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Fogging Control on LDPE/EVA Coextruded Films: Wettability Behavior and Its Correlation with Electric Performance

机译:LDPE / EVA共挤薄膜的起雾控制:润湿行为及其与电性能的关系

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摘要

The transformation of fog at a non-visible water layer on a membrane of low-density polyethylene (LDPE) and ethylene-vinyl acetate (EVA) was evaluated. Nonionic surfactants of major demand in the polyolefin industry were studied. A kinetic study using a hot fog chamber showed that condensation is controlled by both the diffusion and permanency of the surfactant more than by the change of the surface energy developed by the wetting agents. The greatest permanency of the anti-fog effect of the LDPE/EVA surface was close to 3000 h. The contact angle results demonstrated the ability of the wetting agent to spread out to the surface. Complementarily, the migration of nonionic surfactants from the inside of the polymeric matrix to the surface was analyzed by Fourier transform infrared (FTIR) microscopy. Additionally, electrical measurement on the anti-fogging membrane at alternating currents and at a sweep frequency was proposed to test the conductivity and wetting ability of nonionic surfactants. We proved that the amphiphilic molecules had the ability to increase the conductivity in the polyolefin membrane. A correlation between the bulk electrical conductivity and the permanency of the fogging control on the LDPE/EVA coextruded film was found.
机译:评估了低密度聚乙烯(LDPE)和乙烯-乙酸乙烯酯(EVA)膜上不可见水层的雾气转化。研究了聚烯烃工业中主要需求的非离子表面活性剂。使用热雾室进行的动力学研究表明,凝结作用受表面活性剂的扩散和持久性的控制比受润湿剂产生的表面能变化的影响更大。 LDPE / EVA表面的最大防雾效果接近3000小时。接触角结果证明了润湿剂扩散到表面的能力。作为补充,通过傅里叶变换红外(FTIR)显微镜分析了非离子表面活性剂从聚合物基质内部到表面的迁移。另外,提出了在交流电和扫描频率下在防雾膜上的电学测量,以测试非离子表面活性剂的电导率和润湿能力。我们证明了两亲性分子具有增加聚烯烃膜中电导率的能力。发现在LDPE / EVA共挤出膜上的体积电导率与雾化控制的持久性之间的相关性。

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