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Effect of Resin Type on the Tribological Properties of a Three-Dimensional Self-Lubricating Composite Surface

机译:树脂类型对三维自润滑复合材料表面摩擦学性能的影响

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摘要

In this paper, three kinds of polymer, of epoxy resin (EP), phenolic resin (PF), and unsaturated polyester (UP), were used as fillers to prepare the laminated composite surface, and the tribological properties of a composite surface were studied under dry sliding condition. The results showed that: (i) the composites surface without MoS2 exhibited high friction coefficient and high wear rate at 25 °C, while the friction coefficients were reduced when the temperature increases to 100 °C; (ii) with the addition of MoS2, the friction coefficient of the epoxy resin composite containing MoS2 (E1) was below 0.22 under a temperature of 25–150 °C, and the friction coefficient was increased to 0.32 as temperature increased to 150 °C, while the average friction coefficient of the unsaturated polyester composite containing MoS2 (U1) was very low and below 0.20 under a temperature of 25–150 °C. Analysis of the wear scars indicated that, for the MoS2-containing composite, the transfer films of the E1 and U1 were smooth and continuous under low temperature, while the transfer film of U1 was comparatively complete than that of E1 under 150 °C. The composites with solid lubrication had excellent high-temperature self-lubricating properties, which was attributed to the synergistic effect of the laminated structure, and the thermal expansion of the polymer, and finally a transfer film was formed on the sliding path.
机译:本文以环氧树脂(EP),酚醛树脂(PF)和不饱和聚酯(UP)三种聚合物为填充剂制备层压复合材料表面,研究了复合材料表面的摩擦学性能。在干滑条件下。结果表明:(i)在25°C时无MoS2的复合材料表面表现出高摩擦系数和高磨损率,而当温度升高至100°C时,摩擦系数降低; (ii)在添加MoS2的情况下,含MoS2(E1)的环氧树脂复合材料在25–150°C的温度下的摩擦系数低于0.22,随着温度升高至150°C,摩擦系数增加至0.32 ,而在25–150°C的温度下,含MoS2(U1)的不饱和聚酯复合材料的平均摩擦系数非常低,低于0.20。对磨损痕迹的分析表明,对于含MoS2的复合材料,E1和U1的转移膜在低温下是光滑且连续的,而在150°C下,U1的转移膜比E1的转移膜相对完整。固体润滑复合材料具有优异的高温自润滑性能,这归因于层状结构的协同作用和聚合物的热膨胀,最后在滑动路径上形成了转移膜。

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