首页> 外文期刊>World Journal of Mechanics >Displacements, Strains, and Stresses Investigations in an Inhomogeneous Rotating Hollow Cylinder Made of Functionally Graded Materials under an Axisymmetric Radial Loading
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Displacements, Strains, and Stresses Investigations in an Inhomogeneous Rotating Hollow Cylinder Made of Functionally Graded Materials under an Axisymmetric Radial Loading

机译:轴对称径向载荷下功能梯度材料制成的不均匀旋转空心圆柱的位移,应变和应力研究

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In this paper, an analytical and numerical study of strain fields, stress fields and displacements in a rotating hollow cylinder, whose walls were completely made in Functionally Graded Materials (FGM), was conducted. We have considered the rotating hollow cylinder submitted to an asymmetric radial loading. It is assumed that, because of the functional graduation of the material, the mechanical properties such as Young elastic modulus and the density varies in the radial direction, in accordance with a the power law function. The inhomogeneity parameter was selected between -1 and 1. On the basis of the second law of Newton, Hooke’s law and the strain-stress relationship, we established the differential equation which governs the equilibrium for a rotating hollow cylinder. We found the analytical solution and compared to the numerical solution obtained by using the shooting method and the fourth order Runge-Kutta algorithm. The analytical and numerical results lead to the conclusion that the magnitude of the tangential stresses is greater than that of the radial stresses. The changes due to the graduation of FGM does not produce consistent variations in the distribution of radial stresses, but strongly affects the distribution of tangential stresses. The tangential stresses, tangential strains and displacements are much higher at the inner surface of the cylinder wall. The internal radial pressure intensely affects the radial stresses and the radial strain.
机译:本文对旋转空心圆柱体的应变场,应力场和位移进行了分析和数值研究,该空心圆柱体的壁完全由功能梯度材料(FGM)制成。我们已经考虑了旋转的空心圆柱体受到不对称的径向载荷。假定由于材料的功能分度,机械特性如杨氏弹性模量和密度根据幂律函数沿径向变化。在-1和1之间选择不均匀性参数。基于牛顿第二定律,胡克定律和应变-应力关系,我们建立了控制旋转空心圆柱体平衡的微分方程。我们找到了解析解,并与使用射击方法和四阶Runge-Kutta算法获得的数值解进行了比较。分析和数值结果得出结论,切向应力的大小大于径向应力的大小。由于FGM的分度而产生的变化不会在径向应力的分布中产生一致的变化,但是会严重影响切向应力的分布。汽缸壁内表面的切向应力,切向应变和位移要高得多。内部径向压力强烈影响径向应力和径向应变。

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