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Identification of thermoset resin cure kinetics using DSC and genetic algorithm

机译:用DSC和遗传算法识别热固性树脂的固化动力学

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Resin transfer molding (RTM) is the widely used composite material manufacturing process that produces high-strength and lightweight parts for various industrial applications. In order to manufacture defect-free parts with consistent material properties, it is important to control process parameters throughout the entire volume of the molded part. The main difficulty in the large composite parts manufacturing is unobservability of the state of material during cure process. So, model based control that use coupled models of kinetics resin cure and heat transfer in the cured composite part is the good mean to implement a controllability of RTM process. Due to a variety of newly developed components for thermoset resins used in different aircraft, navy and other industrial applications, the new kinetics models, which can satisfactory describe all stages of the resin phase transformation and evolved exothermal heat, should be developed to synthesis of the proper control law. The highlight of this work is using of genetic algorithm to identify eight parameters of new kinetic equation that was proposed to describe the complicated two stage kinetics curves experimentally obtained at the differential scanning calorimetry (DSC) of new thermoset resin developed by Formosa Plastics Co. (Taiwan) for high performance CFRP composites.
机译:树脂转移成型(RTM)是广泛使用的复合材料制造工艺,可为各种工业应用生产高强度和轻质零件。为了制造具有一致材料特性的无缺陷部件,重要的是控制在模塑部件的整个体积中的过程参数。大型复合零件制造的主要困难是固化过程中材料状态的不可接受性。因此,使用动力学树脂固化和传热耦合模型的基于模型的控制是实现RTM过程的可控性的良好平均值。由于各种新开发的用于不同飞机的热固性树脂部件,海军和其他工业应用,可以令人满意地描述树脂相变和进化放热热的新动力学模型,以合成适当的控制法。这项工作的亮点是使用遗传算法来识别新型动力学方程的八个参数,提出描述在福莫萨塑料公司开发的新热固性树脂的差示扫描量热法(DSC)上实验上获得的复杂的两级动力学曲线(台湾)高性能CFRP复合材料。

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