Use of steel gas thermal coatings to increase wear resistance of parts

O. Lopata, I. Smirnov, N. Vihilianska, V. Lopata, Victor Kulyshskyi
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Abstract

The process of gas-thermal spraying of coatings made of wire materials has been studied by determining rational regimes to increase the wear resistance of surfaces of vehicle parts. It is determined that the main factors influencing the wear resistance of steel gas-thermal coatings are the cooling rate of steel and the concentration of alloying elements. It is shown that in order to obtain wear-resistant sprayed coatings from alloyed structural steels it is necessary to achieve certain conditions of coating formation, namely: heating and spraying temperature of wire, cooling rate of molten particles, and their oxidation state. One of the most probable reasons for increasing wear resistance is the saturation of the melt droplets with alloying elements (primarily chromium) and impurities of introduction (carbon, nitrogen) in the process of melting the wire in the flame. The relatively low flight speed of molten steel particles and the high concentration of propane-containing carbon in the combustion products contribute to the deep saturation of the melt droplets with carbon. It is likely that these circumstances are associated with the process of increasing the wear resistance of coatings obtained by gas-flame and electric arc spraying. An additional factor that increases the wear resistance of the sprayed coating may be the saturation of the melt droplets with carbon in the process of melting and spraying using propane flames. Studies have suggested that both for the method of gas-flame spraying and for the method of electric arc spraying, there are modes and steels for spraying, which can increase the wear resistance of the coating. On the basis of the conducted researches technologies of strengthening and restoration of details of vehicles by drawing wear-proof coverings are offered.
采用钢制气热涂层,提高零件的耐磨性
通过确定提高汽车零部件表面耐磨性的合理工艺条件,对线材涂层气热喷涂工艺进行了研究。确定了影响钢气热涂层耐磨性的主要因素是钢的冷却速度和合金元素的浓度。结果表明,合金结构钢要获得耐磨涂层,必须达到一定的涂层形成条件,即线材的加热和喷涂温度、熔融颗粒的冷却速度及其氧化态。增加耐磨性的最可能的原因之一是熔体液滴与合金元素(主要是铬)和引入的杂质(碳,氮)在火焰中熔化丝的过程中饱和。钢液颗粒飞行速度较低,燃烧产物中含丙烷碳浓度较高,导致熔滴与碳深度饱和。这些情况很可能与通过气焰和电弧喷涂提高涂层耐磨性的过程有关。增加喷涂涂层耐磨性的另一个因素可能是在使用丙烷火焰熔化和喷涂过程中熔融液滴与碳的饱和。研究表明,无论是气焰喷涂法还是电弧喷涂法,都有适合喷涂的模式和钢材,可以提高涂层的耐磨性。在已有研究的基础上,提出了通过绘制防磨损覆盖物来增强和修复车辆细节的技术。
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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