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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Hydrophobic surface modification of epoxy resin using an atmospheric pressure plasma jet array
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Hydrophobic surface modification of epoxy resin using an atmospheric pressure plasma jet array

机译:使用常压等离子体射流阵列对环氧树脂进行疏水表面改性

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摘要

In this work, the treatment of a typical insulating materials epoxy resin for improving surface hydrophobicity using an atmospheric pressure plasma jet (APPJ) in Ar/trimethyl silane (TMS) is conducted. For meeting the large area treatment requirement of complicated shape insulating surface, a jet linear array consisting of five jet units is developed. The surface properties of the epoxy resin before and after the treatments are studied using contact angle measurement, scanning electron microscopy and fourier transformed infrared spectroscopy. The effects of treatment time and TMS content on the water contact angle are investigated, and the treatment conditions for the maximum contact angle are obtained. It is found that dense mesh structure is formed on the surface and silicon-containing groups are introduced into the surface after treatments. The modified surfaces show a remarkable increase in water contact angle, and the surface hydrophobicity is improved accordingly. The maximum contact angles are obtained at treatment time of 300s and TMS content of 0.04%.
机译:在这项工作中,使用Ar /三甲基硅烷(TMS)中的大气压等离子体射流(APPJ)对用于提高表面疏水性的典型绝缘材料环氧树脂进行了处理。为了满足复杂形状绝缘表面的大面积处理要求,开发了由五个喷射单元组成的喷射线性阵列。使用接触角测量,扫描电子显微镜和傅里叶变换红外光谱研究环氧树脂在处理前后的表面性能。研究了处理时间和TMS含量对水接触角的影响,得到了最大接触角的处理条件。发现在处理后在表面上形成致密的网状结构并且将含硅基团引入表面。改性的表面显示出水接触角的显着增加,并且表面疏水性因此得到改善。在300s的处理时间和0.04%的TMS含量下可获得最大接触角。

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