首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Tribological investigations on tribofilm formation and retention under dry sliding conditions with increasing loads
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Tribological investigations on tribofilm formation and retention under dry sliding conditions with increasing loads

机译:用载荷的干滑动条件下对呋喃族形成和保留的摩擦学研究

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This paper presents a tribological investigation of austenitic steel 21-4N exhaust valve material, dry sliding against ductile cast iron GGG-40 seat material, at a temperature of 500°C, to study the effect of increasing loads on tribofilm formation and retention at the contact interface. The effect of these tribofilms, on the friction and wear behaviour of the tribo-pair, is highlighted. High temperature reciprocating pin-on-disc tests were performed on a tribometer at loads of 20 N to 50 N with a constant stroke of 2 mm and an oscillating frequency of 20 Hz. A distinct running-in behaviour is observed at loads up to 40 N with the coefficient of friction attaining a very low and stable level with increase in sliding time. The average Coefficient of Friction ranges between 0.12 and 0.15. Optical/Scanning Electron Microscope micrographs and Energy Dispersive Spectroscopy analysis indicate the creation of compact and durable tribofilms at loads up to 40 N. At the highest load of 50 N, the Coefficient of Friction behaviour is slightly different. With a low value at the beginning, it shows an increasing trend and reaches a peak around the 10-min mark and reduces thereafter. At this load, despite indications of higher abrasive wear, the Coefficient of Friction behaviour, Optical/Scanning Electron Microscope micrographs and Energy Dispersive Spectroscopy analysis indicate evidence of early deterioration and subsequent reformation of the tribofilms with increase in sliding time. The seat material exhibited comparatively more wear than the valve material; however, the wear coefficients lie in the mild wear regime for the tribo-pair. The results of this investigation indicate the compatibility of the tribo-pair and suggest its use in the exhaust valve/seat application.
机译:本文介绍了奥氏体钢21-4N排气阀门材料的摩擦学研究,对延性铸铁GGG-40座椅材料的干燥滑动,在500℃的温度下,研究增加载荷对呋喃木形成和保留的影响联系界面。突出了这些呋喃酚对摩擦对的摩擦和磨损行为的影响。高温往复销盘测试在20 n至50n的摩擦计上进行,恒定行程为2mm,振荡频率为20Hz。在最多40n的负载下观察到不同的连续行为,其摩擦系数达到非常低且稳定的水平,随着滑动时间的增加。平均摩擦系数在0.12和0.15之间。光/扫描电子显微镜和能量色散光谱分析表明,在最高为40 n的载荷时,在载荷上产生紧凑且耐用的呋喃酚,在50 n的最高负载下,摩擦行为系数略有不同。在开始时具有低值,它显示出增加的趋势,并且在10分钟标记周围达到峰值并随后减少。在此负载下,尽管磨蚀磨损的迹象,摩擦行为系数,光/扫描电子显微镜和能量分散光谱分析表明致使呋喃玻璃的早期恶化和随后的重整的证据,随着滑动时间的增加。座椅材料比阀门材料相对较多;然而,磨损系数位于摩擦对的温和磨损方案中。本研究结果表明摩擦对的兼容性,并建议在排气阀/座椅应用中使用。

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