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Torsional vibration and stability of functionally graded orthotropic cylindrical shells on elastic foundations

机译:功能梯度正交异性圆柱壳在弹性基础上的扭转振动和稳定性

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摘要

In this study, the torsional vibration and stability problems of functionally graded (FG) orthotropic cylindrical shells in the elastic medium, using the Galerkin method was investigated. Pasternak model is used to describe the reaction of the elastic medium on the cylindrical shell. Mixed boundary conditions are considered. The material properties and density of the orthotropic cylindrical shell are assumed to vary exponentially in the thickness direction. The basic equations of the FG orthotropic cylindrical shell under the torsional load resting on the Pasternak-type elastic foundation are derived. The expressions for the critical torsional load and dimensionless torsional frequency parameter of the FG orthotropic cylindrical shell resting on elastic foundations are obtained. The effects of variations of shell parameters, the exponential factor characterizing the degree of material gradient, orthotropy, foundation stiffness and shear subgrade modulus of the foundation on the critical torsional load and dimensionless torsional frequency parameter are examined.
机译:在这项研究中,使用Galerkin方法研究了功能梯度(FG)正交异性圆柱壳在弹性介质中的扭转振动和稳定性问题。用Pasternak模型描述弹性介质在圆柱壳上的反应。考虑混合边界条件。假设正交各向异性圆柱壳的材料特性和密度在厚度方向上呈指数变化。推导了FG正交异性圆柱壳在帕斯捷尔纳克型弹性地基上承受扭转载荷的基本方程。得到了FG正交异性圆柱壳在弹性基础上的临界扭转载荷和无因次扭转频率参数的表达式。研究了壳参数的变化,表征材料梯度程度,正交性,地基刚度和地基的剪切地基模量的指数因子对临界扭转载荷和无量纲扭转频率参数的影响。

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