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A fatigue damage accumulation model based on stiffness degradation of composite materials

机译:基于复合材料刚度退化的疲劳损伤累积模型

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摘要

Many of the stiffhess-based fatigue damage models contain four main limitations for composite materials life determination: (ⅰ) lack of capability in simulating the whole periods of damage evolution, (ⅱ) applicability for a specific type of composite and in a limited range of loading levels, (ⅲ) existence of many parameters in the models requiring substantial experimental data, (ⅳ) application for constant amplitude loading only. In this paper, a stiffness-based fatigue damage model is proposed aiming to address the posed shortcomings. Nine sets of experimental data are utilized for this purpose. The results show that the model succeeds in dealing with these limitations. Then, a life prediction model is developed based on the damage model for two-stage loading. The model is assessed by three sets of experimental data and compared with some existing models. The comparison demonstrates that the model predictions are promising for remaining fatigue cycles in comparison with the studied models.
机译:许多基于刚度的疲劳损伤模型在确定复合材料的寿命方面存在四个主要局限性:( lack)缺乏模拟损伤演化整个过程的能力;(ⅱ)在特定类型的复合材料中且在有限范围内的适用性(ⅲ)模型中存在许多需要大量实验数据的参数,(ⅳ)仅用于恒定振幅负载。在本文中,提出了一种基于刚度的疲劳损伤模型,旨在解决所提出的缺点。为此目的利用了九组实验数据。结果表明,该模型成功解决了这些限制。然后,基于损伤模型为两阶段载荷开发寿命预测模型。该模型由三组实验数据评估,并与一些现有模型进行比较。比较结果表明,与所研究的模型相比,模型预测对于剩余疲劳周期是有希望的。

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