首页> 外文期刊>Journal of Sound and Vibration >Refined hierarchical kinematics quasi-3D Ritz models for free vibration analysis of doubly curved FGM shells and sandwich shells with FGM core
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Refined hierarchical kinematics quasi-3D Ritz models for free vibration analysis of doubly curved FGM shells and sandwich shells with FGM core

机译:精细的分层运动学准3D Ritz模型,用于双弯曲FGM壳和具有FGM芯的夹心壳的自由振动分析

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In this paper, the Ritz minimum energy method, based on the use of the Principle of Virtual Displacements (PVD), is combined with refined Equivalent Single Layer (ESL) and Zig Zag (ZZ) shell models hierarchically generated by exploiting the use of Carrera's Unified Formulation (CUF), in order to engender the Hierarchical Trigonometric Ritz Formulation (HTRF). The HTRF is then employed to carry out the free vibration analysis of doubly curved shallow and deep functionally graded material (FGM) shells. The PVD is further used in conjunction with the Gauss theorem to derive the governing differential equations and related natural boundary conditions. Donnell-Mushtari's shallow shell- type equations are given as a particular case. Doubly curved FGM shells and doubly curved sandwich shells made up of isotropic face sheets and FGM core are investigated. The proposed shell models are widely assessed by comparison with the literature results. Two benchmarks are provided and the effects of significant parameters such as stacking sequence, boundary conditions, Iength-to-thickness ratio, radius-to-length ratio and volume fraction index on the circular frequency parameters and modal displacements are discussed.
机译:在本文中,基于虚拟位移原理(PVD)的Ritz最小能量方法与通过利用Carrera's分层生成的精细等效单层(ESL)和Zig Zag(ZZ)壳模型相结合统一配方(CUF),以产生分层三角Ritz配方(HTRF)。然后,将HTRF用于对双重弯曲的浅和深功能梯度材料(FGM)壳体进行自由振动分析。 PVD进一步与高斯定理结合使用,以导出控制微分方程和相关的自然边界条件。 Donnell-Mushtari的浅壳型方程式作为一种特殊情况给出。研究了由各向同性面板和FGM芯组成的双曲FGM壳和双曲夹心壳。通过与文献结果进行比较,对所提出的壳模型进行了广泛评估。提供了两个基准,并讨论了重要参数(如堆积顺序,边界条件,强度与厚度之比,半径与长度之比和体积分数指数)对圆形频率参数和模态位移的影响。

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