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Analytical solution to thermal loading and unloading of a cylinder subjected to periodic surface heating

机译:周期性表面加热的气缸的热加载和卸载的解析解

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摘要

An attempt is made to develop an analytical model for the prediction of thermal loading into a partially plastic state and unloading into an elastic state of a cylinder subjected to periodic boundary condition. The uncoupled theory of thermoelasticity is used as the cylinder is heated or cooled slowly. Transient temperature distribution in the cylinder is obtained by the use of Duhamel's theorem. It is assumed that the ends of the cylinder are free and hence a state of generalized plane strain is operative in the axial direction. An elastic and two plastic regions with different mathematical forms of Tresca's yield condition are formulated and solved analytically. Linearly hardening material behavior is assumed. Sudden unloading approximation is used to model unloading into a plastically predeformed elastic region. The model is verified in comparison to a purely numerical solution and by observing satisfaction of equilibrium, interface, and boundary conditions in every stage of deformation.
机译:尝试开发一种分析模型,以预测经受周期性边界条件的圆柱体的热负荷为部分塑性状态和卸载为弹性状态。当圆柱体缓慢加热或冷却时,采用热弹性的非耦合理论。圆柱中的瞬态温度分布是通过使用Duhamel定理获得的。假设圆柱体的端部是自由的,因此,广义的平面应变状态在轴向上起作用。制定并解析求解具有不同数学形式的Tresca屈服条件的弹性和两个塑性区域。假定材料会线性硬化。突然卸载近似值用于对卸载到塑性预变形弹性区域中的模型进行建模。与纯数值解相比,并通过观察变形各个阶段的平衡,界面和边界条件的满足,对模型进行了验证。

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