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首页> 外文期刊>International Journal of Mechanical Sciences >Stress analysis of thick pressure vessel composed of functionally graded incompressible hyperelastic materials
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Stress analysis of thick pressure vessel composed of functionally graded incompressible hyperelastic materials

机译:功能梯度不可压缩超弹性材料组成的厚压力容器的应力分析

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摘要

The present paper develops stress analysis of functionally graded hyperelastic thick spherical shell subjected to internal and external pressure. Hyperelastic behavior is modeled by using modified neo-Hookean strain energy function with variable material parameters. The material constants of strain energy function are graded along the radial direction based on a power law function. Material inhomogeneity parameter (m) is a power in the mentioned power law function. Material constant of strain energy function calculated from experimental data by using Levenberg-Marquardt nonlinear regression method. Stress components and stretches of spherical shell have been obtained for axisymmetric radial condition. Following this, profiles of extension ratio and stress components are plotted as a function of radius of sphere in the undeformed configuration for different material inhomogeneity parameter (m). The obtained results show that the inhomogeneity properties of FGMs have a significant influence on the displacement, stretch and stresses distribution along the radial direction. Sensitivity of stress components and displacement field to applied pressure and outer to inner radius ratio of vessel (structure parameter) are also investigated and leads to the fact that outer to inner radius ratio has a great effect on the deformation field and stress components and is a useful parameter from a design point of view which can be tailored to specific applications to control the stress. Thus with selecting a proper m value and structure parameter (B/A), engineers can design a specific FGM hollow sphere that can meet some special requirements. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文研究了功能梯度超弹性厚球壳在内部和外部压力作用下的应力分析。超弹性行为是通过使用具有可变材料参数的修改后的新霍克应变能函数建模的。应变能函数的材料常数基于幂律函数沿径向方向分级。材料不均匀性参数(m)是上述幂律函数中的幂。使用Levenberg-Marquardt非线性回归方法根据实验数据计算出的应变能函数的材料常数。对于轴对称的径向条件,已经获得了球壳的应力分量和拉伸。在此之后,针对不同的材料非均质性参数(m),在未变形的构型中,拉伸比和应力分量的分布图是球半径的函数。所得结果表明,FGM的不均匀性对沿径向的位移,拉伸和应力分布有重要影响。还研究了应力分量和位移场对施加压力的敏感度以及容器的内外半径比(结构参数),并得出这样的事实,即内外半径比对变形场和应力分量有很大影响,并且是从设计角度来看有用的参数,可以针对特定应用进行调整以控制压力。因此,通过选择适当的m值和结构参数(B / A),工程师可以设计出满足某些特殊要求的特定FGM空心球。 (C)2015 Elsevier Ltd.保留所有权利。

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