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Numerical life prediction of unidirectional fiber composites under block loading conditions using a progressive fatigue damage model

机译:利用渐进疲劳损伤模型在阻滞负载条件下单向纤维复合材料的数值寿命预测

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摘要

Practical applied components made of Fiber-Reinforced Plastics (FRPs) are usually subjected to cyclic loading with variable load amplitudes and arbitrary load orientation in the course of their service life. For a cost-effective design process of composite structures, it is essential to use computationally efficient and detailed fatigue damage design tools. This contribution focuses on the extension and application of a progressive Finite-Element-based Fatigue Damage Model (FDM) for unidirectional FRPs for lifetime prediction under different block loading conditions. The employed FDM relies on a layer- and energy-based approach, and it is capable of including basic fatigue phenomena such as load sequence effects and stress redistributions. First, the damage evolution laws on which the FDM is based are extended to block loading conditions with arbitrary load sequences. The effects of passive damage, which occur in this context under alternating cyclical tensile and compressive loading, are also taken into account. Secondly, appropriate block loading patterns are defined for the numerical prediction of the lifetime. Finally, the calculation results are presented and critically evaluated based on experimental findings from literature. The comparison of simulations with experiments demonstrates the high predictive capacity of the presented FDM.
机译:由纤维增强塑料(FRPS)制成的实用应用部件通常在其使用寿命过程中具有可变载荷幅度和任意载荷取向的循环载荷。对于复合结构的经济高效设计过程,必须使用计算上有效和详细的疲劳损坏设计工具。该贡献侧重于用于在不同块负载条件下为寿命预测的单向FRPS的逐步有限元的疲劳损伤模型(FDM)的扩展和应用。所采用的FDM依赖于基于层和能量的方法,并且能够包括基本疲劳现象,例如负载序列效应和压力再分配。首先,扩展了FDM基于FDM的损伤演化法则以阻止具有任意加载序列的负载条件。在这种情况下,在交替的循环拉伸和压缩负载下,在这种情况下发生的被动损伤的影响也被考虑在内。其次,为寿命的数值预测定义了适当的块加载模式。最后,基于文献的实验结果呈现和批判性评估。模拟与实验的比较表明了所呈现的FDM的高预测能力。

著录项

  • 来源
    《International Journal of Fatigue》 |2021年第6期|106159.1-106159.16|共16页
  • 作者

    M. Brod; A. Dean; R. Rolfes;

  • 作者单位

    Leibniz University Hannover Institute of Structural Analysis Appelstraβe 9A 30167 Hannover Germany;

    Leibniz University Hannover Institute of Structural Analysis Appelstraβe 9A 30167 Hannover Germany Universidad de Sevilla Elasticity and Strength of Materials Group School of Engineering Camino de los Descubrimientoss s/n 41092 Seville Spain;

    Leibniz University Hannover Institute of Structural Analysis Appelstraβe 9A 30167 Hannover Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fatigue modeling; Polymer matrix composites; Damage accumulation; Block loading; Life prediction;

    机译:疲劳建模;聚合物基质复合材料;损伤积累;阻止装载;生活预测;

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