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首页> 外文期刊>Journal of Sandwich Structures and Materials >Free vibration response of sandwich cylindrical shells with functionally graded material face sheets resting on Pasternak foundation
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Free vibration response of sandwich cylindrical shells with functionally graded material face sheets resting on Pasternak foundation

机译:功能梯度材料面板置于Pasternak基础上的夹心圆柱壳的自由振动响应

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摘要

This paper focuses on the free vibration characteristics of functionally graded sandwich cylindrical shells resting on Pasternak elastic foundation. The free vibration analysis is based on three-dimensional elasticity theory and the natural frequencies are obtained by means of generalized differential quadrature method. The two-constituent functionally graded shell consists of ceramic and metal. These constituents are graded through the thickness according to a generalized power-law distribution with four parameters. The benefit of using the considered power-law distribution is to illustrate and present useful results arising from symmetric, asymmetric and classic profiles. A detailed parametric study is carried out in order to reveal the effects of different profiles of ceramic volume fraction, two-parameter elastic foundation modulus, different geometrical parameters such as the mid radius-to-thickness ratio, length-to-mean radius ratio and the thickness of face sheets on the vibrational characteristics of the functionally graded sandwich cylindrical shell.
机译:本文着重研究基于Pasternak弹性基础的功能梯度夹层圆柱壳的自由振动特性。自由振动分析基于三维弹性理论,并通过广义微分求积法获得固有频率。两成分功能分级的外壳由陶瓷和金属组成。根据具有四个参数的广义幂律分布,通过厚度对这些成分进行分级。使用考虑的幂律分布的好处是可以说明和呈现由对称,不对称和经典轮廓产生的有用结果。进行了详细的参数研究,以揭示不同的陶瓷体积分数分布,两参数弹性基础模量,不同的几何参数(例如中半径与厚度比,长度与平均半径比和面板厚度对功能梯度夹层圆柱壳振动特性的影响。

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