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Tribological Characteristics of Calophyllum inophyllum-Based TMP (Trimethylolpropane) Ester as Energy-Saving and Biodegradable Lubricant

机译:节能的可生物降解的基于茶树素的TMP(三羟甲基丙烷)酯的摩擦学特性

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The purpose of this research is an experimental study of Calophyllum inophyllum (CI)-based trymethylolpropane (TMP) ester as an energy-saving and biodegradable lubricant and compare it with commercial lubricant and paraffin mineral oil using a four-ball tribometer. CI-based TMP ester is a renewable lubricant that is nonedible, biodegradable, and nontoxic and has net zero greenhouse gases. The TMP ester was produced from CI oil, which has high lubricity properties such as higher density, higher viscosity at both 40 degrees C and 100 degrees C and higher viscosity index (VI). Experiments were conducted during 3,600s with constant load of 40kg and constant sliding speed of 1,200rpm at temperatures of 50, 60, 70, 80, 90, and 100 degrees C for all three types of lubricant. The results show that CI TMP ester had the lowest coefficient of friction (COF) as well as lower consumption of energy at all test temperatures, but the worn surface roughness average (R-a) and wear scar diameter were higher compared to paraffin mineral oil and commercial lubricant. Before 80 degrees C, CI TMP ester actually has a higher flash temperature parameter (FTP) than paraffin mineral oil and as the temperature increases, the FTP of TMP ester decreases. The worn surfaces of the stationary balls were analyzed by scanning electron microscopy (SEM) and results show that CI TMP ester has the highest wear compared to paraffin mineral oil and lowest wear compared to commercial lubricant. However, CI TMP ester is environmentally desired, competitive to commercial lubricant, and its use should be encouraged.
机译:这项研究的目的是对基于Calophyllum inophyllum(CI)的羟甲基丙烷(TMP)酯作为节能且可生物降解的润滑剂进行实验研究,并使用四球摩擦计将其与商业润滑剂和石蜡矿物油进行比较。基于CI的TMP酯是一种不可再生,不可食用,可生物降解和无毒的润滑剂,其温室气体净含量为零。 TMP酯由CI油制得,CI油具有较高的润滑性,例如较高的密度,在40℃和100℃时的较高粘度和较高的粘度指数(VI)。对于这三种类型的润滑剂,分别在3600 s的温度,50、60、70、80、90和100摄氏度的温度下,以3600 s的恒定负载和1200rpm的恒定滑动速度进行了3600 s的实验。结果表明,CI TMP酯在所有测试温度下的摩擦系数(COF)最低,并且能耗较低,但与石蜡矿物油和市售石蜡相比,其磨损平均表面粗糙度(Ra)和磨损痕迹直径更高润滑剂。在80摄氏度之前,CI TMP酯的闪蒸温度参数(FTP)实际上比石蜡矿物油更高,并且随着温度的升高,TMP酯的FTP降低。通过扫描电子显微镜(SEM)分析了固定球的磨损表面,结果表明,与石蜡矿物油相比,CI TMP酯的磨损最高,与市售润滑剂相比,磨损最低。但是,CI TMP酯是环保的,可与商业润滑剂竞争,因此应鼓励使用它。

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