Wang Jiu, He Tianxi, Song Chunyu, Li Xiaoqing, Chen Boshui
Department of Chemical Engineering, Chongqing Chemical Industry Vocational College, Chongqing 401228, P. R. China.
ACS Omega. 2019 Sep 18;4(14):16166-16170. doi: 10.1021/acsomega.9b02353. eCollection 2019 Oct 1.
In the present work, the oxidation stability of blends of methyl oleate, zinc dialkyldithiophosphate (ZDDP), and a high viscosity index mineral base oil was determined by the method of a rotating pressure vessel, while the antiwear abilities were evaluated on a four-ball friction tester. Thereafter, the thermal decomposition characteristics and oxidation products of the oxidized blends were analyzed by a thermogravimetric analyzer and a gas chromatograph coupled to a mass spectrometer, respectively. The results showed that the antioxidation ability of ZDDP was substantially improved by methyl oleate, while the antiwear capacity is markedly impaired by methyl oleate. Furthermore, the thermal decomposition characteristics and oxidation products of ZDDP-containing oils were altered by methyl oleate. The present study evidently convinced that chemical interactions between ZDDP and methyl oleate had occurred, which were attributed to the increased antioxidation ability and decreased antiwear capacity of ZDDP in oils contaminated with methyl oleate.
在本研究中,采用旋转压力容器法测定了油酸甲酯、二烷基二硫代磷酸锌(ZDDP)和高粘度指数矿物基础油混合物的氧化稳定性,同时在四球摩擦试验机上评估了其抗磨性能。此后,分别用热重分析仪和气相色谱-质谱联用仪分析了氧化混合物的热分解特性和氧化产物。结果表明,油酸甲酯显著提高了ZDDP的抗氧化能力,而油酸甲酯明显削弱了其抗磨能力。此外,油酸甲酯改变了含ZDDP油的热分解特性和氧化产物。本研究明确证实,ZDDP与油酸甲酯之间发生了化学相互作用,这归因于在被油酸甲酯污染的油中ZDDP的抗氧化能力增强和抗磨能力降低。