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Kinetic study of a phenolic-novolac resin curing process by rheological and DSC analysis

机译:流变学和DSC分析对酚醛清漆树脂固化过程的动力学研究

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摘要

Rheological isothermal curing runs of a novolac resin were performed in order to study its chemorheological behavior. In addition, DSC tests were carried out for the partially cured novolac resin to determine the curing degree reached at the end of each isothermal run. The Arrhenius and Kiuna empirical models were applied to establish the curing kinetic parameters of a novolac resin. The material curing process had an activation energy of 195.0 kJ/mol using the Arrhenius rheokinetic model. The activation energy obtained for the resin curing was 103.5 kJ/mol when the Kiuna model was applied. The profile of the resin's curing degree for all isothermal tests was obtained from theological parameters: complex modulus (G*), elastic modulus (G') and torque (Gamma). Torque was the most suitable rheological variable of the resin for evaluating changes in the degree of cure during the curing process of the novolac resin. The Kamal and Markovic kinetic models were proposed to model the resin's curing behavior. Kamal's model was suggested as the best approach to predict the change in the mechanical degree of conversion during the material curing process.
机译:为了研究其流变行为,进行了线型酚醛清漆树脂的流变等温固化。此外,对部分固化的线型酚醛清漆树脂进行了DSC测试,以确定在每次等温运行结束时达到的固化度。应用Arrhenius和Kiuna经验模型建立酚醛清漆树脂的固化动力学参数。使用Arrhenius流变模型,材料固化过程的活化能为195.0 kJ / mol。当应用Kiuna模型时,用于树脂固化的活化能为103.5 kJ / mol。从所有的等温测试中可以得出树脂的固化度曲线,这些曲线是从以下的神学参数获得的:复数模量(G *),弹性模量(G')和扭矩(Gamma)。扭矩是最合适的树脂流变学变量,用于评估线型酚醛清漆树脂固化过程中固化程度的变化。提出了Kamal和Markovic动力学模型来模拟树脂的固化行为。建议使用Kamal模型作为预测材料固化过程中机械转化率变化的最佳方法。

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