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Effects of glass fiber surface condition on the dielectric property of short glass fiber reinforced PA-6/PP composites

机译:玻璃纤维表面条件对短玻璃纤维增​​强PA-6 / PP复合材料介电性能的影响

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Dielectric properties of short glass fiber reinforced PA-6/PP composites under both dry and wet conditions were investigated. The composites were prepared with a Haake-90 mixer using different short glass fibers, which were surface-modified respectively with three kinds of silane solution. It was found that the fiber surface condition influences significantly the glass fiber-resin matrix interfacial bond, which in turn determines the dielectric properties of the composites. The short glass fiber/PA-6/PP composite containing fibers pre-treated with an acid aqueous solution of two silane coupling agent exhibits the best stability in dielectric properties under wet conditions. It is considered that the observation is a direct result of the strong interfacial bond due to the proper selection of a silane coupling agent and its acid-water condition used in the fiber pre-treatment. The mechanism of the change of the dielectric properties of the composites under dry and wet conditions is proposed based on the moisture absorption through capillaries of the materials.
机译:研究了短玻璃纤维增​​强PA-6 / PP复合材料在干湿条件下的介电性能。用Haake-90混合器使用不同的短玻璃纤维制备复合材料,所述短玻璃纤维分别用三种硅烷溶液进行表面改性。已经发现,纤维表面条件显着影响玻璃纤维-树脂基体的界面结合,这反过来又决定了复合材料的介电性能。含有短纤维的玻璃纤维/ PA-6 / PP复合材料,用两种硅烷偶联剂的酸性水溶液进行预处理,在潮湿条件下表现出最佳的介电性能稳定性。据认为,所述观察是强的界面结合的直接结果,由于在纤维的前处理中使用的硅烷偶联剂和其酸 - 水条件的适当选择。基于材料的毛细管吸收水分,提出了在干湿条件下复合材料介电性能变化的机理。

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