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Effects of composition of hardener on the curing and aging for an epoxy resin system

机译:固化剂组成对环氧树脂体系固化和老化的影响

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Different Mixture ratios of Shell Epon 828 (based on diglycidyl ether of bisphenol A, DGEBA) and Shell EPI-CURE 3046 (based on triethylenetetramine, TETA) were evaluated under different environments of isothermal curing at 80 degrees C in DSC, room temperature Curing in air, and aging in water at 45 degrees C. The Curing reactions were monitored using differential scanning calorimetry (DSC), dynamic mechanical analysis (DMA), and infrared spectroscopy (IR). It was shown that the initial curing rate increased with the amount of hardener. However, the epoxy groups in samples with excess hardener were prone to reaction with primary amines located at the ends of TETA molecules, resulting in a less dense epoxy network. During aging in water at 45 degrees C, significant effects of water on the postcure and the increased water absorption with an increase of hardener amount were observed. The DMA results show that the samples with hardener around stoichiometric composition have the greatest storage modulus while curing in air environment. However, the samples with hardener Much less than stoichiometric composition have greater storage modulus under aging in water at 45 degrees C. (c) 2005 Wiley Periodicals, Inc.
机译:在DSC,室温下于80℃等温固化的不同环境下,评估了Shell Epon 828(基于双酚A的二缩水甘油醚,DGEBA)和Shell EPI-CURE 3046(基于三亚乙基四胺,TETA)的不同混合比。空气,然后在45摄氏度的水中老化。使用差示扫描量热法(DSC),动态力学分析(DMA)和红外光谱(IR)监控固化反应。结果表明,初始固化速率随固化剂用量的增加而增加。然而,具有过量固化剂的样品中的环氧基易于与位于TETA分子末端的伯胺反应,从而导致环网密度降低。在45摄氏度的水中老化过程中,观察到水对后固化有显着影响,并且随着固化剂用量的增加,吸水率也增加。 DMA结果表明,在空气环境中固化时,具有化学计量组成附近的硬化剂的样品具有最大的储能模量。但是,具有比化学计量组成少得多的硬化剂的样品在水中在45摄氏度的老化条件下具有更高的储能模量。(c)2005 Wiley Periodicals,Inc.

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