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Size-dependent vibrations of thermally pre/post-buckled FG porous micro-tubes based on modified couple stress theory

机译:基于改性夫妇应力理论的热前/后弯曲FG多孔微管的尺寸依赖性振动

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摘要

Based on the modified couple stress theory, an analytical approach is presented to study vibrations of thermally pre/post-buckled functionally graded (FG) tubes. The case of simply supported FG micro-tubes with uniform distributed porosity surrounded by nonlinear elastic medium in uniform temperature field is analyzed. Thermo-mechanical properties are functionally graded across the radius of cross-section of the tube by means of a power law function. The traction free boundary conditions on the inner and outer surfaces of the structure are satisfied. Basic formulations are constructed using the higher-order shear deformation tube theory and the von Korman type of nonlinear strain-displacement relationships. The governing equations of motion are derived using the Hamilton principle. The dimensionless equations of motion are solved analytically by employing the two-step perturbation technique and the Galerkin procedure. An explicit closed-form solution is obtained to analyze the size-dependent linear and nonlinear free vibrations of micro-tubes in thermal environment. The numerical results are verified by comparison with the existing data in literature for tubes without couple stress effect. Novel numerical results are revealed in the parametric studies to show the large amplitude vibration responses of thermally pre/post-buckled FG porous micro-tubes. The effects of microstructural length scale parameter, functionally graded patterns, porosity distribution parameter, nonlinear elastic foundation, temperature dependence, and geometrical properties of the structure are investigated.
机译:基于修改的夫妻应力理论,提出了一种分析方法,以研究热前/后弯曲功能梯度(FG)管的振动。分析了简单地支持的FG微管,其具有均匀温度场中的非线性弹性介质围绕的均匀分布孔隙率。通过电力法函数在管的横截面的横截面的横截面上具有功能渐变。满足结构的内表面和外表面上的牵引自由边界条件。基本配方采用高阶剪切变形管理论和冯·克洛纳类型的非线性菌株 - 位移关系构建。使用汉密尔顿原则导出动作的控制方程。通过采用双步扰动技术和Galerkin程序,分析了运动的无量纲方程。获得明确的闭合溶液,以分析热环境中微管的尺寸依赖性线性和非线性自由振动。通过与没有夫妇应力效应的管子中的文献中的现有数据进行验证,验证数值结果。参数研究中揭示了新颖的数值结果,以显示出热前/后弯曲的FG多孔微管的大振幅振动响应。研究了微观结构长度参数,功能梯度图案,孔隙度分布参数,非线性弹性基础,温度依赖性和结构的几何特性。

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