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首页> 外文期刊>Advanced Composite Materials: The Official Journal of the Japan Society of Composite Materials >Effect of the Hole on the Tensile Fatigue Properties of CFRP Laminates
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Effect of the Hole on the Tensile Fatigue Properties of CFRP Laminates

机译:孔洞对CFRP层压板拉伸疲劳性能的影响

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摘要

The current study assessed the effect of a bolt hole on tensile fatigue properties of CFRP laminates. Two specimens, i.e. [(0/90)3]s, [(0/45/90/-45)_2]s, were analyzed using a finite element methpd and were experimentally tested for cases, both with and without a hole, whose diameter corresponded to 0.12 times the specimen width. Delamination positions predicted by a 3-dimensional static finite element analysis were matched well to those observed by an ultrasonic imaging system in the middle of fatigue test. A hole whose diameter corresponds to 0.12 times the specimen width caused the fatigue strength to decrease by 9 percent and 11 percent under 5 Hz loading frequency, and by 22 percent and 25 percent under 10 Hz loading frequency for [(0/90)_3]s and [(0/45/90/-45)_2]s, respectively. Because the decrease in sectional area due to the hole was normalized in calculation of the tensile strength, a stress concentration around the hole is believed to induce the strength degradation of fatigue specimens. From the finite element analyses, the stress concentration factor around a hole was expected as 8.8 and 9.5 for [(0/90)_3]s and [(0/45/90/-45)_2]s, respectively.
机译:当前的研究评估了螺栓孔对CFRP层压板拉伸疲劳性能的影响。使用有限元方法分析了两个样本,即[(0/90)3] s,[(0/45/90 / -45)_2] s,并通过实验测试了有孔和无孔的情况,其直径相当于样品宽度的0.12倍。通过3维静态有限元分析预测的分层位置与疲劳测试过程中通过超声成像系统观察到的分层位置非常匹配。对于[(0/90)_3],直径等于试样宽度0.12倍的孔导致疲劳强度在5 Hz加载频率下降低9%和11%,在10 Hz加载频率下降低22%和25%。 s和[(0/45/90 / -45)_2] s。因为在抗拉强度的计算中归因于孔的截面积的减小被归一化,所以认为孔周围的应力集中引起疲劳试样的强度降低。从有限元分析来看,孔洞周围的应力集中系数对于[(0/90)_3] s和[(0/45/90 / -45)_2] s分别为8.8和9.5。

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