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首页> 外文期刊>Journal of Elasticity >A Pressurized Functionally Graded Hollow Cylinder with Arbitrarily Varying Material Properties
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A Pressurized Functionally Graded Hollow Cylinder with Arbitrarily Varying Material Properties

机译:一种加压功能渐进的空心圆柱,具有任意改变的材料特性

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摘要

The elastic analysis of a pressurized functionally graded material (FGM) annulus or tube is made in this paper. Different from existing studies, this study deals with an axisymmetrical FGM hollow cylinder or disk with arbitrarily varying material properties. A simple and efficient approach is suggested, which reduces the associated problem to solving a Fredholm integral equation. The resulting equation is approximately solved by expanding the solution as series of Legendre polynomials. The stresses and displacements can be represented in terms of the solution to the equation. For radius-dependent Young's modulus, numerical results of the distribution of the radial and circumferential stresses are presented graphically. Our results indicate that change in the gradient of the FGM tube does not produce a substantial variation of the radial stress, but strongly affects the distribution of the hoop stress. In particular, the hoop stress may reach its maximum at an internal position or at the outer surface when the tube is internally pressurized. The results obtained are helpful in designing FGM cylindrical vessels to prevent failure.
机译:本文制备了加压功能梯度材料(FGM)环或管的弹性分析。与现有研究不同,本研究涉及轴对称FGM中空圆柱体或具有任意不同材料特性的磁盘。提出了一种简单有效的方法,这减少了解决Fredholm积分方程的相关问题。通过将解决方案扩展为一系列legendre多项式来近似求解所得到的等式。应力和位移可以根据对等式的解决方案来表示。对于依赖性缺点的杨氏模量,以图形方式呈现径向和周向应力分布的数值结果。我们的结果表明,FGM管的梯度的变化不会产生径向应力的显着变化,但强烈影响箍应力的分布。特别地,当管内部加压时,箍应力可以在内部位置或外表面处达到其最大值。获得的结果有助于设计FGM圆柱形容器以防止故障。

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