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以稀土元素的摩擦学应用为出发点 ,用四球机考察了自制的新型油溶性润滑油极压抗磨剂———二烷基二硫代磷酸镧 (LaDDP)的减摩抗磨性能 ,用质谱仪模拟其摩擦分解过程 ,通过x射线光电子能谱仪和俄歇电子能谱对边界润滑状态下形成的磨斑表面膜元素组成及化学状态进行分析。提出了其摩擦化学反应机理。试验结果表明 :这种添加剂使ISOVG6 8的摩擦因素明显降低和卡咬负荷提高2 2倍 ,主要原因是在摩擦过程中发生摩擦化学反应 ,生成了由La、La2 O3 、FeS、硫酸盐和磷酸盐组成的边界润滑膜和镧渗透层 ,验证了所提出的摩擦比学机理
Taking the tribological application of rare earth elements as the starting point, the self-made novel oil-soluble lubricating oil extreme pressure anti-wear agent, LaDDP, The friction and dissociation process was simulated. The elemental composition and chemical state of the surface film formed by the boundary lubrication were analyzed by x-ray photoelectron spectroscopy and Auger electron spectroscopy. The friction chemical reaction mechanism is proposed. The results show that the friction coefficient of ISOVG6 8 and the card bite load are increased by 2 2 times. The main reason is that tribochemical reaction occurs during the friction process, and the reaction of La, La 2 O 3, FeS, sulfate and phosphoric acid Salt boundary lubrication films and lanthanum permeation layers verify the proposed tribological mechanism