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首页> 外文期刊>Journal of Composite Materials >Network structure and properties of dimethacrylate-styrene matrix materials
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Network structure and properties of dimethacrylate-styrene matrix materials

机译:二甲基丙烯酸酯-苯乙烯基材料的网络结构和性能

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One of the major classes of polymer matrix resins under consideration for structural composite applications in the infrastructure and construction industries is the so-called "vinyl esters." These are comprised of low molecular weight poly(hydroxyether) oligomers with methacrylate endgroups diluted with styrene monomer. The methacrylate oligomeric endgroups co-cure with the styrene in free radical copolymerization to yield thermoset networks. Selected properties of such resins and resultant networks where the molecular weights of the poly(hydroxyether) oligomers have been varied from 700 to 1200 g/mole and the concentration of styrene has been systematically changed are presented. In general, both the glass transition temperatures and fracture toughness of the fully cured networks increased as the styrene was decreased in each oligomer series with different molecular weights. As expected the volume contraction upon cure also decreased significantly as styrene was decreased, and thus residual cure stresses may be reduced in fiber reinforced composites. The resistance to crack propagation was significantly improved for networks prepared with the 1200 M{sub}n dimethacrylate oligomer relative to those from the 700 g/mole material. Crosslink densities were estimated from measurements of the rubbery moduli at T{sub}g + 40℃ and relationships between network density, chemical composition and properties are discussed.
机译:在基础设施和建筑业中用于结构复合应用的聚合物基体树脂的主要类别之一是所谓的“乙烯基酯”。它们由具有用苯乙烯单体稀释的甲基丙烯酸酯端基的低分子量聚(羟基醚)低聚物组成。甲基丙烯酸酯的低聚端基在自由基共聚中与苯乙烯共固化,以产生热固性网络。给出了这类树脂的选择性能和所得网络,其中聚(羟基醚)低聚物的分子量已在700至1200 g / mol之间变化,并且苯乙烯的浓度已得到系统地改变。通常,随着分子量降低的每个低聚物系列中苯乙烯含量的降低,完全固化网络的玻璃化转变温度和断裂韧性都增加。如所期望的,随着苯乙烯的减少,固化时的体积收缩率也显着降低,因此可以降低纤维增强复合材料中的残余固化应力。与由700g / mol材料制成的网络相比,用1200M {sub} n二甲基丙烯酸酯低聚物制备的网络显着改善了抗裂纹扩展的能力。通过在T {sub} g + 40℃下的橡胶模量的测量来估计交联密度,并讨论了网络密度,化学组成和性能之间的关系。

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