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首页> 外文期刊>Materials & design >Elastic behavior of glass-like functionally graded infinite hollow cylinder under hydrostatic loads using finite element method
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Elastic behavior of glass-like functionally graded infinite hollow cylinder under hydrostatic loads using finite element method

机译:功能有限的玻璃状功能梯度无限空心圆柱体在静载荷下的弹性行为

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摘要

A glass-like (viscoelastic) functionally graded cylinder is studied by using finite element method to investigate the mechanical responses. A subroutine is developed by using ANSYS parametric design language (APDL) to simulate two nonlinearities, which are the variation of material properties with respect to time and position. The cylinder is made of two different viscoelastic materials, namely, pure material one at inner and pure material two at outer surfaces. The material properties are assumed to be presented by simple power law distribution and moreover, bulk and shear moduli are varying with respect to time using the kernel functions depicted regarding Prony series. It is shown that the hoop stresses take the same values at the mean radius (middle of the thickness) for different values of time and grading index. It is found that the radial stress decreases to certain values for specific grading index and then by increasing the grading index it increases to maximum value that related to pure material cylinder. It is shown that unlike the zero axial stress in pure material cylinders, it varies along the thickness from minimum to maximum at inner and outer surfaces, respectively. It is concluded that the viscoelastic functionally graded (VFG) materials play an important role in steady and transient response of hollow cylinder under hydrostatic load.
机译:利用有限元方法研究了玻璃状(粘弹性)功能梯度圆柱,以研究其机械响应。通过使用ANSYS参数化设计语言(APDL)来开发一个子例程,以模拟两个非线性,即材料特性随时间和位置的变化。该圆柱体由两种不同的粘弹性材料制成,即,内表面为纯材料一种,外表面为两种纯材料。假定材料特性通过简单的幂定律分布呈现,此外,使用关于Prony系列描述的核函数,体积和剪切模量随时间变化。结果表明,对于不同的时间和渐变指数,环向应力在平均半径(厚度的中间)处取相同的值。发现对于特定的分级指数,径向应力减小到某些值,然后通过增加分级指数,其增加到与纯材料圆柱体有关的最大值。结果表明,与纯材料圆柱体中的零轴向应力不同,它沿厚度方向分别从内表面和外表面的最小值变化到最大值。得出的结论是,粘弹性功能梯度(VFG)材料在静水载荷下对空心圆柱的稳态和瞬态响应中起着重要作用。

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