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Development of a Semiglobal Reaction Mechanism for the Thermal Decomposition of a Polymer Containing Reactive Flame Retardants: Application to Glass-Fiber-Reinforced Polybutylene Terephthalate Blended with Aluminum Diethyl Phosphinate and Melamine Polyphosphate

机译:含反应性阻燃剂的聚合物热分解的半全局反应机理的开发:在玻璃纤维增​​强的聚对苯二甲酸丁二酯与磷酸二乙酯铝和三聚氰胺的混合中的应用

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摘要

This work details a methodology for parameterization of the kinetics and thermodynamics of the thermal decomposition of polymers blended with reactive additives. This methodology employs Thermogravimetric Analysis, Differential Scanning Calorimetry, Microscale Combustion Calorimetry, and inverse numerical modeling of these experiments. Blends of glass-fiber-reinforced polybutylene terephthalate (PBT) with aluminum diethyl phosphinate and melamine polyphosphate were used to demonstrate this methodology. These additives represent a potent solution for imparting flame retardancy to PBT. The resulting lumped-species reaction model consisted of a set of first- and second-order (two-component) reactions that defined the rate of gaseous pyrolyzate production. The heats of reaction, heat capacities of the condensed-phase reactants and products, and heats of combustion of the gaseous products were also determined. The model was shown to reproduce all aforementioned experiments with a high degree of detail. The model also captured changes in the material behavior with changes in the additive concentrations. Second-order reactions between the material constituents were found to be necessary to reproduce these changes successfully. The development of such models is an essential milestone toward the intelligent design of flame retardant materials and solid fuels.
机译:这项工作详细介绍了一种方法,用于对与反应性添加剂共混的聚合物进行热分解的动力学和热力学进行参数化。该方法采用热重分析,差示扫描量热法,微尺度燃烧量热法和这些实验的逆数值模型。玻璃纤维增​​强的聚对苯二甲酸丁二酯(PBT)与次乙基次膦酸铝和三聚氰胺多磷酸盐的共混物用于证明该方法。这些添加剂是赋予PBT阻燃性的有效溶液。最终的集总物种反应模型由一组第一级和第二级(双组分)反应组成,这些反应定义了气态热解产物的产生速率。还确定了反应热,冷凝相反应物和产物的热容量以及气态产物的燃烧热。该模型显示可以高度详细地再现所有上述实验。该模型还捕获了材料行为随添加剂浓度变化的变化。发现材料成分之间的二级反应对于成功复制这些变化是必要的。此类模型的开发是实现阻燃材料和固体燃料智能设计的重要里程碑。

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