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Transverse crack growth behavior considering free-edge effect in quasi-isotropic CFRP laminates under high-cycle fatigue loading

机译:考虑高边疲劳的准各向同性CFRP层压板中考虑自由边缘效应的横向裂纹扩展行为

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The high-cycle fatigue characteristics focused on the behavior of the transverse crack growth up to 10~8 cycles were investigated using quasi-isotropic carbon fiber reinforced plastic (CFRP) laminates whose stacking sequence was [-45/0/45/90]_s. To assess the fatigue behavior in the high-cycle region, fatigue tests were conducted at a frequency of 100 Hz in addition to 5 Hz. In this study, to evaluate quantitative characteristics of the transverse crack growth in the high-cycle region, the energy release rate considering the free-edge effect was calculated. Transverse crack growth behavior was evaluated based on a modified Paris law approach. The results revealed that transverse crack growth was delayed under the test conditions of the applied stress level of σ_(max)/σ_b = 0.2.
机译:使用堆积顺序为[-45/0/45/90] _s的准各向同性碳纤维增强塑料(CFRP)层压板,研究了长达10〜8个循环的横向裂纹扩展行为的高周疲劳特性。 。为了评估高循环区域的疲劳行为,在5 Hz之外的100 Hz频率下进行了疲劳测试。在这项研究中,为了评估高循环区域中横向裂纹扩展的定量特征,计算了考虑自由边缘效应的能量释放率。横向裂纹扩展行为是基于修改后的巴黎法方法进行评估的。结果表明,在施加应力水平σ_(max)/σ_b= 0.2的测试条件下,横向裂纹扩展被延迟。

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