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Experimental and Molecular Level Analysis of the Tribological and Oxidative Properties of Chaulmoogra Oil

机译:Chaulmoogra油的摩擦氧化特性实验分子水平分析

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This study introduces chaulmoogra oil as a base stock for lubricant formulation. The tribological properties of chaulmoogra oil are evaluated by quantitative structure-property relation (QSPR) technique using the molecular modelling package Spartan 18. The quantum chemical calculations were performed on a typical molecule of chaulmoogra oil and its constituent fatty acids. The orbital energy gap of the constituent fatty acids in chaulmoogra oil is 7.37?eV and that of chaulmoogra oil molecule is 6.8?eV, which is less than that of the lauric acid, the main constituent of coconut oil (7.78?eV). Orbital energy gap predicts a better tribological performance for chaulmoogra oil, and the four ball test result is in agreement with this prediction. Oxidative property of chaulmoogra oil is tested by isothermal thermogravimetric/differential thermal analysis (TGA/DTA) and compared with different oils. Weight gain in oxygen is only 0.02% for chaulmoogra oil and showed better oxidative stability among all other tested oils.
机译:本研究介绍了Chaulmoogra油作为润滑剂配方的基础库存。用分子建模包斯巴达18的定量结构 - 性质关系(QSPR)技术评估了曲线摩根油的摩擦学特性。对QuauloOgra油及其组成脂肪酸的典型分子进行量子化学计算。 Chaulmoogra油中的组成脂肪酸的轨道能量差距为7.37°Δev,Chaulmoogra油分子的含量为6.8°Δev,椰子油的主要成分小于月桂酸(7.78'ev)。轨道能量差距预测了模糊物种油的更好的摩擦学性能,四个球测试结果与这种预测一致。 Chaulmoogra油的氧化性能通过等温热重/差分热分析(TGA / DTA)进行测试,并与不同的油进行比较。 Chaulmoogra油的氧体重增加仅为0.02%,并且在所有其他测试的油中显示出更好的氧化稳定性。

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