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Properties of vinyl ester resins containing methacrylated fatty acid comonomer:the effect of fatty acid chain length

机译:含甲基丙烯酸酯化脂肪酸共聚单体的乙烯基酯树脂的性能:脂肪酸链长的影响

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摘要

This paper reports the formulation of a low-cost vinyl ester-based composite resin suitable for liquid molding,which has significantly lower volatile organic compound emission associated with it.Methacrylated fatty acid comonomers were used to replace the conventional yet environmentally hazardous reactive diluent,styrene.The chain length of these fatty acids played a key role in obtaining better viscosity,as it was proved to affect two interplaying factors:intermolecular friction and hydrogen bonding.The thermomechanical performance was greatly affected by the chain length of the fatty acids as well as the crosslink density of the polymer networks.A carbon number of 6 to 8 was good enough in optimizing the viscosity parameter suitable for handling;the dynamic mechanical analysis values,namely glass transition temperature and storage modulus,were in the range 66-121 °C and 0.97-2.8 GPa,respectively,as the carbon number was varied from 4 to 16,making the material suitable for various applications.Microstructures obtained from scanning electron microscopy results were correlated with polymer properties to obtain a better insight into these polymer networks.
机译:本文报道了一种适用于液体成型的低成本乙烯基酯基复合树脂的配方,该树脂具有显着降低的挥发性有机化合物排放量。甲基丙烯酸酯化的脂肪酸共聚单体被用来代替传统的但对环境有害的反应性稀释剂苯乙烯这些脂肪酸的链长在获得更好的粘度方面起着关键作用,因为事实证明它影响两个相互作用因素:分子间摩擦和氢键。脂肪酸的链长和碳数为6至8足以优化适合处理的粘度参数;动态力学分析值(即玻璃化转变温度和储能模量)在66-121°C范围内当碳数从4变为16时,分别为0.97-2.8 GPa,使该材料适用于各种ap从扫描电子显微镜结果获得的微观结构与聚合物的性质相关联,以更好地了解这些聚合物网络。

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