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Thermoelastoplastic analysis of FGM rotating thick cylindrical pressure vessels in linear elastic-fully plastic condition

机译:FGM旋转厚圆柱压力容器线性弹塑性条件下的热弹塑性分析

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摘要

In this paper, exact solutions to purely elastic, partially plastic and fully plastic deformation and stresses of rotating functionally graded (FG) cylindrical pressure vessels under thermal load are obtained. The material properties are assumed to vary nonlinearly in the radial direction of the vessel whereas the Poisson's ratio due to slight variations in engineering materials is kept constant. To the best of the researchers' knowledge, in the literature, there is no study carried out exact solution for thermal stresses in elastic-plastic rotating FGM thick cylindrical pressure vessels. The novelty of the current work is to present a complete exact elastoplastic solution for thick cylindrical pressure vessels made of FGM under thermal loading, taking into account all stress regions. Assuming that the inner surface is exposed to an airstream, and that the outer surface is exposed to a uniform heat flux. The heat conduction equation for the one-dimensional problem in cylindrical coordinates is used to obtain temperature distribution in the vessel. Tresca's yield criterion and its associated flow rule are used to formulate six different plastic regions for an ideal plastic material. All these stages are studied in detail. It is shown that the thermo-elasto-plastic response of the functionally graded pressurized cylindrical vessel is affected notably by the radial variation of material properties.
机译:在本文中,获得了在热载荷下旋转的功能梯度(FG)圆柱压力容器的纯弹性,部分塑性和完全塑性变形和应力的精确解决方案。假定材料特性在容器的径向上非线性地变化,而由于工程材料的细微变化而引起的泊松比保持恒定。据研究人员所知,在文献中,没有针对弹性塑料旋转FGM厚圆柱压力容器中的热应力进行精确求解的研究。当前工作的新颖之处在于,在考虑到所有应力区域的情况下,为热负荷下的FGM制成的厚圆柱压力容器提供完整的精确弹塑性解决方案。假定内表面暴露于气流,并且外表面暴露于均匀的热通量。圆柱坐标中一维问题的热传导方程用于获得容器中的温度分布。 Tresca的屈服准则及其相关的流动规则用于为理想的塑料材料制定六个不同的塑料区域。所有这些阶段都进行了详细研究。结果表明,功能梯度加压圆柱形容器的热弹塑性响应特别受到材料特性的径向变化的影响。

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