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Studies on New Type of Phenolic Resin by Ring Opening Reaction of Benzoxazine (VIII)-Properties of Glass Fiber Reinforced Composites-

机译:通过苯并恶嗪(VIII)的开环反应研究新型酚醛树脂-玻璃纤维增​​强复合材料的性能

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摘要

Glass fiber reinforced plastics (GFRP) are extensively used in many kinds of industrial fields. Matrices commonly used for GFRP are unsaturated polyester, epoxy, and phenolic resins. Especially expected are phenolic resins because of their good heat and flame resistance, and high mechanical properties. The objective of this study is to develop a new type of high-performance phenolic GFRP which needs no catalysts and releases no volatiles in the curing process.Bisphenol-A type novolac based benzoxazine (BisAN-a), as a new type phenolic resin precursor, was prepare from bisphenol-A type novolac, formaline and aniline. Matrix used was a molten mixture from BisAN-a and bisoxazoline. Bisoxazoline is a well known compound for improving the interfacial bond strength between the matrix and fibers. GFRP laminate was prepared by hand lay-up method using E-glass woven fabric (cloth) of 10 plies, the fiber surface of which had been treated with a n acrylic silane. As a result, GFRP from BisAN-a and bisoxazoline showed higher heat resistance, tensile strength, flexural strength, and especially impact strength than GFRRP from a conventional bisphenol-A type novolac (BisAN) and bisoxazoline. The reason for getting such high performances with the former laminate was considered as follows: the interfacial bond strength of the former was slightly weaker than that of the latter, and so much stress concentration would not build up in the matrix due to relaxation caused by interfacial partical delamination.
机译:玻璃纤维增​​强塑料(GFRP)广泛用于许多工业领域。 GFRP通常使用的基质是不饱和聚酯,环氧树脂和酚醛树脂。酚醛树脂由于其良好的耐热性和阻燃性以及高机械性能而特别值得期待。这项研究的目的是开发一种新型的高性能酚醛玻璃钢,它在固化过程中不需要催化剂并且不会释放挥发物.Bisphenol-A型酚醛清漆基苯并恶嗪(BisAN-a)作为新型酚醛树脂前体由双酚A型酚醛清漆,福尔马林和苯胺制备。使用的基质是来自BisAN-a和双恶唑啉的熔融混合物。双恶唑啉是用于改善基质和纤维之间的界面结合强度的众所周知的化合物。 GFRP层压板是使用10层电子玻璃纤维织物(布)通过手工铺网的方法制备的,其纤维表面已用n丙烯酸硅烷处理过。结果,与来自传统双酚A型酚醛清漆(BisAN)和双恶唑啉的GFRRP相比,来自BisAN-a和双恶唑啉的GFRP显示出更高的耐热性,拉伸强度,挠曲强度,特别是冲击强度。认为使用前者层压板具有如此高性能的原因如下:前者的界面粘合强度略弱于后者,并且由于界面引起的松弛,因此不会在基体中建立太多的应力集中分层。

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