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Perfluoroalkoxy (PFA)-α-Alumina Composites: Effect of Environment on Tribological Performance

机译:全氟烷氧基(PFA)-α-氧化铝复合材料:环境对摩擦学性能的影响

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Perfluoroalkoxy polymer (PFA)-α-phase alumina (α-Al_2O_3) composites have dramatically(~10,000×) improved wear resistance compared to unfilled PFA when tested in air. In this study, unfilled PFA and PFA-α-Al_2O_3 composites were tested using a linear reciprocating tribometer in dry nitrogen (<2.5 ppm O_2 and H_2O), humidity-controlled air (15%, 30%, and 45% relative humidity), and submerged water. PFA-α-Al_2O_3 tested in dry nitrogen (N_2) and in submerged water exhibited wear rates that were two to three orders of magnitude higher than those of PFA-α-Al_2O_3 composites tested in humidity-controlled air. Infrared spectra of the worn PFA-α-Al_2O_3 surfaces tested in air exhibited peaks attributed to carboxylate salts. These peaks were severely diminished on the PFA-α-Al_2O_3 sample tested in dry N_2 and not observed for submerged water environments. The high wear rate of PFA-α-Al_2O_3 tested in dry N_2 and submerged water was attributed to the lack of carboxylate salts, which require oxygen and water form. These carboxylate salts bond to the α-Al_2O_3 filler within the PFA matrix which reinforces the polymer wear surface. Additionally, these carboxylate salts form a transfer film on the stainless steel counterface, which protects both the composite and counterface from wear and abrasion.
机译:与在空气中测试的未填充的PFA相比,全氟烷氧基聚合物(PFA)-α-相氧化铝(α-Al_2O_3)复合材料具有显着的(〜10,000×)改善的耐磨性。在该研究中,使用在干燥氮气(<2.5ppm O_2和H_2O),湿度控制的空气(15%,30%和45%相对湿度)中使用线性往复摩擦计来测试未填充的PFA和PFA-α-AL_2O_3复合材料,和淹没水。在干燥氮气(N_2)和浸没水中测试的PFA-α-AL_2O_3表现出比在湿度控制的空气中测试的PFA-α-AL_2O_3复合材料高的磨损率为2至三个数量级。在空气中测试的磨损PFA-α-Al_2O_3表面的红外光谱表现出归因于羧酸盐的峰。在干燥N_2测试的PFA-α-AL_2O_3样品上严重降低了这些峰,未观察到浸没水环境。在干燥N_2和浸没水中测试的PFA-α-AL_2O_3的高磨损率归因于缺乏羧酸盐,这需要氧气和水形式。这些羧酸盐与PFA基质内的α-Al_2O_3填料中的粘合剂加强了聚合物磨损表面。另外,这些羧酸盐在不锈钢配合面上形成转移膜,其保护复合材料和逆行磨损。

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