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Panel stiffener debonding analysis using a shell/3D modeling technique

机译:使用Shell / 3D建模技术的面板加劲肋脱胶分析

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摘要

A shear loaded, stringer reinforced composite panel is analyzed to evaluate the fidelity of computational fracture mechanics analyses of complex structures. Shear loading causes the panel to buckle. The resulting out-of-plane deformations initiate skin/stringer separation at the location of an embedded defect. The panel and surrounding load fixture were modeled with shell elements. A small section of the stringer foot, web and noodle as well as the panel skin near the delamination front were modeled with a local 3D solid model. Across the width of the stringer foot, the mixed-mode strain energy release rates were calculated using the virtual crack closure technique. A failure index was calculated by correlating the results with a mixed-mode failure criterion of the graphite/epoxy material. The objective was to study the effect of the fidelity of the local 3D finite element model on the computed mixed-mode strain energy release rates and the failure index.
机译:分析了受剪负载,纵梁增强的复合板,以评估复杂结构的计算断裂力学分析的保真度。剪切载荷会导致面板弯曲。产生的平面外变形会在嵌入缺陷的位置引发皮肤/纵梁分离。面板和周围的负载夹具都使用壳单元建模。使用局部3D实体模型对一小部分的桁条脚,腹板和面条以及分层前部附近的面板蒙皮进行建模。在纵梁的整个宽度上,使用虚拟裂纹闭合技术计算了混合模式应变能释放速率。通过将结果与石墨/环氧树脂材料的混合模式破坏准则相关联来计算破坏指数。目的是研究局部3D有限元模型的保真度对计算的混合模式应变能释放率和破坏指数的影响。

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