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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Tribological performance of graphite-filled polyimide and PTFE composites in oil-lubricated three-body abrasive conditions
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Tribological performance of graphite-filled polyimide and PTFE composites in oil-lubricated three-body abrasive conditions

机译:石墨填充聚酰亚胺的摩擦学性能和油润滑三体磨料条件下的PTFE复合材料

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摘要

Graphite filled polytetrafluoroethylene (PTFE) and polyimide (PI) composites were tested against tool steel under nominal contact pressure of 6.32 MPa and sliding speed of 1.91 m/s in clean ISO 46 lubricant, and also contaminated lubricant with 4200 ppm of silica sand. Pin-on-disk WA results show higher friction and wear of the tribopair in the contaminated condition. Micromechanical properties of the bulk polymers were measured using nanoindentation technique, and softening of the material at elevated temperatures was measured. SEM analysis of the contacting surfaces before and after testing showed abrasive wear as the dominant wear mechanism, and microcutting was a less pronounced wear mechanism in the case of PI composite in contaminated WA condition. EDS analysis showed that there was no film transfer from polymers to the countersurface, however it indicated higher oxidation on the wear track of the steel disk slid against PI. Particle embedding in the polymer was shown by EDS and is the reason for scratches seen on the steel disk wear tracks. Both polymers are found to be suitable materials from a tribological standpoint for bearing pad applications.
机译:将石墨填充的聚四氟乙烯(PTFE)和聚酰亚胺(PI)复合材料在标称接触压力下进行6.32MPa的标称接触压力,并在清洁的ISO 46润滑剂中的1.91米/秒的滑动速度下,还有4200ppm的硅砂污染润滑剂。磁盘瓦瓦型结果显示污染条件下摩托车的摩擦力和磨损更高。使用纳米趋势技术测量本体聚合物的微机械性能,测量升高温度下的材料软化。在测试之前和之后的接触表面的SEM分析显示出磨料磨损作为主导磨损机构,并且微包在受污染的WA条件下PI复合材料的情况下是一种较不明显的磨损机理。 EDS分析表明,没有从聚合物到截面上的薄膜转移,但是它表明对PI的钢盘滑动轨道上的更高氧化。在聚合物中嵌入聚合物中的颗粒是EDS的,是钢盘磨损轨道上看到的划痕的原因。从摩擦垫应用中发现两种聚合物都是合适的材料。

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