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首页> 外文期刊>Journal of Elasticity >On Pressurized Curvilinearly Orthotropic Circular Disk, Cylinder and Sphere Made of Radially Nonuniform Material
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On Pressurized Curvilinearly Orthotropic Circular Disk, Cylinder and Sphere Made of Radially Nonuniform Material

机译:径向非均匀材料制成的加压曲线正交各向异性圆盘,圆柱体和球体

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摘要

A unified analysis is presented for the elastic response of a pressurized cylindrically anisotropic hollow disk under assumed conditions of plane stress, or a hollow cylinder under plane strain conditions, and a spherically anisotropic hollow sphere, made of material which is nonuniform in the radial direction according to the power law relationship. The solution for a cylinder under generalized plane strain is also presented. Two parameters play a prominent role in the analysis: the material nonuniformity parameter m, and the parameter φ which accounts for the combined effects of material anisotropy, represented by the specified parameters (α, β, γ), and material nonuniformity, represented by the parameter m. The radial and circumferential stresses are the linear combinations of two power functions of the radial coordinate, whose exponents (n 1 and n 2) depend on the parameters m and φ. New light is added to the stress amplification and shielding under combined effects of curvilinear anisotropy and radial nonuniformity. Different loading combinations are considered, including the equal pressure at both boundaries, and the uniform pressure at the inner or the outer boundary. While the stress state for the equal pressure loading is uniform in the case of isotropic uniform material (m=0, φ=1), and for one particular radially nonuniform and anisotropic material, it is strongly nonuniform for a general anisotropic or nonuniform material. If the aspect ratio of the inner and outer radii decreases (small hole in a large disk/cylinder or sphere), the magnitude of the circumferential stress at the inner radius increases for n 10 (stress amplification), and decreases for n 10 (stress shielding). Both can be achieved by various combinations of the material parameters m, α, β, and γ. While the stress amplification in the case of a pressurized external boundary occurs readily, it occurs only exceptionally in the case of a pressurized internal boundary. The effects of material parameters on the displacement response are also analyzed. The approximate character of the plane stress solution of a pressurized thin disk is discussed and the results are compared with those obtained by numerical solution of the exact three-dimensional disk model.
机译:对在假定的平面应力条件下的加压圆柱各向异性空心盘或在平面应变条件下的空心圆柱体以及由在径向上不均匀的材料制成的球形各向异性空心球的弹性响应进行统一分析权力法关系。还介绍了圆柱体在广义平面应变下的解。在分析中,两个参数起着重要作用:材料不均匀性参数m和考虑材料各向异性的组合效应的参数φ(由指定参数(α,β,γ)表示)和材料不均匀性(由参数表示)。参数m。径向应力和圆周应力是径向坐标的两个幂函数的线性组合,其指数(n 1 和n 2 )取决于参数m和φ。在曲线各向异性和径向不均匀性共同作用下,新的光被添加到应力放大和屏蔽中。考虑了不同的载荷组合,包括两个边界处的压力相等,内部或外部边界处的压力均匀。尽管在各向同性均匀材料(m = 0,φ= 1)的情况下,等压载荷下的应力状态是均匀的,而对于一种特定的径向非均匀各向异性材料,对于一般的各向异性或非均匀材料来说,应力状态是非常不均匀的。如果内半径和外半径的长宽比减小(大的圆盘/圆柱体或球体中的小孔),则内半径处的圆周应力的大小会增加n 1 <0(应力屏蔽)。两者都可以通过材料参数m,α,β和γ的各种组合来实现。尽管在加压的外部边界的情况下应力放大容易发生,但是仅在加压的内部边界的情况下例外地发生。还分析了材料参数对位移响应的影响。讨论了加压薄盘平面应力解的近似特征,并将结果与​​通过精确三维盘模型的数值解获得的结果进行了比较。

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