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首页> 外文期刊>Journal of Applied Polymer Science >The tribological behavior of micrometer and nanometer TiO2 particle-filled poly(phthalazine ether sulfone ketone) composites
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The tribological behavior of micrometer and nanometer TiO2 particle-filled poly(phthalazine ether sulfone ketone) composites

机译:微米和纳米TiO2颗粒填充的聚苯二甲醚砜酮复合材料的摩擦学行为

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Micrometer and nanometer TiO2 particle-filled poly(phthalazine ether sulfone ketone) (PPESK) composites with various filler volume fractions from 0.5 to 7.5 vol % were prepared by heating compression molding. The friction and wear behaviors of the PPESK composites were evaluated using the block-on-ring test rig by sliding PPESK-based composite blocks against a mild carbon steel ring under dry friction conditions. The wear debris and the worn surfaces of the PPESK composites filled with micrometer and nanometer TiO2 particles were investigated by using a scanning electron microscope (SEM), while the structures of PPESK composites and wear debris were analyzed with IR spectra. Experimental results show that antiwear properties of the PPESK composites can be improved greatly by filling nanometer TiO2 particles, and the friction coefficient decreases when the filler volume fraction is below 2.5%, but when the filler volume fraction is above 2.5% the friction coefficient increases gradually with increasing filler volume fraction. In the case of micrometer TiO2 filler, wear rates increase with increasing filler volume fractions under iden-tical test conditions, and the friction coefficients are less sensitive to the filler volume fraction. It was also found that the wear mechanism of micrometer TiO2 particle-filled PPESK is mainly severe adhesion and abrasive wear, while that of nanometer TiO2 particle-filled PPESK is mainly slight abrasive wear. In the former case, there are no transfer film formed on the surface of the counterpart steel, and wear debris are in the form of long and large ribbon. While in the latter case, the wear debris was granule and their size was about 10 mum. In case of 1 vol % nanometer TiO2 particle-filled PPESK composites, the transfer film was fairly thinner and smoother, and the transfer film provided better coverage on the surface of steel ring, while that of 7.5 vol % was thicker and discrete. These account for the different friction and wear behavior of micrometer and nanometer TiO2 particle-filled PPESK composite. (C) 2004 Wiley Periodicals, Inc. [References: 13]
机译:通过加热压缩成型制备具有0.5〜7.5vol%的各种填充剂体积分数的微米级和纳米级TiO 2颗粒填充的聚(酞嗪醚砜酮)(PPESK)复合材料。通过在干摩擦条件下将PPESK基复合材料块滑动到低碳钢环上,使用环上块试验台评估PPESK复合材料的摩擦和磨损行为。用扫描电子显微镜(SEM)研究了微米级和纳米TiO2填充的PPESK复合材料的磨损碎片和磨损表面,并用红外光谱分析了PPESK复合材料的结构和磨损碎片。实验结果表明,填充纳米TiO2颗粒可以大大提高PPESK复合材料的耐磨性,当填料体积分数小于2.5%时,摩擦系数减小;当填料体积分数大于2.5%时,摩擦系数逐渐增大。随着填料体积分数的增加。对于微米级TiO2填料,在相同的测试条件下,磨损率随填料体积分数的增加而增加,而摩擦系数对填料体积分数的敏感性较小。还发现,微米级TiO2颗粒填充PPESK的磨损机理主要是严重的附着力和磨粒磨损,而纳米级TiO2颗粒填充PPESK的磨损机理主要是轻微的磨粒磨损。在前一种情况下,在配对钢的表面上没有形成转移膜,并且磨损碎片呈长而大的带状。在后一种情况下,磨损碎片是颗粒状,其大小约为10毫米。在1vol%的纳米TiO2颗粒填充的PPESK复合材料的情况下,转移膜相当薄且光滑,转移膜在钢环表面上具有更好的覆盖率,而7.5vol%的转移膜则更厚且离散。这些解释了微米级和纳米级TiO2颗粒填充的PPESK复合材料的不同摩擦和磨损行为。 (C)2004 Wiley Periodicals,Inc. [参考:13]

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