Mechanical and tribological properties of solid lubricant composites based on thermoplastic polyimide loaded with PTFE and surface modified carbon fibers

S. Panin, Lo Jiangkun, D. Buslovich, V. Aleksenko, L. Kornienko
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Abstract

The mechanical and tribological properties of thermoplastic polyimide based composites loaded with polytetrafl uoroethylene and milled carbon fibers, annealed and functionalized with a KH550 silane-coupling agent were studied. It has been revealed that, compared with neat PI, the composite with annealed carbon fibers and PTFE particles possessed the highest wear resistance. Reinforcing carbon fibers of hundreds micron size increase the elastic modulus by 2 times; while all other physical and mechanical properties remain at the level of unfilled PI.
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基于热塑性聚酰亚胺负载PTFE和表面改性碳纤维的固体润滑剂复合材料的机械和摩擦学性能
研究了热塑性聚酰亚胺基复合材料的力学性能和摩擦学性能,该复合材料以聚四氟乙烯和铣削碳纤维为负载,经KH550硅烷偶联剂退火和功能化。结果表明,与纯PI相比,含退火碳纤维和PTFE颗粒的复合材料具有最高的耐磨性。几百微米尺寸的增强碳纤维,弹性模量提高2倍;而所有其他物理和机械性能保持在未填充PI的水平。
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