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Polar–polar interaction between the reinforcement and matrix for kevlar fiber‐reinforced composite: Effect of using the blend of polar polymers as matrix

机译:凯夫拉尔纤维增强复合材料增强材料与基体之间的极性-极性相互作用:使用极性聚合物共混物作为基体的效果

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AbstractFor the purpose of investigating the polar–polar interaction between reinforcement and matrix in polymer composite, the mechanical dispersions were studied for the composite comprised of the Kevlar fiber and poly(hydroxy ether of bisphenol A) (I), with which poly(ethylene oxide) (II) or poly(ethylene adipate) (III) was blended as a part of matrix. It is shown by analyzing the storage modulus and loss modulus vs. temperature curves that the reinforcement–matrix interaction is increased relatively to the primary transition temperature of matrix by blending II or III with I, and II is more efficient for increase of the interaction than III. The results obtained from the mechanical dispersions do not contradict those from the Fourier transform infrared spectra on the matrix‐polymer‐coated Kevlar fiber and on the mixture of matrix polymers with benzanilide, which is used as a model compound for the Kevla
机译:摘要为研究聚合物复合材料中增强材料与基体的极性-极性相互作用,研究了由凯夫拉纤维和双酚A(I)的聚羟基醚(I)组成的复合材料的力学分散体,并将聚环氧乙烷(II)或聚己二酸乙二酸乙二酸酯(III)作为基体的一部分进行共混。通过分析储能模量和损耗模量随温度曲线表明,通过将II或III与I混合,增强-基体相互作用相对于基体的一次转变温度增加,并且II比III更有效。从机械分散体中获得的结果与基质聚合物涂层凯夫拉纤维和基质聚合物与苯甲酰苯胺混合物的傅里叶变换红外光谱的结果并不矛盾,苯甲酰苯胺被用作凯夫拉的模型化合物

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