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Study on phenolphthalein poly(ether sulfone)-modified cyanate ester resin and epoxy resin blends

机译:酚酞聚醚砜改性氰酸酯树脂与环氧树脂共混物的研究

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In this work, the phenolphthalein poly(ether sulfone) (PES-C)-modified cyanate ester (CE) and epoxy (EP) blends were prepared. This work mainly discusses the curing behaviors, fracture toughness, dynamic mechanical properties, and thermal and mechanical properties of the blends. The Fourier transform infrared and differential scanning calorimetric analyses are used to confirm the curing behaviors, demonstrating that the main reaction pathways are not varied with the addition of PES-C, but the reaction rate could be evidently accelerated. The fracture morphologies of the blends are observed by Scanning electron microscope (SEM) and the fracture causes of the failed surface are also analyzed. With the addition of PES-C, the modified blends display higher fracture toughness (K-Ic) and impact strength when compared with neat CE. Domain sizes of the blends first increase then decrease with the addition of PES-C. The results of dynamic mechanical analysis and thermogravimetric analysis show that the T-g, storage modulus, and thermal stability of the crosslink network slightly decreases with the addition of PES-C. The mechanical strength of blends with the addition of PES-C is far better than that of the blends without PES-C both at ambient temperature and elevated temperature. POLYM. ENG. SCI., 55:2591-2602, 2015. (c) 2015 Society of Plastics Engineers
机译:在这项工作中,制备了酚酞聚(醚砜)(PES-C)改性的氰酸酯(CE)和环氧(EP)的混合物。这项工作主要讨论了共混物的固化行为,断裂韧性,动态力学性能以及热力学性能。傅里叶变换红外和差示扫描量热分析被用于确认固化行为,表明主要反应路径不随PES-C的添加而变化,但反应速度明显加快。通过扫描电子显微镜(SEM)观察共混物的断裂形态,并分析破坏表面的断裂原因。与纯CE相比,添加PES-C时,改性共混物显示出更高的断裂韧性(K-Ic)和冲击强度。共混物的畴尺寸首先随着PES-C的添加而增加然后减小。动态力学分析和热重分析的结果表明,交联网络的T-g,储能模量和热稳定性随PES-C的添加而略有降低。在环境温度和高温下,添加了PES-C的共混物的机械强度都比不添加PES-C的共混物的机械强度好得多。 POLYM。 ENG。 SCI。,55:2591-2602,2015.(c)2015年塑料工程师学会

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