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Time-dependent behavior of laminated functionally graded beams bonded by viscoelastic interlayer based on the elasticity theory

机译:基于弹性理论的粘弹性中间层粘合的层压功能分级梁的时间依赖性行为

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摘要

A two-dimensional (2-D) elasticity solution is developed to investigate the time-dependent response of laminated functionally graded beam with viscoelastic interlayer. The elastic modulus in each functionally graded layer varies through the thickness following an exponential function, and the mechanical property of each layer is described by the exact 2-D elasticity equations. Viscoelastic property in the interlayer is simulated by the Maxwell-Wiechert model, in which the memory effect of it is neglected. By virtue of the recursive matrix method, the solution of stress and deformation can be obtained efficiently. The comparison studies indicate that the relative error of the Euler-Bernoulli solution is slight for slender beam with small gradient factor, but it significantly increases as the beam thickness or the gradient factor grows. The finite element solution is close to the present one with large number of sub-layers in FE modeling and small gradient factor of FG layer, while the error of FE solution increases as the number of sub-layers decrease or the gradient factor increases. Besides, the influences of material parameters upon the time-dependent behavior and the optimization for the stress and deformation in the beam are discussed in detail.
机译:开发了二维(2-D)弹性溶液以研究层压功能梯度梁与粘弹性中间层的时间依赖性响应。每个功能梯度层中的弹性模量在指数函数之后的厚度变化,并且每层的机械性能由精确的2-D弹性方程描述。中间层中的粘弹性由Maxwell-Wiechert模型进行模拟,其中忽略了内存效果。借助于递归矩阵方法,可以有效地获得应力和变形的溶液。比较研究表明,具有小梯度因子的细长光束的euler-Bernoulli溶液的相对误差是轻微的,但随着光束厚度或梯度因子的增长,它显着增加。有限元溶液接近本发明的FP模型中的大量子层和FG层的小梯度因子,而Fe溶液的误差随着子层的数量而增加或梯度因子增加。此外,详细讨论了材料参数对时间依赖行为的影响和光束中应力和变形的优化。

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