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首页> 外文期刊>Journal of Composite Materials >A progressive damage methodology for residual strength predictions of notched composite panels
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A progressive damage methodology for residual strength predictions of notched composite panels

机译:缺口复合板残余强度预测的渐进损伤方法

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摘要

The translaminate fracture behavior of carbon/epoxy structural laminates with through-penetration notches was investigated to develop a residual strength prediction methodology for composite structures. An experimental characterization of several composite materials systems revealed a fracture resistance behavior that resembles the R-curve behavior exhibited by ductile metals. Fractographic examinations led to the postulate that the damage growth resistance was primarily due to fractured fibers in the principal load-carrying plies being bridged by intact fibers of the adjacent plies. The load transfer associated with this bridging mechanism suggests that a progressive damage analysis methodology will be appropriate for predicting the residual strength of laminates with through-penetration notches. A progressive damage methodology developed by the authors was used to predict the initiation and growth of matrix cracks and fiber fracture. The residual strength predictions for different panel widths, notch lengths, and material systems were in reasonable agreement to the experimental failure loads.
机译:研究了具有穿透缺口的碳/环氧树脂结构层压板的层间断裂行为,以开发复合结构的残余强度预测方法。几种复合材料系统的实验表征表明,其抗断裂性能类似于韧性金属表现出的R​​曲线性能。断口检查结果表明,抗破坏性增长的主要原因是主要承载层中的断裂纤维被相邻层的完整纤维桥接。与这种桥接机制相关的载荷传递表明,渐进式损伤分析方法将适合于预测具有穿透缺口的层压板的残余强度。作者开发了一种渐进式损伤方法,用于预测基体裂纹和纤维断裂的发生和发展。对于不同的面板宽度,切口长度和材料系统,残余强度的预测与实验破坏载荷基本吻合。

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