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Experimental and analytical study of fatigue damage in notched graphite/epoxy laminates

机译:缺口石墨/环氧树脂层压板疲劳损伤的实验和分析研究

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摘要

Both tension and compression fatigue behaviors were investigated in four notched graphite/epoxy laminates. After fatigue loading, specimens were examined for damage type and location using visual inspection, light microscopy, scanning electron microscopy, ultrasonic C-scans, and X-radiography. Delamination and ply cracking were found to be the dominant types of fatigue damage. In general, ply cracks did not propagate into adjacent plies of differing fiber orientation. To help understand the varied fatigue observations, the interlaminar stress distribution was calculated with finite element analysis for the regions around the hole and along the straight free edge. Comparison of observed delamination locations with the calculated stresses indicated that both interlaminar shear and peel stresses must be considered when predicting delamination. The effects of the fatigue cycling on residual strength and stiffness were measured for some specimens of each laminate type. Fatigue loading generally caused only small stiffness losses. In all cases, residual strengths were greater than or equal to the virgin strengths.
机译:在四个带缺口的石墨/环氧树脂层压板中研究了拉伸和压缩疲劳行为。疲劳加载后,通过目测,光学显微镜,扫描电子显微镜,超声C扫描和X射线照相检查样品的损伤类型和位置。发现分层和帘布层破裂是疲劳损伤的主要类型。通常,板层裂缝不会传播到纤维取向不同的相邻板层中。为了帮助理解不同的疲劳观察结果,使用有限元分析对孔周围和直线自由边缘区域的层间应力分布进行了计算。将观察到的分层位置与计算得出的应力进行比较表明,在预测分层时必须同时考虑层间剪切应力和剥离应力。对于每种层压板类型的一些样品,测量了疲劳循环对残余强度和刚度的影响。疲劳载荷通常仅引起很小的刚度损失。在所有情况下,残余强度均大于或等于原始强度。

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    Whitcomb, J. D.;

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  • 年度 1979
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