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首页> 外文期刊>Journal of Composite Materials >Development of a numerical model to predict in-plane heat generation patterns during induction processing of carbon fiber-reinforced prepreg stacks
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Development of a numerical model to predict in-plane heat generation patterns during induction processing of carbon fiber-reinforced prepreg stacks

机译:开发数值模型以预测碳纤维增强预浸料堆的感应加工过程中的平面内热量产生方式

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摘要

A numerical model is proposed to describe in-plane heat generation spatial response during induction processing of carbon fiber-reinforced thermoplastics. The model is based on a unified approach that considers three possible heating mechanisms: fiber heating (Joule losses in fiber), noncontact junction heating (dielectric hysteresis), and contact junction heating (Joule losses at junctions). A lumped meshing scheme is used to construct a numerical representation for cross-ply and angle-ply orientations of 2-ply prepreg stacks. Heat generation patterns are calculated based on voltage and current conservation laws and verified with induction heating of AS4 carbon fiber-reinforced polyetherimide (AS4/PEI) prepreg stacks. Excellent agreement is found except at very low angle-ply orientations where the predicted heating patterns show significant deviations from the experiment results. A sensitivity analysis is also performed to assess the relationship between heating patterns and material and process parameters. The results show that the stack angle between plies and intrinsic prepreg microstructure can significantly affect the heating patterns. [References: 19]
机译:提出了一个数值模型来描述碳纤维增强热塑性塑料的感应加工过程中的平面内生热空间响应。该模型基于统一的方法,该方法考虑了三种可能的加热机制:纤维加热(纤维中的焦耳损耗),非接触结点加热(介电滞后)和接触结点加热(结点处的焦耳损耗)。集总网格划分方案用于构造2层预浸料叠层的交叉层和角度层方向的数值表示。根据电压和电流守恒定律计算热量产生模式,并通过感应加热对AS4碳纤维增强聚醚酰亚胺(AS4 / PEI)预浸料堆进行验证。除了在非常低的角度层方向上发现了极好的一致性外,在这种情况下,预测的加热模式与实验结果存在明显的偏差。还进行了敏感性分析,以评估加热方式与材料和工艺参数之间的关系。结果表明,层之间的堆叠角和固有的预浸料坯微观结构可以显着影响加热模式。 [参考:19]

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