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Nonlinear thermal free vibration frequency analysis of delaminated shell panel using FEM

机译:基于有限元分析的分层壳板非线性热自由振动频率分析

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摘要

The current research reported the thermal free vibration characteristics of the debonded composite shell structure considering the large geometrical deformation. The delaminated composite panel structural model is derived using two different higher-order polynomial kinematics. The nonlinear structural geometry has been modeled via Green-Lagrange relations in conjunction with temperature loading. The separation between the adjacent layers of the composite has been incurred through a sub-laminate approach and the corresponding displacement continuity imposed at the boundaries (laminated and delaminated). Moreover, the isoparametric Lagrangian type of element (eighty-one and ninety degrees of freedom) is adopted for the discretization of the physical shell structure. The nonlinear governing equation of motion of heated shell (healthy and debonded) structure derived using Hamilton principle and the nonlinear frequency responses computed using the direct iterative technique for the computational purpose. The solution (numerical) stability and the accuracy have been established as a priori by solving a series of examples available in the literature. The conclusions regarding the model applicability for debonded (size, location and position) structural analysis represented with or without temperature effect.
机译:当前的研究报道了考虑到大的几何变形的脱粘复合壳结构的热自由振动特性。使用两个不同的高阶多项式运动学来推导分层的复合板结构模型。非线性结构的几何形状已通过格林-拉格朗日关系与温度载荷相结合进行了建模。复合材料的相邻层之间的分离是通过子层压方法以及在边界处(层压和分层)施加的相应位移连续性实现的。此外,采用等参拉格朗日类型的元素(八十一和九十个自由度)来离散化物理壳结构。利用汉密尔顿原理导出了加热壳(健康的和脱胶的)结构的非线性控制运动方程,并使用直接迭代技术计算了非线性频率响应,以进行计算。解决方案(数值)的稳定性和准确性是通过解决文献中提供的一系列示例来确定的。关于模型适用于有或没有温度效应的脱胶(尺寸,位置和位置)结构分析的结论。

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