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A parametric study on the axisymmetric modes of vibration of multi-layered spherical shells with liquid cores of relevance to head impact modelling

机译:与头部冲击模型相关的多层液壳球形球壳轴对称振动的参数研究

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摘要

The free vibration of spheres composed of inviscid compressible liquid cores surrounded by spherical layers of linear elastic, homogeneous and isotropic materials are studied using three-dimensional elasticity equations. The exact three-dimensional equations are first derived for an N-layered sphere with a liquid core and an extensive parametric study is then presented for the first few natural frequencies of the spheroidal modes of vibration. Non-dimensional frequency parameters are compared with values obtained using lower order membrane and shell theories. It is shown that, for a remarkably wide range of geometric and material parameters, which encompasses values typical for the human head, the first ovalling mode of a fluid-filled shell behaves like a membrane filled with incompressible fluid and a simple closed-form expression is derived which closely approximates the natural frequencies obtained using the exact three-dimensional equations. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 12]
机译:使用三维弹性方程,研究了由无粘性可压缩液体核组成的,被线性弹性,均质和各向同性材料的球形层包围的球体的自由振动。首先为具有液芯的N层球体导出精确的三维方程,然后针对球面振动模态的前几个固有频率进行广泛的参数研究。将无量纲频率参数与使用低阶膜和壳理论获得的值进行比较。结果表明,对于非常广泛的几何和材料参数范围(包括人类头部的典型值),流体填充壳的第一个椭圆模式的行为就像填充了不可压缩流体的膜并具有简单的闭合形式得出近似于使用精确三维方程获得的固有频率的频率。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:12]

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