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Studies of the Physical Properties of Cycloaliphatic Epoxy Resin Reacted with Anhydride Curing Agents

机译:与酸酐固化剂反应的脂环族环氧树脂物理性质的研究

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The preparation of high performance epoxy composites for industrial applications has been extensively researched. In this report, we study the change in physical properties and reaction kinetics between epoxy resin and curing agents of similar geometry. For the experiments, celloxide 2021P, an epoxy resin having low viscosity, was blended with three different curing agents: methylhexahydropthalic acid, methyltetrahydropthalic acid, and 5-norbornene-2, 3-dicarboxylic anhydride. The amount of 1, 2-dimethylimidazole catalyst was controlled, and the highest heat flow temperature (T_(peak)) was observed at around 145 °C. The impact on reaction kinetics relative to the change in heating rate was studied with differential scanning calorimetry (DSC) for each of the curing agents. The glass transition temperature (T_g) of each composition was measured with a second DSC cycle. The prepared epoxy compositions were thermally cured in a metallic mold to provide pure epoxy resins without fillers. Finally, the flexural strengths of these resins were compared to each other. The authors believe that insights into choosing an appropriate epoxy binder are useful when it comes to the overall preparation of high performance polymer composites.
机译:广泛研究了用于工业应用的高性能环氧复合材料的制备。在本报告中,我们研究了类似几何形状的环氧树脂和固化剂之间的物理性质和反应动力学的变化。对于实验,将具有低粘度的环氧树脂,与三种不同的固化剂:甲基己二乙酸,甲基四氢苯甲酸和5-降冰片烯-2,3-二羧酸酐混合。控制1,2-二甲基咪唑催化剂的量,并且在约145℃的约145℃下观察到最高的热流量温度(T_(峰))。研究了对每个固化剂的差示扫描量热法(DSC)研究了对加热速率变化的对反应动力学的影响。用第二DSC循环测量每个组合物的玻璃化转变温度(T_G)。将制备的环氧组合物在金属模具中热固化,以提供无填料的纯环氧树脂。最后,将这些树脂的弯曲强度彼此进行比较。作者认为,在涉及高性能聚合物复合材料的整体制备时,选择适当的环氧粘合剂的见解是有用的。

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