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Isosorbide-methacrylate as a bio-based low viscosity resin for high performance thermosetting applications

机译:甲基丙烯酸异山梨酯,一种生物基低粘度树脂,适用于高性能热固性应用

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摘要

In recent years, the bio-refining industry has developed a number of cyclic molecules with unique attributes derived from renewable carbohydrate feedstocks. Isosorbide is one such compound that has a distinctive fused bicyclic ring system that provides a scaffold for the development of novel bio-based resin systems. We synthesized isosorbide-methacrylate (IM) by the direct esterification of isosorbide using highly reactive species such as methacryloyl chloride or methacryiic anhydride and a base catalyst. IM is a low viscosity (157 cP) cross-linking resin that free radically reacts to form a thermoset polymer with extent of cure at 85%. The resulting polymer has a T_g greater than 240 °C and main degradation temperature of ~400 °C. Mechanical test results showed that IM had a modulus of ~4 GPa and strength of 85 MPa. These thermal and mechanical properties show that IM has a significantly higher temperature operating window than any known vinyl ester resin and has similar performance to expensive high temperature epoxy resins. As such, this material has good potential for use in composite applications where a moderate to high temperature free radical cured polymer matrix is needed.
机译:近年来,生物精炼工业已经开发出许多具有可再生碳水化合物原料衍生的独特属性的环状分子。异山梨醇是一种这样的化合物,其具有独特的稠合双环系统,为开发新型生物基树脂系统提供了支架。我们使用高反应性物质(例如甲基丙烯酰氯或甲基丙烯酸酐)和碱催化剂通过异山梨醇的直接酯化反应合成了异山梨醇-甲基丙烯酸酯(IM)。 IM是一种低粘度(157 cP)交联树脂,可自由基反应形成热固性聚合物,固化度为85%。所得聚合物的T_g大于240℃,主降解温度为约400℃。机械测试结果表明,IM的模量约为4 GPa,强度为85 MPa。这些热和机械性能表明,IM具有比任何已知的乙烯基酯树脂更高的温度工作范围,并且具有与昂贵的高温环氧树脂相似的性能。这样,该材料具有用于需要中度至高温自由基固化的聚合物基体的复合应用中的良好潜力。

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