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The chemistry of dimethacrylate-styrene networks, and, Development of flame retardant, halogen-free fiber reinforced vinyl ester composites.

机译:二甲基丙烯酸酯-苯乙烯网络的化学,以及阻燃,无卤素的纤维增强乙烯基酯复合材料的开发。

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摘要

One of the major classes of polymer matrix resins under consideration for structural composite applications in the infrastructure and construction industries is vinyl ester resin. Vinyl ester resin is comprised of low molecular weight poly(hydroxyether) oligomers with methacrylate endgroups diluted with styrene monomer. The methacrylate endgroups cure with styrene via free radical copolymerization to yield thermoset networks. The copolymerization behavior of these networks was monitored by Fourier Transform Infrared Spectroscopy (FTIR) at various cure conditions. Reactions of the carbon-carbon double bonds of the methacrylate (943 cm-1) and styrene (910 cm-1 ) were followed independently. Oligomers possessing number average molecular weights of 700 g/mole were studied with systematically increasing levels of styrene. The Mortimer-Tidwell reactivity ratios indicated that at low conversion more styrene was incorporated into the network at lower cure temperatures. The experimental vinyl ester-styrene network compositions deviated significantly from those predicted by the Meyer-Lowry integrated copolymer equation at higher conversion, implying that the reactivity ratios for these networks may change with conversion. The kinetic data were used to provide additional insight into the physical and mechanical properties of these materials.;In addition to establishing the copolymerization kinetics of these materials, the development of halogen free fiber reinforced vinyl ester composites exhibiting good flame properties was of interest. Flame retardant vinyl ester resins are used by many industries for applications requiring good thermal resistance. The current flame-retardant technology is dependent on brominated vinyl esters, which generate high levels of smoke and carbon monoxide. A series of halogen free binder systems has been developed and dispersed in the vinyl ester to improve flame retardance. The binder approach enables the vinyl ester resin to maintain its low temperature viscosity so that fabrication of composites via Vacuum Assisted Resin Transfer Molding (VARTM) is possible. The first binder system investigated was a polycaprolactone layered silicate nanocomposite, which was prepared via intercalative polymerization. Transmission Electron Microscopy (TEM) and X-ray Diffraction (XRD) data indicated a mixed morphology of exfoliated and intercalated structures. The mechanical properties and the normalized peak heat release rates were comparable to the neat vinyl ester resin.;Alternative binder systems possessing inherent flame retardance were also investigated. A series of binders comprised of novolac, bisphenol A diphosphate, and montmorillonite clay were developed and dispersed into the vinyl ester matrix. Cone calorimetry showed reductions in the peak heat release rate comparable to the brominated resin.;Keywords: dimethacrylate; vinyl ester; network; reactivity ratios; nanocomposites; layered silicates; exfoliated; thermoset matrix resin; flame retardant
机译:乙烯基酯树脂是在基础设施和建筑业中用于结构复合应用的主要聚合物基体树脂类别之一。乙烯基酯树脂由低分子量的聚(羟基醚)低聚物组成,该低聚物具有被苯乙烯单体稀释的甲基丙烯酸酯端基。甲基丙烯酸酯端基通过自由基共聚作用与苯乙烯固化,生成热固性网络。这些网络的共聚行为通过傅立叶变换红外光谱(FTIR)在各种固化条件下进行监控。独立地追踪甲基丙烯酸酯(943cm-1)和苯乙烯(910cm-1)的碳-碳双键的反应。研究了具有700 g / mol数均分子量的低聚物,并系统地增加了苯乙烯的含量。 Mortimer-Tidwell反应性比率表明,在较低的固化温度下,低转化率下,更多的苯乙烯被引入网络中。在较高的转化率下,实验性乙烯基酯-苯乙烯网络组分明显不同于由Meyer-Lowry集成共聚物方程式预测的组分,这意味着这些网络的反应率可能随转化率而变化。动力学数据被用来提供对这些材料的物理和机械性能的进一步了解。;除了建立这些材料的共聚动力学之外,具有良好阻燃性能的无卤纤维增强乙烯基酯复合材料的开发也受到关注。阻燃乙烯基酯树脂被许多行业用于要求良好耐热性的应用。当前的阻燃技术依赖于溴化乙烯基酯,后者会产生大量的烟雾和一氧化碳。已经开发了一系列无卤素的粘合剂体系,并将其分散在乙烯基酯中以提高阻燃性。粘合剂方法使乙烯基酯树脂能够保持其低温粘度,从而可以通过真空辅助树脂传递模塑(VARTM)制造复合材料。研究的第一个粘合剂体系是聚己内酯层状硅酸盐纳米复合材料,它是通过插层聚合制备的。透射电子显微镜(TEM)和X射线衍射(XRD)数据表明脱落和嵌入结构的混合形态。力学性能和归一化的峰值放热率与纯乙烯基酯树脂相当。;还研究了具有固有阻燃性的替代粘合剂体系。开发了一系列由线型酚醛清漆,双酚A二磷酸双酯和蒙脱土组成的粘合剂,并将其分散到乙烯基酯基体中。锥形量热法显示出与溴化树脂相当的峰值放热速率降低。乙烯基酯网络;反应率;纳米复合材料层状硅酸盐;去角质热固性基体树脂;不易燃的

著录项

  • 作者

    Rosario, Astrid Christa.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Chemistry Organic.;Chemistry Polymer.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 206 p.
  • 总页数 206
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:46:24

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