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Stress Analysis and Parameter Optimization of an FGM Pressure Vessel Subjected to Thermo-Mechanical Loadings

机译:热机械载荷对FGM压力容器的应力分析和参数优化

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The thermo-mechanical behavior and material design of functionally graded materials (FGMs) has been gaining increasing attention in the past two decades. However, little work can obtain the exact solution of FGM vessel consisting of a finite length hollow cylinder and two closed ends due to the difficult in calculating the axial strain. By constructing an exponentially function determining the material properties and based on the steady state thermo-elastic theory and Euler-Cauchy formula, the closed-form analytical solutions of the thermo-mechanical stresses for the FGM vessel subjected to an internal pressure and a thermal load were firstly established taking the effect of closed ends into consideration. And then, a numerical model of the FGM pressure vessel was developed using the finite element (FE) method for validating the analytical solution. Lastly, a double-variable optimization model was proposed for determining the optimal material distribution of the FGM pressure vessel. The results demonstrated the accuracy and efficiency of the proposed stress formulations and optimization model in this paper, which would be helpful for better understanding and scientific design of FGM vessel or related structures.
机译:在过去的二十年中,功能分级材料(FGMS)的热电机动行为和材料设计在越来越多的关注。然而,由于计算轴向菌株难以实现,小的工作可以获得由有限长度的空心圆柱体和两个封闭端组成的FGM容器的精确解。通过构建确定材料特性并基于稳态热弹性理论和欧拉 - CAUCHY公式的指数函数,对FGM容器进行内压和热负荷的FGM容器的热机械应力的闭合形式的分析溶液首先建立了封闭端的效果考虑。然后,使用用于验证分析溶液的有限元(Fe)方法开发FGM压力容器的数值模型。最后,提出了一种用于确定FGM压力容器的最佳材料分布的双可变优化模型。结果表明了本文提出的应力制剂和优化模型的准确性和效率,这将有助于更好地理解和科学船舶或相关结构的科学设计。

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