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首页> 外文期刊>Macromolecular theory and simulations >Effects of Reactivity Ratios on Network Topology and Thermomechanical Properties in Vinyl Ester/Styrene Thermosets: Molecular Dynamics Simulations
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Effects of Reactivity Ratios on Network Topology and Thermomechanical Properties in Vinyl Ester/Styrene Thermosets: Molecular Dynamics Simulations

机译:反应性比对乙烯基酯/苯乙烯热固性的网络拓扑和热机械性能的影响:分子动力学模拟

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摘要

Styrene-based thermoset polymers using vinyl ester crosslinkers offer the potential ability to tune material properties via control of network topology, measured primarily by the distribution of poly(styrene) molecular weight between vinyl esters. Clearly, demonstrating a relationship between topology and properties in the glassy state has so far proven difficult using experimental approaches. Here, an approach to control network topology in molecular simulations of randomly crosslinking systems via relative reactivity is presented. Several models of nearly fully cured (vinyl ester)/styrene (VE/ST) thermosets at fixed monomer composition but with a large range of distributions of molecular weight between crosslinks, M-c, are generated. It is found that fully cured VE/ST thermosets have glass transition temperatures and glassy Young's moduli that are insensitive to M-c distributions at fixed monomer composition. Using extreme cases of relative reactivity, it is also established that glassy-state thermomechanical properties are sensitive to the overall density of crosslinks.
机译:使用乙烯基酯交联剂的基于苯乙烯的热固性聚合物提供了通过控制网络拓扑的调节材料特性的潜在能力,主要通过乙烯基酯之间的聚(苯乙烯)分子量的分布来测量。显然,展示了玻璃状态的拓扑和性质之间的关系到目前为止难以使用实验方法。这里,提出了一种通过相对反应性控制随机交联系统的分子模拟网络拓扑的方法。产生几种型号的几乎全固化(乙烯基酯)/苯乙烯(VE / ST)热固性的热固性,但是在交联的交联M-C之间具有大范围的分子量分布。发现完全固化的VE / ST热固性具有玻璃化转变温度和玻璃杨的模胶,其对固定单体组合物的M-C分布不敏感。使用极端情况的相对反应性,还建立了玻璃状热机械性能对交联的总密度敏感。

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