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首页> 外文期刊>International Journal of Damage Mechanics >Interface fracture in orthotropic composite plates using second-order shear deformation theory
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Interface fracture in orthotropic composite plates using second-order shear deformation theory

机译:基于二阶剪切变形理论的正交异性复合板界面断裂

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摘要

The second-order shear deformation theory is used in this study to calculate the stresses and the energy release rates in orthotropic composite plates. A novel double-plate system is utilized with the imposition of the proper kinematic constraints in the interface plane of a double-plate system. The governing equations of the system were derived and as a demonstrative example a simply-supported plate subjected to a point force was analyzed. Using Levy plate formulation, the plate problem was solved by a state-space model, incorporating four different regions. The distribution of the stress resultants and the interlaminar stresses in the uncracked part were also determined. Moreover, the distributions of the mode-II and mode-III energy release rates along the crack front were calculated by the J-integral. The 3D finite element model of the plate was created providing reference data for the analytical model. The results show reasonably good agreement between the analytical and numerical results. Also, the present model eliminates the physical inconsistency of previous models and reveals that under mixed-mode II/III condition, the energy release rate is not contributed by the bending, twisting moments and shear forces at all.
机译:本研究采用二阶剪切变形理论来计算正交各向异性复合板的应力和能量释放率。利用新颖的双板系统,在双板系统的界面平面上施加适当的运动学约束。推导了系统的控制方程,并作为示例,分析了承受点力的简单支撑板。使用Levy板公式,通过包含四个不同区域的状态空间模型解决了板问题。还确定了未破裂部位的应力合力分布和层间应力。此外,通过J积分计算了沿裂纹前沿的II型和III型能量释放速率的分布。创建板的3D有限元模型,为分析模型提供参考数据。结果表明,分析结果和数值结果之间有相当好的一致性。而且,本模型消除了先前模型的物理不一致,并揭示了在混合模式II / III条件下,能量释放速率完全不受弯曲,扭曲力矩和剪切力的影响。

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