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A Practical Approach for Thermal Stress of Functionally Graded Annular Fin

机译:功能渐变环形翅片的热应力的实用方法

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摘要

A practical approach is implemented for thermal stresses in an axisymmetric thin annular fin, made of functionally graded material. All material properties of the annular fin are assumed to be graded along the fin radius as a power-law function. A linear differential equation is derived to be the governing equation. Analytical solution of such equations except for simple grading functions is difficult or maybe not possible to implement for each parameter, so the numerical approach becomes inevitable. The novelty of the present study is to introduce the effects of mechanical and thermal properties on the thermal stress distribution of functionally graded annular fin with the help of a complementary function method (CFM). The complementary functions method will be incorporated into the analysis to convert the problem to an initial value problem, which can be easily solved by, for instance, Runge-Kutta methods with great accuracy. The results are validated for isotropic and homogeneous annular fin.
机译:一种实用的方法对于由功能梯度材料制成的轴对称薄环形翅片中的热应力。假设环形翅片的所有材料特性沿翅片半径作为功率法函数分级。线性微分方程导出为控制方程。除了简单的分级功能之外的这种等式的分析解决方案是困难的,也可能无法为每个参数实现,因此数值方法变得不可避免。本研究的新颖性是在互补功能法(CFM)的帮助下引入机械和热性能对功能梯度环形翅片的热应力分布的影响。互补函数方法将结合到分析中以将问题转换为初始值问题,这可以通过例如具有极高精度的径格-Kutta方法容易地解决。结果针对各向同性和均匀环形鳍片验证。

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