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首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Aging of hydrophobized surfaces of ramie fibers induced by atmospheric pressure plasma treatment with ethanol pretreatment
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Aging of hydrophobized surfaces of ramie fibers induced by atmospheric pressure plasma treatment with ethanol pretreatment

机译:大气压等离子体乙醇预处理对麻纤维疏水化表面的老化

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摘要

In order to investigate hydrophilic recovery of hydrophobic treatment of cellulose fibers, ramie fibers are ethanol-pretreated followed by atmospheric pressure plasma jet (APPJ) treatment using helium as the treatment gas and age for up to 150 days in 20 °C and 65% relative humidity. Scanning electron microscopy shows the fiber surfaces of the ethanol-pretreated+APPJ-treated group of freshly prepared, aged for 30 days, and aged for 150 days are covered with polypropylene matrix after fiber pullout tests. X-ray photoelec-tron spectroscopy shows that the freshly prepared ethanol-pretreated+APPJ-treated group has a 31% reduction in atomic ratio of oxygen to carbon and maintains at a similar level even after 150 days of aging. Water contact angle measurement demonstrates that the wettability of fiber surface of the freshly prepared ethanol-pretreated+APPJ-treated group drastically decreases and remains at the same lever after aging. Interfacial shear strength test reveals that the interfacial adhesion between PP matrix and ramie fiber for the freshly prepared ethanol-pretreated+APPJ-treated group increases 26% and remains substantially higher than that of the control group over time. These results indicate that the ethanol pretreatment followed by APPJ treatment is a permanent surface treatment with negligible aging for at least five months.
机译:为了研究纤维素纤维疏水处理的亲水性回收,麻纤维经过乙醇预处理,然后使用氦气作为处理气体进行大气压等离子体射流(APPJ)处理,并在20°C和65%相对湿度下老化150天。湿度。扫描电子显微镜显示,新鲜制备的乙醇预处理+ APPJ处理组的纤维表面在纤维拔出试验后被聚丙烯基质覆盖,老化了30天,老化了150天。 X射线光电子能谱显示,新鲜制备的乙醇预处理+ APPJ处理组的氧碳原子比降低了31%,即使在老化150天后也保持在相似的水平。水接触角测量表明,新鲜制备的乙醇预处理+ APPJ处理组的纤维表面的润湿性急剧下降,并且在老化后保持在相同的水平。界面剪切强度测试表明,新鲜制备的乙醇预处理+ APPJ处理组的PP基体与麻纤维之间的界面粘合力随时间的推移增加了26%,并仍显着高于对照组。这些结果表明,先进行乙醇预处理再进行APPJ处理的是永久性表面处理,其老化时间可以忽略不计至少五个月。

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