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The effect of curing temperatures on the thermal behaviour of new polybenzoxazine-modified epoxy resin

机译:固化温度对新型聚苯嗪改性环氧树脂热行为的影响

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摘要

In this study, hydroxyl end functional group benzoxazine monomer (BZ-OH) was synthesized from ethanolamine, bisphenol-A and paraformaldehyde. The monomer was analysed and confirmed by Fourier transform infrared, and (H-1 and C-13) nuclear magnetic resonance techniques, respectively. The benzoxazine (10% by weight) was incorporated into a (50:50) weight ratio of epoxy resin and its hardener. This mixture was first cured at room temperature for 24 h and then post-cured at temperatures; 90, 120, 150, 180, 200 and 220 degrees C, respectively. Thermal gravimetric analysis was employed to study the effect of the different curing temperatures on the thermal properties of the benzoxazine/epoxy mixture. The results showed an overall improvement in the thermal stability of the samples as the curing temperature is increased. However, the product cured at 220 degrees C depicted a better thermal behaviour, with a decomposition temperature in the range of 258-532 degrees C.
机译:在该研究中,用乙醇胺,双酚-A和多聚甲醛合成羟基末端官能团苯并恶嗪单体(BZ-OH)。 通过傅里叶变换红外线和(H-1和C-13)核磁共振技术分析并确认单体。 将苯并嗪(10重量%)(10重量%)掺入(50:50)的环氧树脂和硬化剂的重量比中。 将该混合物在室温下固化24小时,然后在温度下固化; 90,120,150,180,200和220cc。 采用热重分析来研究不同固化温度对苯并恶嗪/环氧混合物的热性质的影响。 结果表明,随着固化温度的增加,样品的热稳定性的总体改善。 然而,在220℃下固化的产品描绘了更好的热行为,分解温度在258-532℃的范围内。

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