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Preparation and properties of an antistatic UV-curable coating modified by multi-walled carbon nanotubes

机译:多壁碳纳米管改性的抗静电UV固化涂料的制备与性能

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摘要

Ultraviolet (UV)-curable coating with strong electric insulation which applied on the surface of plastic panel will produce static security risks. As a kind of antistatic agent, multi-walled carbon nanotubes (MWCNTs) possess remarkable electrical, thermal, and mechanical properties, which are widely applied on varieties of materials. In this work, a kind of MWCNTs modified antistatic UV-curable coating for the surface of polyvinyl chloride (PVC) substrates was obtained. MWCNTs were oxidized by acid mixture firstly, then silanized using a coupling agent, 3-(methacryloxy)propyltrimethoxysilane (3-MAPTES). The results showed that when MWCNTs content was 2.0 wt% and the ball milling time was 1.5 h, the surface resistivity of the UV-curable coating was 4.1 x 10(7) Omega, which may meet the requirement of antistatic applications. Meanwhile, there was only a slight variation on the adhesion and glossiness of the coating. The FESEM micrograph of the antistatic UV-curable coating showed that MWCNTs were dispersed uniformly in the prepared UV-curable coatings and most of them inside the coating existed in a stacking way. MWCNTs may form a conductive network and make the electrostatic charge diffused not only through the surface of UV-curable coating, but also through the inside of the coating.
机译:涂在塑料面板表面的具有强电绝缘性的紫外线(UV)固化涂层会产生静电安全风险。多壁碳纳米管作为一种抗静电剂,具有卓越的电,热和机械性能,已广泛应用于多种材料。在这项工作中,获得了一种用于聚氯乙烯(PVC)基材表面的MWCNTs改性的抗静电UV固化涂料。首先将MWCNTs通过酸混合物氧化,然后使用偶联剂3-(甲基丙烯酰氧基)丙基三甲氧基硅烷(3-MAPTES)进行硅烷化。结果表明,当MWCNTs含量为2.0 wt%,球磨时间为1.5 h时,可紫外光固化涂层的表面电阻率为4.1 x 10(7)Ω,可以满足抗静电应用的要求。同时,涂层的附着力和光泽度只有很小的变化。抗静电UV固化涂层的FESEM显微照片表明,MWCNT均匀地分散在制备的UV固化涂层中,并且大多数在涂层内部以堆叠方式存在。 MWCNT可以形成导电网络,并使静电荷不仅通过可紫外线固化的涂层表面扩散,还可以通过涂层内部扩散。

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