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首页> 外文期刊>Tribology International >Ice friction of ultra-high molecular weight polyethylene: The effects of fluorine additives and plasma (PECVD) treatment
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Ice friction of ultra-high molecular weight polyethylene: The effects of fluorine additives and plasma (PECVD) treatment

机译:超高分子量聚乙烯的冰摩擦:氟添加剂和等离子体(PECVD)处理的效果

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摘要

Various new polymer additives were blended into ultra-high molecular weight polyethylene (UHMWPE) in order to examine their effects on ice friction. A certain type of a new liquid perfluoropolyalkylether was proven to improve the surface and sliding characteristics of UHMWPE on ice. It was shown for the first time that an optimum amount of additive (about 2.5 wt%) reduces the ice friction coefficient significantly at temperatures greater than -7℃. Moreover, plasma chemical vapour deposition of UHMWPE under a fluorinated gas was also utilized to examine its effect on its surface and sliding characteristics. This treatment increased the static water contact angle, from 85° to 138° and decreased the friction coefficient to about 25% at the highest sliding velocity of 1.96 m/s.
机译:将各种新型聚合物添加剂掺入超高分子量聚乙烯(UHMWPE)中,以检查其对冰摩擦的影响。已证明某种类型的新型液态全氟聚烷基醚可改善UHMWPE在冰上的表面和滑动特性。首次表明,最佳添加剂(约2.5 wt%)在高于-7℃的温度下会显着降低冰摩擦系数。此外,还利用UHMWPE在氟化气体下的等离子体化学气相沉积法来研究其对其表面和滑动特性的影响。这种处理将静态水接触角从85°增加到138°,并且在最高滑动速度1.96 m / s时将摩擦系数降低到约25%。

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