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Influence of fillers and additives on the cure kinetics of an epoxy/anhydride resin

机译:填料和添加剂对环氧/酸酐树脂固化动力学的影响

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The cure kinetics of a cycloaliphatic epoxy resin with and without additives and cured with an anhydride hardener was investigated by isothermal and nonisothermal differential scanning calorimetry (DSC). Dynamic measurements were used to predict the total heat of reaction of the epoxy resin as well as its activation energy based on the methods of Kissinger and Ozawa. With these methods the inhibition and acceleration effects of additives and fillers on the kinetics have been demonstrated. Additives for advanced processing and property upgrade were added in less than 2 wt.%, whereas fillers on base of SiO2 were incorporated in more than 50 wt.%. The effect of SiQ(2) surface treatment was also objective of this study. To describe the dependence of the conversion on time and temperature, isothermal DSC data were fitted to an autocatalytic model developed by Kamal and extended with a diffusion factor. The results show a very good agreement within the whole conversion range. Also the highly-filled system could be described very well by the phenomenological Kamal model. (C) 2007 Elsevier Ltd. All rights reserved.
机译:通过等温和非等温差示扫描量热法(DSC)研究了有或没有添加剂并用酸酐硬化剂固化的脂环族环氧树脂的固化动力学。基于基辛格和小泽的方法,动态测量用于预测环氧树脂的总反应热及其活化能。用这些方法已经证明了添加剂和填料对动力学的抑制和加速作用。用于先进工艺和性能提升的添加剂的加入量少于2 wt。%,而以SiO2为基础的填料的加入量则超过50 wt。%。 SiQ(2)表面处理的效果也是本研究的目标。为了描述转化率对时间和温度的依赖性,将等温DSC数据拟合到Kamal开发的自动催化模型中,并用扩散因子进行扩展。结果表明,在整个转化范围内,一致性非常好。现象学的Kamal模型也可以很好地描述高度填充的系统。 (C)2007 Elsevier Ltd.保留所有权利。

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