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首页> 外文期刊>Journal of Applied Polymer Science >Wetting and adhesion behavior of armos fibers after dielectric barrier discharge plasma treatment
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Wetting and adhesion behavior of armos fibers after dielectric barrier discharge plasma treatment

机译:介电势垒放电等离子体处理后Armos纤维的润湿和粘附行为

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摘要

To investigate the influence of atmospheric plasma treatment on aramid fiber wetting and adhesion behavior, an air dielectric barrier discharge (DBD) was applied to the Armos aramid fiber surface at different discharge power densities. Dynamic contact angle analysis indicated that the total surface free energy was increased from 49.6 to 68.3 mJ/m2, an increment of 37.7%, whereas the single-fiber tensile strength testing showed that the mechanical properties of the Armos fibers were almost unaffected. With the enhancement of fiber surface wettability, the interlaminar shear strength, which was used to determine the interfacial adhesion in Armos-fiber-reinforced thermoplastic poly(phthalazinone ether sulfone ketone) composites, increased by 17.2% to 71.4 MPa. Scanning electron microscopy photos showed that the predominant failure mode of the composites changed from interface failure to matrix and/or fiber failure after the plasma treatment. Taken together, these results suggest that the air DBD plasma was an effective technique for improving the surface and interfacial performance of the Armos fibers without damaging their bulk properties.
机译:为了研究大气等离子体处理对芳纶纤维润湿和粘附行为的影响,在不同的放电功率密度下,对Armos芳纶纤维表面施加了空气介质阻挡放电(DBD)。动态接触角分析表明,总表面自由能从49.6 mJ / m2增加到68.3 mJ / m2,增加了37.7%,而单纤维抗张强度测试表明Armos纤维的机械性能几乎未受影响。随着纤维表面润湿性的增强,用于确定Armos纤维增强的热塑性聚(酞嗪酮醚砜酮)复合材料的界面粘合性的层间剪切强度提高了17.2%,达到71.4 MPa。扫描电子显微镜照片显示,等离子处理后,复合材料的主要破坏模式从界面破坏变为基质破坏和/或纤维破坏。综上所述,这些结果表明,空气DBD等离子体是一种有效的技术,可改善Armos纤维的表面和界面性能,而不会损害其体积特性。

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