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Isothermal differential scanning calorimetry study of a glass/epoxy prepreg

机译:玻璃/环氧树脂预浸料的等温差示扫描量热法研究

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Isothermal differential scanning calorimetry (DSC) was used to study the curing behavior of epoxy prepreg Hexply11454 system, based on diglycidyl ether of bisphenol A (DEGBA)/dicyandiamid (DICY) reinforced by glass fiber. Cure kinetics of an autocatalytic-type reaction were analyzed by general form of conversion-dependent function. The characteristic feature of conversion-dependent function was determined using a reduced-plot method where the temperature-dependent reaction rate constant was analytically separated from the isothermal data. An autocatalytic kinetic model was used; it can predict the overall kinetic behavior in the whole studied cure temperature range (115-130℃). The activation energy and pre-exponential factor were determined as: E=94.8 kJ/mol and A=1.75×10~(10) sec~(-1) and reaction order as 2.11 (m+n=0.65+1.46=2.11). A kinetic model based on these values was developed by which the prediction is in good agreement with experimental values.
机译:采用等温差示扫描量热法(DSC)研究了以玻璃纤维增​​强的双酚A(DEGBA)/双氰胺(DICY)二缩水甘油醚为基础的环氧预浸料Hexply11454体系的固化性能。通过转化依赖性函数的一般形式来分析自催化型反应的固化动力学。转换依赖性函数的特征是使用精简图法确定的,在该方法中,将温度依赖性反应速率常数与等温数据进行了分析分离。使用了自催化动力学模型。它可以预测整个研究的固化温度范围(115-130℃)中的整体动力学行为。活化能和指数前因子确定为:E = 94.8 kJ / mol和A = 1.75×10〜(10)sec〜(-1),反应级数为2.11(m + n = 0.65 + 1.46 = 2.11) 。建立了基于这些值的动力学模型,通过该模型预测与实验值非常吻合。

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