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FINITE ELEMENT ANALYSIS OF FLANGE JOINT WITH SINGLE AND TWIN GASKETS UNDER EXTERNAL BENDING LOAD

机译:外部弯曲载荷作用下单,双垫片法兰接头的有限元分析

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Gasketed flange joint is a vital component in pressure vessels and piping systems. Flange joint is usually subjected to bending load due to expansion, wind load, self-weight, etc. Most of the flange design methods use equivalent pressure to include the effect of external bending loads. It becomes complex when the joint is subjected to bending load at elevated temperatures, due to the nonlinear behavior of gasket material. In the present work, performance of the flange joint has been studied under external bending load at elevated temperatures. A 3D finite element model is developed, considering the nonlinearities in the joint due to gasket material and contact between its members along with their temperature dependent material properties. The performance of the joint under different bolt preloads, internal fluid pressures and temperatures is studied. Flange joint with two gaskets (twin gasketed joint) placed beside each other radially, is also analyzed under external bending moment. The maximum allowable bending moments at different internal temperatures, for single and twin gasketed joints with spiral wound gasket are arrived.
机译:垫片法兰接头是压力容器和管道系统中的重要组成部分。法兰接头通常会由于膨胀,风荷载,自重等而承受弯曲负荷。大多数法兰设计方法都使用等效压力来包含外部弯曲负荷的影响。由于垫片材料的非线性行为,当接头在高温下承受弯曲载荷时,它变得很复杂。在目前的工作中,已经研究了法兰接头在高温下的外部弯曲载荷下的性能。考虑到密封垫材料和其构件之间的接触以及其温度相关的材料属性所引起的接头中的非线性,开发了一个3D有限元模型。研究了不同螺栓预紧力,内部流体压力和温度下的接头性能。在径向弯曲的情况下,还分析了两个径向径向并排放置的垫圈(双垫圈接头)的法兰接头。对于带有螺旋缠绕垫片的单垫片和双垫片接头,得出了在不同内部温度下的最大允许弯矩。

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