首页> 外文期刊>journal of applied polymer science >Application of the kinetic composite methodology to autocatalytic‐type thermoset prepreg cures
【24h】

Application of the kinetic composite methodology to autocatalytic‐type thermoset prepreg cures

机译:动力学复合材料方法在自催化型热固性预浸料固化中的应用

获取原文
获取外文期刊封面目录资料

摘要

AbstractUsing a commercial epoxy/carbon fiber prepreg as a model system, cure kinetics of an autocatalytic‐type reaction were analyzed by a general form of conversion‐dependent function first proposed for degradation kinetics of polymers and composites. 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. Assuming two elementary reaction mechanisms that were expressed by thenth order and autocatalytic kinetic models, they were combined with a composite methodology capable of predicting overall kinetic behavior. The activation energies were determined and favorably compared for both isothermal and dynamic‐heating differential scanning calorimetry experiments in the temperature region for standard epoxy cures at 177°C (350°F). Finally, the proposed model equation demonstrated excellent predictive capability and broad applicability in describing various types of thermoset polymer cure for both isothermal and dynamic heating conditions. © 1993 John W
机译:摘要 以商用环氧/碳纤维预浸料为模型体系,通过聚合物和复合材料降解动力学的转化依赖性函数的一般形式,分析了自催化型反应的固化动力学。使用简化图方法确定转化相关函数的特征,其中温度相关反应速率常数与等温数据进行解析分离。假设两种基本反应机理由当时的顺序和自催化动力学模型表达,它们与能够预测整体动力学行为的复合方法相结合。在177°C(350°F)下,在温度范围内测定并比较了等温和和动态加热差示扫描量热实验的活化能。最后,所提出的模型方程在描述各种类型的热固性聚合物固化等温和动态加热条件下表现出优异的预测能力和广泛的适用性。© 1993 约翰·

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号