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Effect of processing conditions on physical properties of 3-aminophenoxyphthalonitrile/epoxy laminates

机译:加工条件对3-氨基苯氧基邻苯二甲腈/环氧层合板物理性能的影响

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摘要

To develop high performances of polymer composite laminates, differential scanning calorimetry and dynamic rheological analysis studies were conducted to show curing behaviors of 3-aminophenoxyphthalonitrile/epoxy resin (3-APN/EP) matrix and define cure parameters of manufacturing processes. Glass fiber reinforced 3-APN/EP (GF/3-APN/EP) composite laminates were successfully prepared through different processing conditions with three parameters such as pressures, temperatures, and time. Based on flexure tests, dynamic mechanical analysis, thermal gravimetric analysis, and scanning electron microscope, the complementary catalytic effect of the three processing parameters is investigated by studying mechanical behavior, thermomechanical behavior, thermal behavior, and fracture morphology of GF/3-APN/EP laminates. The 50/50 GF/3-APN/EP laminates showed a significant improvement in flexural strength, glass transition temperature (T_g), and thermal stability with favorable processing parameters. It was also found that the T_g and thermal stability were significantly improved by the postheated treatment method. The effect of manufacturing process provides a new and simple route for the polymer-matrix composites application, which indicates that the composites can be manufactured at low temperatures. But, they can be used in a high temperature environment.
机译:为了开发高性能的聚合物复合材料层压板,进行了差示扫描量热法和动态流变分析研究,以显示3-氨基苯氧基邻苯二甲腈/环氧树脂(3-APN/EP)基体的固化行为,并定义制造工艺的固化参数。通过压力、温度、时间三个参数,通过不同的加工条件成功制备了玻璃纤维增强3-APN/EP (GF/3-APN/EP)复合材料层合板。通过弯曲试验、动态力学分析、热重分析和扫描电子显微镜,通过研究GF/3-APN/EP层合板的力学行为、热机械行为、热行为和断裂形貌,研究了3个加工参数的互补催化作用。50/50 GF/3-APN/EP层压板在抗弯强度、玻璃化转变温度(T_g)和热稳定性方面均有显著提高,加工参数也较好。结果还发现,后热处理方法显著提高了T_g和热稳定性。制造工艺的效果为聚合物基复合材料的应用提供了一条新的、简单的途径,表明复合材料可以在低温下制造。但是,它们可以在高温环境中使用。

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