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Micromechanical model of cross-over fibre bridging - Prediction of mixed mode bridging laws

机译:交叉光纤桥接的微机械模型-混合模式桥接定律的预测

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The fracture resistance of fibre composites can be greatly enhanced by crack bridging. In situ observations of mixed mode crack growth in a unidirectional carbon-fibre/epoxy composite reveal crack bridging by single fibres and by beam-like ligaments consisting of several fibres. Based on the observed bridging mechanism, a micromechanical model is developed for the prediction of macroscopic mixed mode bridging laws (stress-opening laws). The model predicts a high normal stress for very small openings, decreasing rapidly with increasing normal and tangential crack opening displacements. In contrast, the shear stress increases rapidly, approaching a constant value with increasing normal and tangential openings. The solutions for the bridging laws and the resulting toughening due to the bridging stresses are obtained in closed analytical form.
机译:裂纹桥接可以大大提高纤维复合材料的抗断裂性。在单向碳纤维/环氧树脂复合材料中混合模式裂纹扩展的原位观察表明,单纤维和由几根纤维组成的束状韧带桥接了裂纹。基于观察到的桥接机制,开发了一种用于预测宏观混合模式桥接定律(应力开放定律)的微机械模型。该模型预测很小的开口处将具有较高的法向应力,并随着法向和切向裂纹开口位移的增加而迅速减小。相反,剪切应力迅速增加,随着法向和切向开口的增加而接近恒定值。桥接定律的解以及由于桥接应力而导致的增韧以封闭的分析形式获得。

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