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Rubber modified vinyl ester resins of different molecular weights

机译:分子量不同的橡胶改性乙烯基酯树脂

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摘要

The morphology, as well as the related fracture and mechanical behavior of vinyl ester resins (DVER) of different molecular weights cured with styrene (S) and modified with two different liquid rubbers are presented and discussed. The liquid rubbers are: carboxyl terminated poly(butadiene-co-acrylonitrile) (CTBN), a common toughening agent for epoxy resins, and an almost unreactive rubber with the DVER and S comonomers, and a reactive rubber (vinyl terminated poly(butadiene-co-acrylonitrile), (VTBN). The initial miscibility of the modified systems and the reactivity of the rubber determine the final morphology of the material. This morphology will correspond to a continuous main phase (rich in the DVER-S copolymer) with simple rubber rich inclusions (as in the epoxy-rubber systems) or with inclusions with a complex internal structure, where phase separation occurs as in the low profile modified unsaturated polyester resins. The morphologies developed are strongly dependent on the resin molecular weight as well as on the elastomer added. In spite of the initially higher compatibility of the S-DVER-CTBN system with respect to the S-DVER-VTBN system, the reactivity of the vinyl-ended elastomer leads to a much finer distribution of the elastomeric phase. In particular, the low molecular weight resin cured with S and modified with 10% of CTBN leads to a cocontinuous structure with microvoids that generates a material of low density and poor mechanical and fracture properties. On the other hand, the use of VTBN as additive leads to a more compact morphology, with gradual reduction of the mechanical performance of the modified resins and improved fracture behavior.
机译:介绍并讨论了用苯乙烯(S)固化并用两种不同的液态橡胶改性的不同分子量的乙烯基酯树脂(DVER)的形貌以及相关的断裂和力学性能。液体橡胶包括:羧基封端的聚丁二烯-丙烯腈(CTBN),常见的环氧树脂增韧剂,具有DVER和S共聚单体的几乎不活泼的橡胶以及活性橡胶(乙烯基封端的聚丁二烯-改性体系的初始混溶性和橡胶的反应性决定了材料的最终形态,该形态将对应于连续的主相(富含DVER-S共聚物),具有简单的结构。富含橡胶的夹杂物(如在环氧-橡胶体系中)或内部结构复杂的夹杂物,如低调改性的不饱和聚酯树脂中会发生相分离,形成的形态强烈依赖于树脂的分子量以及尽管S-DVER-CTBN系统最初相对于S-DVER-VTBN系统具有更高的相容性,但乙烯基端基弹性体的反应性却导致了更精细的反应。弹性体相的分布。特别是,用S固化并用10%的CTBN改性的低分子量树脂会导致带有微孔的共连续结构,从而产生低密度的材料,并且机械和断裂性能较差。另一方面,使用VTBN作为添加剂可导致形态更为紧凑,同时逐渐降低了改性树脂的机械性能并改善了断裂性能。

著录项

  • 来源
    《Journal of Materials Science》 |2002年第19期|4117-4126|共10页
  • 作者单位

    Institute of Materials Science and Technology (INTEMA) University of Mar del Plata—National Research Council (CONICET);

    Institute of Materials Science and Technology (INTEMA) University of Mar del Plata—National Research Council (CONICET);

    Institute of Materials Science and Technology (INTEMA) University of Mar del Plata—National Research Council (CONICET);

    Institute of Materials Science and Technology (INTEMA) University of Mar del Plata—National Research Council (CONICET);

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