首页> 外文会议>2001 a Materials and Processes Odyssey >KINETIC STUDIES OF CURING PROCESS AND GELATION OF HIGH PERFORMANCE THERMOSETS BASED ON TERNARY SYSTEMS OF BENZOXAZINE, EPOXY AND PHENOLIC RESINS
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KINETIC STUDIES OF CURING PROCESS AND GELATION OF HIGH PERFORMANCE THERMOSETS BASED ON TERNARY SYSTEMS OF BENZOXAZINE, EPOXY AND PHENOLIC RESINS

机译:基于苯并嗪,环氧树脂和酚醛树脂三元体系的高性能热敏胶的固化过程和运动的运动学研究

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High performance ternary systems based on benzoxazine, epoxy novolac, and phenolic resins have been developed. The curing kinetics based on dynamic DSC results of this ternary system shows n-th order kinetics with an overall reaction order of 1.5 using modified Friedman approach. The apparent activation energy for the curing process of the resin is about 111 kJ/mol whereas that of the gelation process shows the value of about 75 kJ/mol. A choice of a resin used for the study provides maximum Tg of about 220°C in its fully cured specimen comparing with other ternary mixture compositions. Tg-conversion relationship of this ternary system can be well-predicted using DiBenedetto equation. The use of phenolic-catalyzed benzoxazine resin as a curing agent for the epoxy novolac resin not only helps reduce the viscosity, thus improves processability, of the resulting resin mixture, but also provides a system with better thermal and mechanical integrity with high flexibility in resin/curing agent mixing ratios. The system has a potential use as high performance electronic packaging molding compounds or highly filled systems.
机译:已经开发了基于苯并恶嗪,环氧线型酚醛清漆和酚醛树脂的高性能三元体系。基于改进的弗里德曼方法,基于该三元体系的动态DSC结果的固化动力学显示出n阶动力学,总反应级数为1.5。树脂的固化过程的表观活化能为约111kJ / mol,而胶凝过程的表观活化能为约75kJ / mol。与其他三元混合物组成相比,选择一种用于研究的树脂可在其完全固化的样品中提供约220°C的最大Tg。使用DiBenedetto方程可以很好地预测此三元系统的Tg转换关系。酚醛催化苯并恶嗪树脂作为环氧线型酚醛清漆树脂的固化剂的使用不仅有助于降低所得树脂混合物的粘度,从而改善其加工性能,而且还提供了具有更好的热和机械完整性并在树脂中具有高柔韧性的体系/固化剂混合比。该系统具有用作高性能电子包装模塑料或高填充系统的潜在用途。

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