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A cure modelling study of an unsaturated polyester resin system for the simulation of curing of fibre-reinforced composites during the vacuum infusion process

机译:用于模拟真空灌注过程中纤维增强复合材料固化的不饱和聚酯树脂体系的固化建模研究

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摘要

This study presents the cure kinetics and cure modelling of an ambient curing unsaturated polyester (UP) resin system for its cure simulation in the vacuum infusion (VI) process. The curing of the UP resin system was investigated using differential scanning calorimetry (DSC). The dynamic DSC test measurements were conducted to find out the ultimate heat of reaction and enable experimental conversion determination for the isothermal curing. The empirical autocatalytic cure kinetics model incorporating the Arrhenius law represented the cure behaviour. The results of the cure kinetics study, the cure model, the material properties and the boundary conditions were the inputs in PAM-RTM software for the simulation of the degree of cure and the exothermic temperature during the infusion and the room temperature curing stages. The simulation results were compared with experimentally measured data. A vacuum infusion (VI) experiment involving a non-crimp glass fibre preform was performed in order to monitor the curing using thermocouples and validate the temperature simulation result. It was shown that the degree of cure and the exothermic temperature of a room temperature curing thermoset resin system during the VI process could be predicted through the steps of this study.
机译:这项研究提出了环境固化不饱和聚酯(UP)树脂体系的固化动力学和固化模型,用于在真空灌注(VI)过程中进行固化模拟。使用差示扫描量热法(DSC)研究了UP树脂体系的固化。进行动态DSC测试测量以找出反应的最终热量,并能够进行等温固化的实验转化率测定。结合阿伦尼乌斯定律的经验自催化固化动力学模型代表了固化行为。固化动力学研究的结果,固化模型,材料特性和边界条件是PAM-RTM软件的输入,用于模拟输注和室温固化阶段的固化程度和放热温度。仿真结果与实验测量数据进行了比较。进行了涉及非卷曲玻璃纤维预制棒的真空灌注(VI)实验,以监控使用热电偶的固化并验证温度模拟结果。结果表明,通过本研究的步骤可以预测VI过程中室温固化热固性树脂体系的固化程度和放热温度。

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