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首页> 外文期刊>Mechanical Engineering Journal >Evaluation of detailed transverse crack propagation toward thickness direction for CF/PEEK quasi-isotropic laminates under fatigue loading
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Evaluation of detailed transverse crack propagation toward thickness direction for CF/PEEK quasi-isotropic laminates under fatigue loading

机译:疲劳负载下CF / PEEK准激光层压层朝向厚度方向的详细横变裂纹传播评价

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摘要

Carbon fiber (CF) reinforced polyether ether ketone (PEEK) laminates are applied to the members of transportation structures exposed to severe conditions, because carbon fibers and PEEK have excellent heat-resistant and chemical stability. Therefore, it is important to ensure the long-term reliability of CF/PEEK laminates and evaluate the propagation of transverse cracks, which are generally the initial damage incurred by multidirectional laminates under fatigue loading. This study evaluated the detailed mechanism of transverse crack propagation toward the thickness direction in CF/PEEK quasi-isotropic laminates under fatigue loading. The transverse crack growth was observed using the replica method, and the energy release rate associated with the transverse crack propagation toward the thickness direction was calculated using a three-dimensional virtual crack closure-integral method. Thus, it was found that the transverse crack propagated in a stable manner until it passed through the 90° layer toward the thickness direction. Additionally, it was found that the crack growth rate increased in the range wherein the crack length was short, and maintained an approximately constant growth rate in the middle stage of propagation. According to Paris’ law, when the crack depth was relatively shallow, the experimental results are approximately consistent with the analytical evaluation results for the energy release rate associated with the transverse crack propagation toward the thickness direction. Finally, it is also concluded that the high ductility of the PEEK resin and good fiber/matrix interfacial property of the CF/PEEK laminates are important influencing factors for the stable and characteristic crack propagation observed in the experiment.
机译:碳纤维(CF)增强聚醚醚酮(PEEK)层压板应用于暴露于严重条件的运输结构的成员,因为碳纤维和PEEK具有优异的耐热性和化学稳定性。因此,重要的是要确保CF / PEEK层压板的长期可靠性并评估横向裂缝的传播,这通常是疲劳负载下的多向层压材料产生的初始损害。该研究评估了在疲劳负载下CF / PEEK准激光层压件朝向厚度方向朝向厚度方向的详细机制。使用复制方法观察横裂裂纹生长,并且使用三维虚拟裂纹闭合 - 整体方法计算与横向裂纹朝向厚度方向传播的能量释放速率。因此,发现横向裂纹以稳定的方式传播,直到它朝向厚度方向通过90°层。另外,发现裂缝长度短的裂纹生长速率增加,并且在繁殖的中间阶段保持近似恒定的生长速率。根据巴黎法律,当裂缝深度相对较浅时,实验结果与与横向裂纹传播相关联的能量释放速率的分析评估结果大致一致。最后,还得出结论,CF / PEEK层压板的PEEK树脂和良好纤维/基质界面性能的高延展性是实验中观察到的稳定和特征裂纹繁殖的重要影响因素。

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