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A model to study slit damaged braided fabric structures

机译:一种研究缝隙损坏的编织面料结构的模型

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摘要

A micromechanical model has been developed that will allow the study of a slit-damaged braided fabric air-beam structure. As such, the relevant system of non-dimensional ordinary differential equations is derived and solutions are given for the stress concentration near the broken yarns. This knowledge will contribute to the prediction of damage growth and the ability to compare different fabric materials for their damage tolerance. A simplification of the analysis has been shown to be possible when a parameter, e, the ratio of yarn tensions due to inflation to the yarn stiffness is small, approaching zero. In such a case, the equations for the braided fabric can be reduced to those of the plain weave fabric, so that the stress concentrations are the same as those for woven fabrics. As it turns out, an important result of the present analysis is that the stress concentration factor is, in fact, independent of the parameter, e, and the helix angle of the braided fabrics. This means that much of what has been learned in the study of damage in woven fabrics can be used for braided fabrics.
机译:已经开发了一种微机械模型,其将允许研究狭缝损坏的编织织物空气束结构。因此,推导出不维常微分方程的相关系统,并给出破碎纱线附近应力集中的溶液。这种知识将有助于预测损伤的增长和比较不同织物材料对其损害耐受性的能力。当参数e,由于通胀引起的纱线刚度引起的纱线张力的比率小,接近零时,已经显示了分析的简化。在这种情况下,编织织物的方程可以减少到普通编织织物的那些,使得应力浓度与织物的织物相同。事实证明,本分析的重要结果是,应力集中因子实际上独立于编织织物的参数,E和螺旋角。这意味着在编织织物损坏研究中已经了解到的大部分内容可用于编织织物。

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