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Processing of thermoset prepregs for high-volume applications and their numerical analysis using superimposed finite elements

机译:大批量应用的热固性预浸料的加工及其使用叠加有限元的数值分析

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Prepreg compression moulding (PCM) potentially fulfils the requirements for high-volume applications of structural thermoset composites. Preforming of thermoset prepregs is a first step in PCM followed by consolidation and curing. High volume manufacturing necessitates automation of the preforming stage in order to achieve the required production rate and repeatability. The present work investigates the processing of thermoset prepregs based on in-plane shear characterisation tests along with preforming experiments using classical hemispherical dome tests. The second part of this work proposes a simplified numerical scheme for prepreg preforming analysis using superimposed finite elements. The elements share common nodes. One of the sets of elements is assigned with the bi-directional material data of fibrous reinforcement. The second set of elements is allocated to resin behaviour. The scheme has the advantages of defining controlled fibre-to-resin ratio and predicting the stress field within individual constituents in the subsequent structural analysis.
机译:预浸料压缩成型(PCM)可能满足结构热固性复合材料大批量应用的要求。热固性预浸料的预成型是PCM中的第一步,然后进行固结和固化。大批量生产需要自动化预成型阶段,以实现所需的生产率和可重复性。本工作研究了基于平面剪切特性测试的热固性预浸料的加工以及使用经典半球形圆顶测试的预成型实验。这项工作的第二部分提出了一种使用叠加有限元进行预浸料坯预成型分析的简化数值方案。元素共享公共节点。一组元素之一分配有纤维增强的双向材料数据。第二组元素分配给树脂行为。该方案的优点是定义了可控的纤维与树脂的比率,并在随后的结构分析中预测了各个成分内的应力场。

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