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环氧树脂体系固化反应动力学特征 被引量:6

Curing Kinetical Characteristics of Epoxy Resin System
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摘要 采用非等温差式扫描量热方法(DSC)对双酚A型环氧树脂(E-51)与日本TAF环氧沥青(J-2)固化剂的固化反应动力学特征进行了研究.根据不同升温速率下环氧树脂体系固化反应的DSC曲线特征,通过n级自催化反应模型,求解出固化反应动力学参数,进而得到其固化反应动力学方程,探讨其固化反应机理.试验结果表明,通过固化反应动力学模型所得到的曲线与试验得到的DSC曲线吻合较好,所确立的模型在5~25 K/min的升温速率下能较好地描述环氧树脂体系固化反应过程,为研究环氧沥青固化机理提供理论基础,有利于制定和完善环氧沥青合理的固化工艺. The curing kinetics of bisphenol A based epoxy resins ( E - 51 ) and curing agent used in the TAF epoxy asphalt (J -2) was studied by non-isothermal differential scanning calorimetry (DSC) technique at dif- ferent heating rates. According to the DSC graphs, the kinetic parameters were obtained and the kinetic model of the curing process based on n order reaction equation was set up using Kissinger and Crane equation. The results showed that the curves calculated by the theoretical model show a good agreement with the curves ob- tained from the experimental data. Under the 5 ~ 25 K/min hating rates, the kinetic model can describe the curing process perfectly, lay a theoretical foundation for the curing mechanism of epoxy asphalt and provide the basis for the determine of the reasonable curing technology.
出处 《郑州大学学报(工学版)》 CAS 北大核心 2012年第3期95-98,共4页 Journal of Zhengzhou University(Engineering Science)
基金 国家自然科学基金资助项目(50978031)
关键词 环氧树脂 固化机理 动力学模型 环氧沥青 epoxy resin curing mechanism kinetic model epoxy asphalt
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参考文献9

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