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Surface Modification of PTFE by Plasma Treatment

机译:等离子体处理的PTFE表面改性

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摘要

The treatment of polymer surfaces by plasma is a well established method to improve their surface properties. In this paper, the surface structure and adhesive bonding properties of PTFE treated by three types of plasma are reported. The results indicate that different plasma gases have different effects on the surface structure. Argon plasma treatment produced a highly crosslinked honeycomb-like structure, while air and oxygen plasma treatment resulted in a surface displaying high aspect ratio protrusions. All experimental plasma treatments caused a marked improvement in overlap shear strength, with the highest shear strength achieved after oxygen plasma treatment. It was found that the overlap shear strength was also influenced by plasma power and plasma treatment time although over-plasma treatment caused damage to the surface layer leading to decreased shear strength. The change in surface properties and roughened microstructure together contributed to the improvement in shear strength.
机译:用等离子体处理聚合物表面是改善其表面性能的公认方法。本文报道了三种等离子体处理后的PTFE的表面结构和粘接性能。结果表明,不同的等离子体气体对表面结构的影响不同。氩等离子体处理产生高度交联的蜂窝状结构,而空气和氧气等离子体处理导致表面显示出高纵横比的突起。所有的实验等离子体处理均导致重叠剪切强度的显着提高,氧等离子体处理后达到了最高的剪切强度。已经发现,重叠的剪切强度也受等离子功率和等离子处理时间的影响,尽管过等离子处理引起对表面层的破坏,导致剪切强度降低。表面性能的变化和粗糙的微观结构共同促进了剪切强度的提高。

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