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Case Study of Nonlinear Buckling with Shape Distortion Due to Thermal Load

机译:热负荷引起的非线性屈曲的案例研究

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Thermal load is one of the most important design conditions that should be considered carefully in engineering practice. Most inner-pressure vessels suffer thermo-mechanical ratcheting or unacceptable plastic deformation under cyclic thermal stress produced by inside heat source and pressure-induced primary stress. However, thermal load is also a crucial factor for external-pressure vessels where the failure model of buckling should not be ignored. The effect of thermal load on buckling is not only thermal stress itself but also shape distortion due to thermal load. In some cases, the latter is more important. In this paper, an external-pressure thin-walled ellipsoidal head with heating jackets has been studied. The temperature of this structure is uniformly distributed along the thickness direction but changes alternately between hot and cold along the meridional direction, which will have a significant effect on buckling behavior of this typical structure. Buckling load is sensitive to initial defect and small deformation. Several comparative calculations based on nonlinear buckling analysis have been conducted and some laws are established. Finally, some useful conclusions and suggestions are proposed for engineering design.
机译:热负荷是应在工程实践中认真考虑的最重要的设计条件之一。最内的压力容器遭受由内部热源和压力诱导的初级应力产生的循环热应力下的热机械棘轮或不可接受的塑性变形。然而,热负荷也是外部压力容器,其中屈曲的故障模式不应该被忽视的关键因素。热负荷的上屈曲的效果是不仅热应力本身,而且还形失真由于热负荷。在某些情况下,后者更重要。在本文中,外部压力薄壁椭圆头与加热夹套进行了研究。这种结构的温度被均匀地沿厚度方向分布,而是沿着子午方向,这将会对本屈曲典型结构的行为显著效果冷热之间交替变化。屈曲载荷是初始缺陷和小变形敏感。基于非线性屈曲分析几个比较计算已经进行了一些法律成立。最后,一些有用的结论和建议提出了工程设计。

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