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Fatigue life and damage tolerance of postbuckled composite stiffened structures with initial delamination

机译:初始分层后屈曲复合材料加劲结构的疲劳寿命和损伤容限

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The durability and damage tolerance of postbuckled composite structures are issues that are not completely understood and remain difficult to predict due to the nonlinearity of the geometric response and its interaction with local damage modes. A research effort was undertaken to investigate experimentally the quasi-static and fatigue damage progression in single-stringer compression specimens. Three specimens were manufactured with a co-cured hat stringer, and an initial defect was introduced with a Teflon film inserted between one flange of the stringer and the skin. Pre-test finite element analyses were conducted using the virtual crack closure technique to select the range of defect sizes to be considered and the load levels to be applied during the fatigue tests. The tests were monitored with digital image correlation, passive thermography, and ultrasound systems. After an initial opening and extension of the Teflon-induced embedded defect, the specimens sustained a high number of cycles. It was observed that when the skin/stringer separation develops in the opposite flange, it propagates rapidly within a small number of cycles and causes the collapse of the specimen. These test results contribute to a better understanding of the complex response phenomena exhibited by postbuckled stiffened structures subjected to fatigue loads in the postbuckling range. (C) 2016 Elsevier Ltd. All rights reserved.
机译:后屈曲复合结构的耐久性和损伤耐受性是一个尚未完全理解的问题,由于几何响应的非线性及其与局部损伤模式的相互作用,因此仍然难以预测。进行了一项研究工作,以实验方式研究单纵梁压缩试样的准静态和疲劳损伤进展。用共固化的帽子纵梁制造了三个样品,并在纵梁的一个凸缘和皮肤之间插入了特氟龙薄膜,从而引入了初始缺陷。使用虚拟裂纹闭合技术进行测试前的有限元分析,以选择要考虑的缺陷尺寸范围和在疲劳测试期间要施加的载荷水平。通过数字图像关联,被动热成像和超声系统对测试进行监控。最初打开并扩展特氟隆引起的嵌入缺陷后,标本经历了许多次循环。观察到,当在相对的凸缘中出现皮肤/纵梁分离时,它会在少数循环中迅速传播并导致标本塌陷。这些测试结果有助于更好地理解在屈曲范围内承受疲劳载荷的后屈曲加劲结构所表现出的复杂响应现象。 (C)2016 Elsevier Ltd.保留所有权利。

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