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Stress Analysis of Thick Spherical Pressure Vessel Composed of Transversely Isotropic Functionally Graded Incompressible Hyperelastic Materials

机译:横向各向同性功能梯度不可压缩超弹性材料组成的厚球形压力容器的应力分析

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Abstract In this paper closed form analytical solution for stress components of thick spherical shell made of transversely isotropic functionally graded hyperelastic material subjected to internal and external pressure is presented. Reinforced neo-Hookean strain energy function with variable material parameters is used to model pressure vessel material. The material constants of strain energy function are graded along the radial direction based on a power law function and have been calculated from experimental data by using Levenberg-Marquardt nonlinear regression method. Stress components and stretches of pressure vessel have been obtained for centrally symmetric condition. Following this, profiles of extension ratio, deformed radius of sphere, normalized radial stress and normalized circumferential stress 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 structure parameter have a significant influence on the displacement, stretch and stresses distribution along the radial direction.
机译:摘要提出了由横观各向同性功能梯度超弹性材料制成的厚球壳承受内外压力的闭合形式解析解。具有可变材料参数的增强型新霍克应变能函数用于建模压力容器材料。应变能函数的材料常数基于幂律函数沿径向进行分级,并已使用Levenberg-Marquardt非线性回归方法根据实验数据进行了计算。对于中心对称条件,已获得压力容器的应力分量和拉伸。在此之后,针对不同的材料非均质性参数(m),绘制了未变形构造中的延伸率,球体变形半径,归一化径向应力和归一化周向应力的分布图,它们是球体半径的函数。所得结果表明,FGMs结构参数的不均匀性对沿径向的位移,拉伸和应力分布有重要影响。

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