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首页> 外文期刊>Journal of Applied Polymer Science >Bisphenol A dicyanate-novolac epoxy blend: cure characteristics, physical and mechanical properties, and application in composites
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Bisphenol A dicyanate-novolac epoxy blend: cure characteristics, physical and mechanical properties, and application in composites

机译:双酚A二氰酸酯-酚醛清漆环氧共混物:固化特性,物理和机械性能及其在复合材料中的应用

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摘要

Reactive blends of bisphenol A dicyanate (BACY) and a novolac epoxy resin (EPN) were investigated for their cure behavior and the mechanical, thermal, and physical properties of the cocured neat resin and glass-laminate composites. Contrary to the apparent observation in DSC, the dynamic mechanical analysis confirmed a multistep cure reaction of the blend, in league with an established reaction path for similar systems. The cured matrix was found to contain both polycyanurate and oxazolidinone networks that existed in discrete phases exhibiting independent glass transitions in dynamic mechanical analysis (DMA). The flexible and less crosslinked oxazolidinone network contributed to enhanced flexural strength at the cost of the tensile strength of the neat resin. The increased resin flexibility was, however, not translated to the glass-laminate composite for which the flexural strength decreased with the oxazolidinone content, although the latter was conducive for rendering a stronger interphase. The presence of oxazolidinone adversely affected the thermal stability of the cured resin and the high-temperature performance of both neat resin and the composites.
机译:研究了双酚A二氰酸酯(BACY)和线型酚醛环氧树脂(EPN)的反应性共混物的固化行为以及共固化的纯树脂和玻璃层压复合材料的机械,热和物理性能。与DSC中的明显观察相反,动态力学分析证实了共混物的多步固化反应,同时建立了类似系统的反应路径。发现固化的基体同时包含聚氰尿酸酯和恶唑烷酮网络,它们存在于离散相中,在动态力学分析(DMA)中表现出独立的玻璃化转变。柔性且交联较少的恶唑烷酮网络以提高纯树脂的拉伸强度为代价,提高了弯曲强度。然而,增加的树脂柔韧性不能转化为玻璃叠层复合材料,其抗弯强度随恶唑烷酮含量的降低而降低,尽管后者有利于增强中间相。恶唑烷酮的存在不利地影响了固化树脂的热稳定性以及纯树脂和复合材料的高温性能。

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