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A Comparative Investigation of the Tribological Behavior of Short Fiber Reinforced Polyimide Composites Under Dry Sliding and Water-Lubricated Condition

机译:干式滑动和水润滑条件下短纤维增强聚酰亚胺复合材料摩擦学行为的比较研究

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The friction and wear behavior of high performance polyimide (PI) and its composites reinforced with short cut fibers such as carbon fiber, glass fiber and quartz fiber was comparatively evaluated under dry sliding and water- lubricated condition, aiming at selecting matching materials for the pumps of pure water power transmission. The wear mechanisms of the composites under the two different sliding conditions were also comparatively discussed, based on scanning electron microscopic examination of the worn composite and steel counterpart surfaces. As the results, the PI composites reinforced with carbon fiber have the best mechanical and tribological properties compared with glass fiber and quartz fiber. PI composites sliding against stainless steel register lower friction coefficients and wear rates under water- lubricated condition than under dry sliding though the transfer of PI and its composites was considerably hindered in this case. PI and its composites are characterized by plastic deformation, micro cracking, and spalling under both dry- and water - lubricated sliding. Such plastic deformation, micro cracking, and spalling is significantly abated under water-lubricated condition. The glass and quartz fibers were easily abraded and broken when sliding against steel in water environment, the broken fibers transferred to the mating metal surface and increase the surface roughness of mating stainless steel. This is probably the cause of the increased wear rate of glass fiber and quartz fiber PI composites in this case.
机译:高性能聚酰亚胺(PI)及其复合材料的摩擦磨损行为及其复合材料用诸如碳纤维,玻璃纤维和石英纤维如碳纤维,玻璃纤维和石英纤维的含量相对评价,旨在选择为泵的匹配材料纯净电力传递。基于磨损复合材料和钢对应器表面的扫描电子显微镜检查,还讨论了两种不同滑动条件下的复合材料的磨损机制。结果,与玻璃纤维和石英纤维相比,用碳纤维增强的PI复合材料具有最佳的机械和摩擦学特性。 PI复合材料滑动不锈钢寄存器的较低摩擦系数和水润滑条件下的磨损率,而不是在干燥滑动下,但在这种情况下显着阻碍了PI及其复合材料的转移。 PI及其复合材料的特征在于塑性变形,微裂纹和落后于干燥和水润滑滑动。这种塑性变形,微裂化和剥落在水润滑条件下显着减少。当玻璃和石英纤维在水环境中滑动钢时,玻璃和石英纤维很容易磨损并断开,破碎的纤维转移到配合金属表面并增加配合不锈钢的表面粗糙度。在这种情况下,这可能是玻璃纤维和石英纤维PI复合材料增加的原因。

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