低碳钢表面碳化铬和硼化铬层的显微组织和力学特性

R. Boubaaya, O. Allaoui, Y. Benarioua, M. Djendel
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引用次数: 0

摘要

基于碳化铬和硼化铬的硬质涂层广泛应用于要求机械性能的应用,即硬度高,摩擦系数低,耐腐蚀性好。在这项工作中,我们通过一些特殊的处理,在低碳钢表面制备了碳化铬和硼化铬层。对于碳化铬,在固体介质中进行胶结,然后在表面电镀铬,最后在500至1100℃的温度下进行1小时的退火处理。对于含铬硼化物,在900℃的固体介质中渗氮处理4小时,然后在钢表面电镀铬,最后在950℃的温度下进行1和2小时的退火处理。结果表明,在第一种情况下,经退火处理的表面上,凝固层与沉积在表面的铬结合形成碳化铬;同样,对于第二种情况,硼扩散和铬沉积导致处理表面上的铬硼化物。所得的碳化铬和硼化铬的特性与其他工艺所得的碳化铬和硼化铬非常相似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microstructural and Mechanical Characterizations of Chromium Carbides and Chromium Borides Layers Over Low-Carbon Steel Surface
Hard coatings based on chromium carbides and chromium borides are widely used in applications that require mechanical performance, i.e., high hardness and low friction coefficient and good corrosion resistance. In this work, we made layers of chromium carbides and chromium borides on the surface of low carbon steel through some specific treatments. For chromium carbides, the cementation in a solid medium followed by electroplating of chromium on the surface and finally the application of annealing treatment at temperatures between 500 and 1100 °C for 1 hour. For chromium borides, the boriding treatment in solid medium at 900 °C for 4 hours followed by chromium electroplating on the steel surface and finally the application of annealing treatment at temperatures at 950 °C for 1 and 2 hours. The obtained results show that, in the first case, the cemented layer and the chromium deposited on the surface combine to form chromium carbides on the treated surface after annealing. Similarly, for the second case, boron diffusion and chromium deposition lead to chromium borides on the treated surface. The characteristics of the chromium carbides and chromium borides obtained are very similar to those of chromium carbides and chromium borides obtained by other processes.
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