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Effect of Atmospheric Cold Plasma Treatment on the Adhesion and Tribological Properties of Polyamide 66 and Poly(Tetrafluoroethylene)

机译:大气冷等离子体处理对聚酰胺66和聚四氟乙烯的附着力和摩擦学性能的影响

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The surfaces of two engineering polymers including polyamide 66 (PA66) and polytetrafluoroethylene (PTFE) were treated by diffuse coplanar surface barrier discharges in atmospheric air. We found that plasma treatment improved the adhesion of PA66 for either polymer/polymer or polymer/steel joints, however, it was selective for the investigated adhesive agents. For PTFE the adhesion was unaltered for plasma treatment regardless the type of used adhesive. Tribological properties were slightly improved for PA66, too. Both the friction coefficient and wear decreased. Significant changes, again, could not be detected for PTFE. The occurred variation in the adhesion and tribology was discussed on the basis of the occurred changes in surface chemistry, wettability and topography of the polymer surface.
机译:通过在大气中扩散共面表面势垒放电,对包括聚酰胺66(PA66)和聚四氟乙烯(PTFE)在内的两种工程聚合物的表面进行了处理。我们发现,等离子体处理可改善PA66对聚合物/聚合物或聚合物/钢接头的粘合性,但是,对于研究的粘合剂而言,它具有选择性。对于PTFE,无论使用哪种粘合剂,粘合力都不会改变。 PA66的摩擦学性能也略有改善。摩擦系数和磨损均降低。同样,PTFE仍未检测到重大变化。根据表面化学,润湿性和聚合物表面形貌的变化,讨论了粘附力和摩擦学的变化。

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