温度对工具钢上铝合金转移层的影响以及 CrN 涂层的影响

M. Kalin, J. Jerina, Sandan Kumar Sharma, Janez Kovač
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摘要

在揭示 CrN 涂层钢-合金系统摩擦学相互作用的复杂性时,必须探讨温度的关键作用。本研究调查了在单向单程滑动磨损条件下,CrN 涂层热作工具钢的摩擦学潜力。滑动磨损试验在不同温度下进行(即 20 °C、100 °C、200 °C、300 °C、400 °C 和 500 °C),滑动距离从 2 mm 到 68 mm 不等,以探索温度对铝合金(EN AW-6060)转移的开始和演变的影响。从铝合金的接触面积和转移到 CrN 表面的体积两个方面研究了这种影响。此外,还监测了磨损痕迹的结构和等效摩擦系数与滑动距离和温度的关系。结果表明,CrN 涂层和铝合金的摩擦学潜力与温度有很大关系,但与滑动距离的关系不大。在 200 °C以下滑动时,转移取决于涂层的表面粗糙度,而在更高温度(即 300 °C以上)滑动时,强附着力导致了铝合金的转移。在 500 ℃ 时,CrN 涂层形成了一种自我保护的 Cr2O3 氧化物,与 200 ℃-300 ℃ 时相比,减少了合金与 CrN 的粘附转移。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effect of temperature on the transfer layer of an aluminium alloy on tool steel and the effect of CrN coating
It is essential to explore temperature's crucial role while unveiling the intricacies of tribological interplay in CrN-coated steel-alloy systems. In the present study, tribological potential of CrN-coated hot-work tool steel was investigated under unidirectional single-pass sliding wear conditions. The sliding wear tests were performed at different temperatures (i.e., 20 °C, 100 °C, 200 °C, 300 °C, 400 °C and 500 °C) for the different sliding distances between 2 mm and 68 mm to explore the effect of temperature on the initiation and evolution of the transfer of an aluminium alloy (EN AW-6060). The effect was studied in terms of the contact area of the aluminium alloy and the volume transferred to the surface of the CrN. In addition, the structure of the wear trace and the equivalent friction coefficient were monitored with respect to the sliding distance and the temperature. The results show the strong dependency of the tribological potential of the CrN coating and the aluminium alloy on the temperature but show insignificant dependency on the sliding distance. When sliding up to 200 °C, the transfer was found to be dependent on the surface roughness of the coating, while strong adhesion led to the aluminium alloy's transfer during sliding at higher temperatures, that is, above 300 °C. At 500 °C, the CrN coating formed a self-protective Cr2O3 oxide that reduced the adhesive transfer of the alloy to the CrN compared to that at 200 °C–300 °C.
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