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Solvent transport phenomenon of cellulose microfiber (CMF) reinforced poly (ethylene-co-vinyl acetate) (EVA) composites

机译:纤维素微纤维(CMF)增强聚(乙烯-乙酸乙烯酯)(EVA)复合材料的溶剂传输现象

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摘要

Composite films based on EVA with CMF were prepared and characterized for their solvent transport nature. CMF were derived from Hibiscus sabdariffa by steam explosion technique and incorporated in the EVA matrix by extrusion. Solvent transport by the composites was analyzed using hexane, heptane and octane as penetrant molecules. The solvent uptake behavior of EVA/CMF composites is explained on the basis of the penetrant size, temperature and the filler loading. The composite had improved barrier property compared with unfilled EVA. This in turn is an indication of good fiber-matrix interaction in the composite system. Diffusion parameters such as diffusion coefficient, permeation coefficient and Arrhenius activation parameters and thermodynamic parameters such as enthalpy and entropy were evaluated in detail. The mode of transport was found to be Fickian.
机译:制备了基于EVA和CMF的复合薄膜,并对其溶剂传输性质进行了表征。 CMF通过蒸汽爆炸技术从芙蓉中提取而来,并通过挤压法掺入EVA基质中。使用己烷,庚烷和辛烷作为渗透剂分子分析了复合材料的溶剂传输。 EVA / CMF复合材料的溶剂吸收行为是根据渗透剂的大小,温度和填充剂的用量来解释的。与未填充的EVA相比,该复合材料的阻隔性得到了改善。这又表明复合系统中良好的纤维-基体相互作用。详细评估了扩散参数(例如扩散系数,渗透系数和Arrhenius活化参数)和热力学参数(例如焓和熵)。人们发现运输方式是菲克。

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