首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part E. Journal of Process Mechanical Engineering >Metal-to-metal full face taper-hub flanges: finite element model evaluation and preliminary plastic analysis results
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Metal-to-metal full face taper-hub flanges: finite element model evaluation and preliminary plastic analysis results

机译:金属对金属全锥面法兰:有限元模型评估和初步塑性分析结果

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摘要

The stress analysis of the flange problem is found to be sensitive to the way in which the component is modelled, particularly so when a finite element program is used to analyse the flange and bolt contact faces. The validity of a number of these finite element models are examined, by comparing the predicted maximum axial bending stress at the intersection of the taper-hub and the cylindrical vessel, with those measured on a large taper hub flange. It is found that a well-thought-through simplemodel can produce accurate results. In this type of flange it is considered that the magnitude of this stress is critical since, if the bending stress at this intersection reaches yield and subsequently a plastic hinge develops, then undue rotation of the flange could cause leakage. Using an appropriate finite element model, the development of plasticity is studied. from which it is shown that the use of a cylindrical shell yield surface provides a more realistic approach than the simple beam criterionwhich is unconservative despite its wide use in the existing pressure vessel standards.
机译:发现法兰问题的应力分析对零件建模的方式很敏感,尤其是在使用有限元程序分析法兰和螺栓接触面时更是如此。通过比较锥形轮毂和圆柱容器相交处的预测最大轴向弯曲应力与在大型锥形轮毂法兰上测得的最大轴向弯曲应力,检验了许多此类有限元模型的有效性。我们发现,经过深思熟虑的简单模型可以产生准确的结果。在这种类型的法兰中,认为该应力的大小至关重要,因为如果在此交点处的弯曲应力达到屈服并随后形成塑料铰链,则法兰的过度旋转会导致泄漏。使用适当的有限元模型,研究了可塑性的发展。从中可以看出,与简单的梁准则相比,使用圆柱形壳体屈服面提供了一种更现实的方法,尽管在现有压力容器标准中已广泛使用该准则,但该准则还是不保守的。

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