首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >The effect of palm oil trimethylolpropane ester on extreme pressure lubrication
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The effect of palm oil trimethylolpropane ester on extreme pressure lubrication

机译:棕榈油三羟甲基丙烷酯对极压润滑的影响

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This paper presents the experimental results for the extreme pressure characteristics of a palm oil-based trimethylol-propane (TMP) ester blended with paraffin oil obtained using a four-ball machine. The load and speed of the sample were set between 20-120 kg and 1770 rpm, respectively. TMP ester produced from palm oil is biodegradable and has high lubricity properties, such as a higher flash point temperature and viscosity index. It has an affinity to surface asperities, which reduces wear between sliding contacts. Based on the calculation, it was found that majority of the oils in boundary regime and mixed elastrohydrodynamic regime. For the same contact load, the film thickness with TMP 100 is 70% thicker than that with paraffin oil. In addition to that, test results revealed that (1) for all the used lubrication oils, TMP ester blended with paraffin provide better surface protection compared to paraffin oil. (2) Even though, TMP 100 has the highest film thickness, at low load the wear is higher. Surface morphology test was conducted using scanning electron microscope and surface roughness tester. It was found that severe corrosive wear occurred at TMP 100 which is probably due to the high oxygen content compared to other lubricant.
机译:本文介绍了使用四球机获得的棕榈油基三羟甲基丙烷(TMP)酯与石蜡油共混物的极压特性的实验结果。样品的负载和速度分别设置在20-120 kg和1770 rpm之间。由棕榈油生产的TMP酯具有生物可降解性,并具有较高的润滑性,例如较高的闪点温度和粘度指数。它对表面粗糙具有亲和力,可减少滑动触点之间的磨损。根据计算,发现大多数油处于边界状态和混合的弹性流体动力状态。对于相同的接触负载,TMP 100的膜厚比石蜡油的膜厚高70%。除此之外,测试结果表明(1)对于所有用过的润滑油,与石蜡油相比,TMP酯与石蜡混合可提供更好的表面保护。 (2)即使TMP 100具有最高的膜厚,在低负荷下磨损也更高。使用扫描电子显微镜和表面粗糙度测试仪进行表面形态测试。发现在TMP 100处发生了严重的腐蚀磨损,这可能是由于与其他润滑剂相比氧含量较高。

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