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Bending solution of third-order orthotropic Reddy plates with asymmetric interfacial crack

机译:具有不对称界面裂纹的三阶正交各向异性正交Reddy板的弯曲解

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摘要

In this paper Reddy’s third-order shear deformable plate theory is applied to asymmetrically delaminated orthotropic composite plates under antiplane–inplane shear fracture mode. A double-plate system is utilized to capture the mechanical behavior of the uncracked plate portion. An assumed displacement field is used and modified in order to satisfy the traction-free conditions at the top and bottom plate boundaries. Moreover, the system of exact kinematic conditions was also implemented into the novel plate model. An important improvement of this work compared to previous papers is the continuity condition of the shear strains at the interface of the double-plate system. Applying these conditions it is shown that the nineteen parameters of the third-order displacement field can be reduced to nine. Using the simplified displacement field the governing equations are derived, as well. The solution of a simply-supported delaminated plate is presented using the state-space model and the displacement, strain and stress fields are determined, respectively. The energy release rate and mode mixity distributions are calculated using the 3D J-integral. The analytical results are compared to those by finite element computations and it is concluded that the present model is the most accurate one among the previous plate theory-based approaches.
机译:本文将Reddy的三阶剪切可变形板理论应用于反平面-平面剪切断裂模式下的非对称分层正交异性复合板。利用双板系统来捕获未破裂的板部分的机械性能。为了满足在顶板和底板边界处的无牵引条件,使用并修改了假定的位移场。此外,精确的运动条件系统也被应用到新型板模型中。与以前的论文相比,这项工作的一个重要改进是双板系统界面处的剪切应变的连续性条件。应用这些条件表明,三阶位移场的十九个参数可以减少到九个。使用简化的位移场,还可以导出控制方程。利用状态空间模型给出了简单支撑的分层板的解,并确定了位移,应变和应力场。使用3D J积分计算能量释放速率和模式混合度分布。将分析结果与有限元计算结果进行了比较,得出的结论是,该模型是以前基于板理论的方法中最精确的模型。

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    Szekrényes András;

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  • 年度 2014
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