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Analytical model for predicting the tensile strength of unidirectional composites based on the density of fiber breaks

机译:基于纤维断裂密度预测单向复合材料拉伸强度的解析模型

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摘要

While analytical fiber fragmentation models following the global load-sharing (GLS) assumption efficiently reproduce the stress strain curves of unidirectional composites loaded in the direction of the reinforcement when the number of breaks is moderate, they completely fail to predict tensile strength. In this paper, we propose that failure takes place when a critical density of breaks, which depends entirely on the constituent properties, is reached. Therefore, we rewrite classic GLS fragmentation models in terms of the linear density of breaks. The critical number of breaks for a set of glass and carbon reinforced polymer composites is extracted from published experimental data and fitted to an empirical law, with good predictive capability. Our approach complements GLS fragmentation models because it identifies the ultimate stress, from which the stress-strain curve given by the model becomes unrealistic.
机译:尽管遵循总载荷共享(GLS)假设的分析性纤维破碎模型可以有效地再现当断裂次数适中时在增强方向上载荷的单向复合材料的应力应变曲线,但它们完全无法预测拉伸强度。在本文中,我们提出当达到完全取决于组成特性的临界断裂密度时,就会发生破坏。因此,我们根据中断的线性密度重写了经典的GLS碎片模型。从公开的实验数据中提取出一组玻璃和碳增强聚合物复合材料的临界断裂数,并将其拟合为经验法则,具有良好的预测能力。我们的方法是对GLS破碎模型的补充,因为它可以识别最终应力,从而使模型给出的应力-应变曲线变得不切实际。

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