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首页> 外文期刊>Polymer Composites >One-dimensional Heat Transfer Study of a Fiber-Reinforced Wind Epoxy Composite System in Vacuum Assisted Resin Transfer Molding Process
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One-dimensional Heat Transfer Study of a Fiber-Reinforced Wind Epoxy Composite System in Vacuum Assisted Resin Transfer Molding Process

机译:真空辅助树脂传递模塑工艺中纤维增强风环氧复合材料体系的一维传热研究

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摘要

To investigate the influence of curing behavior of a wind-epoxy resin in vacuum assisted resin transfer molding (VARTM) process, numerical analysis of the heat transfer study of VARTM process was established to characterize temperature distribution in one dimension by directly solving heat equation and was compared with the result of experiment. Differential scanning calorimeter (DSC) was applied to test curing Kinetic parameters of the epoxy system, which was required to evaluate internal thermal source and analyze heat transfer equations. Two models, such as nth order curing model and autocatalytic model, were established to solve the heat transfer equation. Combining the theoretical results with nth order curing model and experiment, it can be known that in early stage, temperature distribution correlates well with the experiment results due to the dominant chemical-controlled reaction, while great discrepancy appears in the latter stage due to diffusion-controlled reaction taking over. The result of the heat equation solved by autocatalytic model correlates well with the experiment results.
机译:为了研究风环氧树脂的固化行为对真空辅助树脂传递模塑(VARTM)过程的影响,建立了VARTM过程传热研究的数值分析,以通过直接求解热方程来表征一维温度分布,并且与实验结果比较。差示扫描量热仪(DSC)用于测试环氧体系的固化动力学参数,这是评估内部热源和分析传热方程所必需的。建立了n阶固化模型和自催化模型两个模型来求解传热方程。将理论结果与n阶固化模型和实验相结合,可以知道,在早期阶段,温度分布与实验结果的相关性很好,这归因于主要的化学控制反应,而在后期则由于扩散而出现了很大的差异。控制反应接管。用自催化模型求解的热方程结果与实验结果吻合良好。

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