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Modelling of Damage Evolution in Braided Composites: Recent Developments

机译:编织复合材料损伤演化的建模:最新进展

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Abstract Composites reinforced with woven or braided textiles exhibit high structural stability and excellent damage tolerance thanks to yarn interlacing. With their high stiffness-to-weight and strength-to-weight ratios, braided composites are attractive for aerospace and automotive components as well as sports protective equipment. In these potential applications, components are typically subjected to multi-directional static, impact and fatigue loadings. To enhance material analysis and design for such applications, understanding mechanical behaviour of braided composites and development of predictive capabilities becomes crucial. Significant progress has been made in recent years in development of new modelling techniques allowing elucidation of static and dynamic responses of braided composites. However, because of their unique interlacing geometric structure and complicated failure modes, prediction of damage initiation and its evolution in components is still a challenge. Therefore, a comprehensive literature analysis is presented in this work focused on a review of the state-of-the-art progressive damage analysis of braided composites with finite-element simulations. Recently models employed in the studies on mechanical behaviour, impact response and fatigue analyses of braided composites are presented systematically. This review highlights the importance, advantages and limitations of as-applied failure criteria and damage evolution laws for yarns and composite unit cells. In addition, this work provides a good reference for future research on FE simulations of braided composites.
机译:摘要机织或编织织物增强的复合材料由于纱线交织而具有较高的结构稳定性和出色的抗损伤性。编织复合材料具有高的刚度重量比和强度重量比,因此在航空航天,汽车部件以及运动防护设备方面具有吸引力。在这些潜在的应用中,组件通常会承受多方向的静态,冲击和疲劳载荷。为了增强用于此类应用的材料分析和设计,了解编织复合材料的机械性能以及开发预测能力变得至关重要。近年来,在开发新的建模技术方面取得了重大进展,该技术可以阐明编织复合材料的静态和动态响应。但是,由于它们独特的交错几何结构和复杂的失效模式,因此,对于损伤的开始及其在组件中的演化的预测仍然是一个挑战。因此,在这项工作中,我们进行了全面的文献分析,重点是通过有限元模拟对编织复合材料的最新渐进式损伤分析进行了回顾。最近系统地提出了编织复合材料的机械性能,冲击响应和疲劳分析研究中使用的模型。这篇综述强调了纱线和复合材料单元电池失效准则以及损伤演化规律的重要性,优势和局限性。此外,这项工作为今后对编织复合材料有限元模拟的研究提供了很好的参考。

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