非均匀空心圆柱一维瞬态热应力问题及其材料组合优化

Y. Tanigawa, Naoki Oka, T. Akai, Ryuusuke Kawamura
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引用次数: 38

摘要

本文从理论上对具有任意分布和连续变化的材料性能(如功能梯度材料)的非均匀空心圆柱的一维瞬态热应力问题进行了评价。采用层合空心圆柱模型的解析方法,近似导出了圆柱的解析温度解。利用Airy应力函数法,推导了无牵引力力学条件下的热应力分量。以氧化锆(zro2)和钛合金(Ti-6Al-4V)组成的空心圆柱体为算例。优化(即。(最小化)热应力分布,进行数值计算,并考虑到材料性能对温度依赖性的影响,确定最佳材料成分。考虑筒体厚度的变化、周围介质的温升以及内外表面的相对换热系数,得到了材料成分的最优值。计算的数值数据用图形表示。
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One-Dimensional Transient Thermal Stress Problem for Nonhomogeneous Hollow Circular Cylinder and Its Optimization of Material Composition for Thermal Stress Relaxation
In this study, the one-dimensional transient thermal stress problem of a nonhomogeneous hollow circular cylinder with arbitrarily distributed and continuously varied material properties, such as functionally graded materials, is evaluated theoretically. Using the analytical procedure of a laminated hollow circular cylinder model, the analytical temperature solution for the cylinder is derived approximately. Furthermore, making use of Airy's stress function method, the thermal stress components are formulated under the mechanical condition of being traction-free. As a numerical example, a hollow circular cylinder composed of zirconium oxide (ZrO 2 ) and titanium alloy (Ti-6Al-4V) is considered. To optimize(i.e., minimize) the thermal stress distribution, numerical calculations are carried out, and the optimum material composition is determined taking into account the effect of the temperaturedependence of the material properties. Furthermore, taking into account the variation in the thickness of the cylinder, the temperature rise of the surrounding medium, and the relative heat transfer coefficients on the inner and outer surfaces, the optimum values of the material composition are obtained. Numerical data for the calculations are shown graphically.
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