了1.8倍,干摩擦系数降低了1.5-2.0倍,耐磨性提高了2.5倍。基于XRD分析,确定了脉冲等离子体处理导致的Ti3SiC2爆震涂层的机械和摩擦学性能的改善与表面层中的相变有关,特别是与Ti3SiC2相含量的增加有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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