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Tribological performance of organic molybdenum in the presence of organic friction modifier

机译:有机摩擦改性剂存在的有机钼的摩擦学性能

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The tribological performance of organic molybdenum in the present of organic friction modifier was investigated in this study. Three types of organic friction modifiers were selected, which are Glycerol monooleate, Pentaerythritol and N , N -Dimethylhexadecylamine. The organic molybdenum are MoDTC, MoDDP and molybdenum amide. Friction coefficient and wear were studied in block-on-ring test rig with steel test specimens. Experimental results indicate the Pentaerythritol shows synergistic effect with MoDTC in wide range temperature, while increased the friction coefficient of molybdenum amide in high temperature. N , N -Dimethylhexadecylamine shows synergistic effect with molybdenum amide, while hindered the friction reduction performance of MoDTC in low temperature. The presence of Glycerol monooleate reduced friction coefficient of MoDTC in low temperature, while increased the friction coefficient of molybdenum amide in most situations. All the tested organic friction modifiers improved the friction reduction performance of MoDDP. Most of the tested organic friction modifiers reduced the wear of organic molybdenum. The PT shows the best anti-wear performance with MoDTC. The tribo-chemical products in test specimens lubricated with different lubricant formulas indicate that the presences of Pentaerythritol promotes the production of MoS 2 in MoDTC. N , N -Dimethylhexadecylamine promotes the production of MoS 2 in molybdenum amide. The side products of MoO 1.6 S 1.6 and Cr/MoS 2 of MoDDP in high temperature lead to high friction coefficient.
机译:本研究研究了本研究中有机摩擦改性剂中有机钼的摩擦学性能。选择三种有机摩擦改性剂,其是甘油单烯醇,季戊四醇和N,N-二甲基己二胺。有机钼是MODTC,MODDP和钼酰胺。用钢试样在嵌入式试验台中进行摩擦系数和磨损。实验结果表明,季戊四醇在宽范围温度下与MODTC的协同作用,同时在高温下增加了钼酰胺的摩擦系数。 N,N-二甲基己二胺显示与钼酰胺的协同作用,而在低温下阻碍MODTC的摩擦降低性能。甘油单烯烃的存在在低温下降低MODTC的摩擦系数,同时在大多数情况下增加钼酰胺的摩擦系数。所有测试的有机摩擦改性剂改善了ModDP的摩擦降低性能。大多数测试的有机摩擦改性剂降低了有机钼的磨损。 PT显示了MODTC的最佳抗磨损性能。用不同润滑剂润滑的试样中的摩擦化学产品表明季戊四醇的局部促进MODTC中的MOS 2的产生。 N,N-dimethylhexadeCylamine促进MOS 2在钼酰胺中的产生。 MOO 1.6 S 1.6和MODDP的CR / MO 2的侧面产品在高温下导致高摩擦系数。

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