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Tribological behavior of PTFE nanocomposite films reinforced with carbon nanoparticles

机译:碳纳米粒子增强PTFE纳米复合薄膜的摩擦学行为

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摘要

Carbon-based nanoparticles synthesized by heat treatment of nanodiamond in the temperature range of 1000-1900℃ were added to PTFE film to investigate the structural effect of the carbon particles on the tribological properties of PTFE composite film. Carbon-based nanoparticles were prepared by milling with micron sized beads in chemically treated water before their addition to PTFE film. The wear and frictional properties of PTFE nanocomposite film were measured by the ball on plate type wear test. The wear resistance of PTFE film was found to be enhanced by the addition of 2 wt% of carbon nanoparticles. The wear coefficient of PTFE film was decreased from 16.2 to 3.5 x 10~(-6) mm~3/N m by the addition of carbon-based nanoparticles heat-treated at 1000℃. Increasing the heating temperature of the nanodiamonds caused the extent of aggregation and particle size to increase. The wear resistance of PTFE nanocomposite film was enhanced by the addition of nanodiamonds heat-treated at 1000℃, but decreased when the heat treatment temperature of carbon nanoparticles was further increased. Tribological behavior of PTFE nanocomposite films depending on the types of carbon nanoparticles were explained based on the structural, physical and chemical modification of carbon nanoparticles.
机译:将纳米金刚石在1000〜1900℃的温度范围内热处理合成的碳基纳米颗粒加入到PTFE薄膜中,研究了碳颗粒对PTFE复合薄膜摩擦学性能的影响。碳基纳米颗粒是通过在化学处理过的水中与微米大小的珠粒研磨而制备的,然后再将其添加到PTFE膜中。 PTFE纳米复合膜的磨损和摩擦性能是通过板球式磨损试验测量的。发现通过添加2wt%的碳纳米颗粒可以增强PTFE膜的耐磨性。通过添加在1000℃热处理的碳基纳米颗粒,PTFE薄膜的磨损系数从16.2降至3.5 x 10〜(-6)mm〜3 / N m。纳米金刚石的加热温度的升高导致聚集程度和粒度增加。通过添加在1000℃热处理的纳米金刚石,可以提高PTFE纳米复合膜的耐磨性,但随着碳纳米颗粒热处理温度的进一步升高,其耐磨性降低。基于碳纳米颗粒的结构,物理和化学改性,解释了取决于碳纳米颗粒类型的PTFE纳米复合薄膜的摩擦学行为。

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