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Imperfection sensitivity of externally-pressurized, thin-walled, torispherical-head buckling

机译:外压薄壁圆球形屈曲的缺陷敏感性

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摘要

The bottom head in the residential electric water heater tank is an externally-pressurized, thin-walled, torispherical structure. In this paper, the buckling behavior of the bottom head was studied by experimental and finite element analysis (FEA) methods. The shapes of four randomly selected water heater tanks were measured by Computer Aided Inspection (CAI), and hydrostatic tests and strain measurements were performed. The buckling simulations of the tested tanks were carried out by finite element method, and the obtained results were in good agreement with the experimental data. Two parameters, contact imperfection ratio, R-imc, and geometry imperfection ratio, R-img,were used to quantitatively characterize the magnitudes of the main imperfections in the water heater tank manufacturing process. FEA models, including both contact and geometry imperfections, were used to investigate the buckling pressure of the bottom head. The results show that the geometry imperfection, within the range of ASME Code VIII-2 requirements, has a greater effect on the buckling pressure than the contact imperfection. The obtained curves of buckling pressure versus imperfections can provide guidance for water heater tank design and manufacture.
机译:家用电热水器水箱的底盖是外部受压的薄壁圆球形结构。本文通过实验和有限元分析(FEA)方法研究了底头的屈曲行为。通过计算机辅助检查(CAI)测量了四个随机选择的热水器水箱的形状,并进行了静水压力测试和应变测量。采用有限元方法对试验罐进行了屈曲模拟,所得结果与实验数据吻合良好。接触缺陷率R-imc和几何缺陷率R-img这两个参数用于定量表征热水器罐制造过程中主要缺陷的大小。 FEA模型(包括接触和几何缺陷)用于研究井底压头的屈曲压力。结果表明,在ASME规范VIII-2要求的范围内,几何缺陷对屈曲压力的影响大于接触缺陷。获得的屈曲压力与缺陷的关系曲线可为热水器水箱的设计和制造提供指导。

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