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Poly(phenylene oxide) modified cyanate resin for self-healing

机译:聚苯醚改性的自修复氰酸酯树脂

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Self-healing cyanate ester resins (CE) were developed by adding low molecular weight poly(phenylene oxide) (PPO) resin, yielding a high performance CE/PPO system via a low-temperature process. The addition of PPO improved the flexural strength and fracture toughness of the CE matrix without sacrificing thermal properties. CE/PPO formulations with 5, 10, and 15 wt.% PPO showed 43%, 65%, and 105% increase in fracture toughness due to a combination of crack deflection, crack pinning, and matrix cavitation around second-phase particles. When PPO was introduced into the CE, dielectric properties were either unchanged or declined. During thermal treatment to heal damaged CE, liquid PPO flowed into cracks, and during subsequent cooling, solidified to bond the crack surfaces. The self-healing efficiency for CE with 15 wt.% PPO after heating to 220℃ for 1 h exhibited a recovery of 73% in toughness and 81% in microtensile strength.
机译:通过添加低分子量聚苯醚(PPO)树脂开发了可自我修复的氰酸酯树脂(CE),从而通过低温工艺获得了高性能CE / PPO体系。 PPO的添加改善了CE基体的弯曲强度和断裂韧性,而没有牺牲热性能。具有5、10和15重量%PPO的CE / PPO配方由于裂缝变形,裂缝钉扎和第二相颗粒周围的基体空化的结合,显示出断裂韧性提高了43%,65%和105%。当将PPO引入CE时,介电性能未变或下降。在热处理以修复损坏的CE的过程中,液态PPO流入裂缝,在随后的冷却过程中固化以粘结裂缝表面。加热到220℃1 h后,具有15 wt。%PPO的CE的自我修复效率显示出73%的韧性恢复和81%的微拉伸强度恢复。

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