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A new approach for strength and stiffness prediction of discontinuous fibre reinforced composites (DFC)

机译:预测不连续纤维增强复合材料(DFC)强度和刚度的新方法

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摘要

A new modelling methodology for strength and stiffness prediction of discontinuous fibre-reinforced composites (DFC) is proposed. This has been validated for both thermoplastic and thermoset, prepreg based, carbon fibre reinforced, random DFC laminates having high volume fraction, by implementing it in a commercial FE solver. The methodology involves explicit generation of internal architecture of DFC through an algorithm which is efficient (faster model generation and solution), easily customizable and scalable. It captures many of the realistic features of the DFC such as variation in volume fraction, interlacing of strands, random orientation and thickness variation of strands. Thus, the model accounts for the natural mechanical property variation, which is characteristic of random DFCs and was found to be conservative in terms of prediction of tensile strength and stiffness for all the validation cases considered. It is generic in the sense that it can be easily extended to generate preferentially aligned and hybrid DFC laminates.
机译:提出了一种新的预测不连续纤维增强复合材料强度和刚度的建模方法。通过在商用有限元求解器中实现,这已针对具有高体积分数的热塑性和热固性,预浸料基,碳纤维增强,无规DFC层压板进行了验证。该方法论涉及通过高效(易于定制和可扩展)的算法显式生成DFC的内部体系结构。它捕获了DFC的许多实际特征,例如体积分数的变化,线的交织,线的随机方向和厚度的变化。因此,该模型考虑了自然机械性能的变化,这是随机DFC的特征,并且在考虑到的所有验证情况下,在预测拉伸强度和刚度方面都比较保守。从某种意义上讲,它是通用的,可以轻松扩展以生成优先排列的混合DFC层压板。

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