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首页> 外文期刊>Journal of Reinforced Plastics and Composites >A fatigue damage model for (0/90) FRP composites based on stiffness degradation of 0 degrees and 90 degrees composite plies
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A fatigue damage model for (0/90) FRP composites based on stiffness degradation of 0 degrees and 90 degrees composite plies

机译:基于0度和90度复合材料层的刚度退化的(0/90)FRP复合材料的疲劳损伤模型

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摘要

The present study develops a stiffness reduction based model to characterize fatigue damage in unidirectional 0 degrees and 90 degrees plies and (0 degrees/90 degrees) laminates of fiber-reinforced polymer (FRP) composites. The proposed damage model has been developed, based on (i) cracking mechanism and damage progress in matrix (Region I), matrix-fiber interface (Region II) and fiber (Region III) and (ii) corresponding stiffness reduction of unidirectional composite laminates as the number of cycles progresses. Fatigue damage of (0/90) composite systems was obtained by integrating damage values and occurred in composite plies of 0 degrees and 90 degrees under fatigue cycles. The predicted fatigue damage results based on the proposed damage model were found to be in good agreement for both unidirectional and (0/90) FRP composites, as they were compared with experimental data for these materials, tested at various cyclic stress levels, stress ratios, and off-axis angles reported in the literature.
机译:本研究开发了一种基于刚度降低的模型,以表征纤维增强聚合物(FRP)复合材料的单向0度和90度帘布层以及(0度/ 90度)层压板的疲劳损伤。基于(i)基体(区域I),基体-纤维界面(区域II)和纤维(区域III)的开裂机理和破坏进展,以及(ii)单向复合材料层压板相应的刚度降低,开发了建议的损伤模型。随着周期数的增加。通过积分损伤值获得(0/90)复合系统的疲劳损伤,并在疲劳循环下发生在0度和90度的复合层中。基于单向和(0/90)FRP复合材料,根据提议的损伤模型预测的疲劳损伤结果被发现与这些材料具有很好的一致性,因为它们与这些材料的实验数据进行了比较,并在各种循环应力水平,应力比下进行了测试,以及文献中报道的离轴角度。

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