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Fracture Mechanics Analysis of Stitched Stiffener-Skin Debonding

机译:缝合的加劲肋-皮肤脱胶的断裂力学分析

摘要

An analysis based on plate finite elements and the virtual crack closure technique has been implemented to study the effect of stitching on mode I and mode II strain energy release rates for debond configurations. The stitches were modeled as discrete nonlinear fastener elements with a compliance determined by experiment. The axial and shear behavior of the stitches was considered, however, the two compliances and failure loads were assumed to be independent. Both a double cantilever beam (mode I) and a mixed mode skin-stiffener debond configuration were studied. In the double cantilever beam configurations, G(sub I) began to decrease once the debond had grown beyond the first row of stitches and was reduced to zero for long debonds. In the mixed-mode skin-stiffener configurations, G(sub I) showed a similar behavior as in the double cantilever beam configurations, however, G(sub u), continued to increase with increasing debond length.
机译:已经进行了基于板有限元和虚拟裂纹闭合技术的分析,以研究缝合对脱粘构型的模式I和模式II应变能释放速率的影响。针脚被建模为离散的非线性紧固件元件,其柔度由实验确定。考虑了针迹的轴向和剪切行为,但是,假定这两个柔度和破坏载荷是独立的。研究了双悬臂梁(模式I)和混合模式蒙皮加劲层的脱胶配置。在双悬臂梁构型中,一旦松胶度超出第一排针迹,G(sub I)开始减小,对于长脱胶度,G(sub I)减小至零。在混合模式的皮肤加劲肋配置中,G(sub I)表现出与双悬臂梁配置类似的行为,但是,G(sub u)随着脱胶长度的增加而继续增加。

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