纳米碳化硅爆轰涂层的耐磨性研究及其双因素建模

A.H. Dovgal, L.B. Pryimak, V.V. Varijukhno
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引用次数: 0

摘要

本研究涉及到球体耐磨涂层的测试。利用反向磁通,采用爆轰沉积法在中碳钢表面沉积了SiC涂层。已经确定,只有纳米级的颗粒沉积在表面,这些颗粒以不同形状的聚集体堆积在表面。在以前的文章中,已经用电子显微镜对所得到的涂层的结构进行了深入的研究。所获得的涂层已开发用于摩擦台架上的试验,该摩擦台架模拟了内燃机主颈和杆颈之间的摩擦过程。该涂层还具有防腐性能。在一定条件下对低碳钢表面的纳米涂层进行了测试,并在电子显微镜下对其摩擦表面进行了研究,以确定其磨损机理。对磨损率和摩擦系数进行了双因素建模,绘制了三维图形并进行了分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wear Resistance Research and Its 2-factor Modeling of Nanoscaled Silicon Carbide Detonation Coatings
This research is related to the spheres of wearproof coating testing. The SiC coating has been deposited on the medium carbon steel using detonation deposition using the magnet coil flux of back direction. It has been established that only nanoscaled particles are deposited on the surface which had been accumulated in aggregates of different shape. The structure of the obtained coating has been thoroughly researched on the electronic microscope in previous publication. The obtained coating has been developed for testing on the friction bench modeling the friction process that is taking place in the couple of main and rod journals of internal combustion engines. The coating has also the corrosion protection properties. The nanoscaled coating on mild carbon steel had been tested under specified conditions and their friction surfaces had been researched on electronic microscope with the view of determination of wear mechanism. The two-factor modeling of the wear rate and friction factor has been done and three-dimensional diagrams have been plotted and analyzed.
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