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首页> 外文期刊>Advances in Polymer Technology >Effect of Physical and Chemical Plasma Etching on Surface Wettability of Carbon Fiber-Reinforced Polymer Composites for Bone Plate Applications
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Effect of Physical and Chemical Plasma Etching on Surface Wettability of Carbon Fiber-Reinforced Polymer Composites for Bone Plate Applications

机译:物理和化学等离子体刻蚀对骨板应用碳纤维增强聚合物复合材料表面润湿性的影响

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摘要

Carbon fiber reinforced polymer (CFRP) composite bone plates are widely used nowadays. Implants with a hydrophobic surface are highly recommended, and plasma treatment can be used to reduce surface wettability to improve biological functioning. This study reports the physical and chemical plasma etching of CFRP for controlled surface wettability. The plasma treatment was performed with a linear ion beam source, and optimized physical and chemical etching conditions were evaluated. The untreated specimens have a contact angle of 52(o). It was observed that the maximum contact angle of 68(o) can be obtained by physical plasma etching whereas the minimum angle of 19(o) can be achieved by chemical plasma etching, which is an important task of this study to enhance adhesion of a thin diamond-like carbon film on CFRP on a coated composite bone plate.
机译:碳纤维增强聚合物(CFRP)复合骨板如今已被广泛使用。强烈建议使用具有疏水性表面的植入物,并且可以使用等离子体处理来降低表面润湿性,从而改善生物学功能。这项研究报告了可控表面润湿性的CFRP物理和化学等离子体蚀刻。用线性离子束源进行等离子体处理,并评估了最佳的物理和化学蚀刻条件。未经处理的样品的接触角为52°。观察到,通过物理等离子刻蚀可以获得最大的接触角为68(o),而通过化学等离子刻蚀可以得到的最小接触角为19(o),这是增强涂层附着力的一项重要任务。复合涂层骨板上CFRP上的类金刚石薄碳薄膜。

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