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首页> 外文期刊>Journal of Applied Polymer Science >Microstructure evolution of ammonia-catalyzed phenolic resin during thermooxidative aging
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Microstructure evolution of ammonia-catalyzed phenolic resin during thermooxidative aging

机译:氨催化酚醛树脂热氧化老化过程中的微观结构演变

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The thermooxidative aging of ammonia-catalyzed phenolic resin for 30 days at 60-170°C was investigated in this article. The aging mechanism and thermal properties of the phenolic resin during thermooxidative aging were described by thermogravimetry (TG)-Fourier transform infrared (FTIR) spectroscopy, attenuated total reflectance (ATR)-FTIR spectroscopy, and dynamic mechanical thermal analysis. The results show that the C-N bond decomposed into ammonia and the dehydration condensation between the residual hydroxyl groups occurred during the thermooxidative aging. Because of the presence of oxygen, the methylene bridges were oxidized into carbonyl groups. After aging for 30 days, the mass loss ratio reached 4.50%. The results of weight change at high temperatures coincided with the results of TG-FTIR spectroscopy and ATR-FTIR spectroscopy. The glass-transition temperature (T _g) increased from 240 to 312°C after thermooxidative aging for 30 days, which revealed the postcuring of phenolic resins. In addition, an empirical equation between the weight change ratio and T _g was obtained.
机译:本文研究了氨催化的酚醛树脂在60-170°C下热氧化30天的过程。通过热重分析(TG)-傅立叶变换红外光谱(FTIR),衰减全反射率(ATR)-FTIR光谱和动态机械热分析来描述酚醛树脂在热氧化老化过程中的老化机理和热性能。结果表明,在热氧化老化过程中,C-N键分解成氨,残留羟基之间发生脱水缩合。由于存在氧,亚甲基桥被氧化成羰基。老化30天后,质量损失率达到4.50%。高温下重量变化的结果与TG-FTIR光谱和ATR-FTIR光谱的结果一致。热氧化老化30天后,玻璃化转变温度(T _g)从240升高至312°C,这表明酚醛树脂的后固化。另外,获得了重量变化率与T _g之间的经验方程。

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