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Epoxy benzoxazine based ternary systems of improved thermo-mechanical behavior for structural composite applications

机译:基于环氧苯并恶嗪的三元体系,改进了结构复合应用的热力学行为

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摘要

Ternary mixtures of various ratios of bisphenol F benzoxazine as a hardener for bisphenol F novolac epoxy (ER) and diglycidal ether of polyethylene glycol (EL) resins were made in order to study the visco elastic and thermo mechanical properties in comparison with homo polymerized polybenzoxazine (F-a). FTIR, and DSC were used to characterize the cure characteristic. The dynamic mechanical analyzer and thermo gravimetric analysis were investigated on F-a and ternary samples. An improved Tg of curable ternary mixture with 48.1 and 3.1 wt% of ER and EL respectively with benzoxazine resin was achieved based on trends in the ternary diagram. The ternary samples were thermally stable up to 370 degrees C when compared to F-a. Investigation of fracture toughness and SEM images showed improved fracture toughness for the samples with 52% binary epoxy mixture in the ternary system. The newly developed ternary mixtures showed improved service temperature, thermal stability, cross linking density, processing window and fracture toughness with minimum brittleness when compared to polybenzoxazine. The applicability of the developed ternary mixture was demonstrated by preparing an S glass fabric reinforced composite with F-f. It was observed that this S glass fabric composite has improved flexural strength, flexural modulus, ILSS, Shore D hardness & hydrolytic stability when compared to the polybenzoxazine composite and was found to be very useful for high performance structural applications.
机译:将双酚F苯并恶嗪作为双酚F Novolac环氧树脂(ER)和聚乙二醇(EL)树脂的硬化剂的各种比例的三元混合物进行,以研究与HOMO聚合的聚苯异种嗪相比,研究粘体弹性和热机械性能( F A)。 FTIR和DSC用于表征治愈特征。对F-A和三元样本进行了动态机械分析仪和热重量分析。基于三元图的趋势,实现了分别与48.1和3.1wt%的ER和Er和Er的改进的Tg和3.1wt%的Tg和el。基于三元图的趋势,实现了苯并嗪树脂。与F-A相比,三元样品在最多370℃热稳定。裂缝韧性和SEM图像的研究表明,在三元体系中具有52%二元环氧混合物的样品的裂缝韧性改善。新开发的三元混合物显示出在与聚苯肼嗪相比时改善的服务温度,热稳定性,交叉连接密度,加工窗口和裂缝韧性,最小脆性。通过用F-F制备S玻璃织物增强复合材料来证明所发育的三元混合物的适用性。观察到,与聚苯异种嗪复合材料相比,该S玻璃织物复合材料具有改善的弯曲强度,弯曲模量,ILS,肖氏D硬度和水解稳定性,并发现对高性能结构应用非常有用。

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  • 来源
    《RSC Advances》 |2015年第5期|共11页
  • 作者单位

    Adv Composite Ctr ASL Hyderabad Andhra Pradesh India;

    Adv Composite Ctr ASL Hyderabad Andhra Pradesh India;

    DRDL Propellant &

    Polymer Div Hyderabad 500058 Andhra Pradesh India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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