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Thermoelastic study of a functionally graded annular fin with variable thermal parameters using semiexact solution

机译:使用半精确溶液研究具有可变热参数的功能梯度环形鳍的热弹性研究

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In this paper, the thermoelastic behavior of a functionally graded material (FGM) annular fin is investigated. The material properties of the annular fin are assumed to vary radially. The heat transfer coefficient and internal heat generation are considered to be functions of temperature. A closed form solution of nonlinear heat transfer equation for the FGM fin is obtained using the homotopy perturbation method (HPM) which leads to nonuniform temperature distributions within the fin. The temperature field is then coupled with the classical theory of elasticity and the associated thermal stresses are derived analytically. For the correctness of the present closed form solution for the stress field, the results are compared with the ANSYS-based finite element method (FEM) solution. The present HPM-based closed form solution of the stress field exhibits a good agreement with the FEM results. The effect of various thermal parameters such as the thermogeometric parameter, conduction-radiation parameter, internal heat generation parameter, coefficient of variation of thermal conductivity, and the coefficient of thermal expansion on the thermal stresses are discussed. The results are presented in both nondimensional and dimensional form. The dimensional stress analysis discloses the suitability of FGM as the fin material in practical applications.
机译:本文研究了功能梯度材料(FGM)环形翅片的热弹性行为。假定环形翅片的材料性能沿径向变化。传热系数和内部发热被认为是温度的函数。使用同伦摄动法(HPM)获得FGM翅片非线性传热方程的闭式解,这将导致翅片内部温度分布不均匀。然后将温度场与经典弹性理论耦合,并通过分析得出相关的热应力。为了使当前闭合形式的应力场解决方案正确无误,将结果与基于ANSYS的有限元方法(FEM)解决方案进行了比较。当前基于HPM的应力场封闭形式解决方案与FEM结果显示出很好的一致性。讨论了各种热参数,例如热几何参数,传导辐射参数,内部生热参数,热导率变化系数和热膨胀系数对热应力的影响。结果以无量纲和量纲形式表示。尺寸应力分析揭示了FGM作为翅片材料在实际应用中的适用性。

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