首页> 外文会议>ASME Pressure Vessels and Piping Division/K-PVP conference;PVP2010 >Effects of Scatter in Bolt Preload on the Sealing Performance of Pipe Flange Connections Under Internal Pressure(Case where the nominal diameter of pipe flange connection is 20')
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Effects of Scatter in Bolt Preload on the Sealing Performance of Pipe Flange Connections Under Internal Pressure(Case where the nominal diameter of pipe flange connection is 20')

机译:螺栓预紧力的散布对内压下管道法兰连接密封性能的影响(管道法兰连接的公称直径为20“的情况)

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It has been well known that a scatter in axial bolt forces in pipe flange connections tightened by the torque control method is substantial. In practice, pipe flange connections with the large nominal diameter tightened by the torque control method have been used in chemical industry, and so on. In our study, the characteristics of the connections with smaller nominal diameter (less than 8") have been shown. So, in an optimum design of pipe flange connections with gaskets, it is necessary to understand the characteristics of the pipe flange connections with large nominal diameter under internal pressure and the contact gasket stress distributions due to the scatter in axial bolt forces in the connections tightened by the torque control method. In this paper, the experimental and FE analyses were done to evaluate the effect of scatter in axial bolt force on the gasket stress distribution and the sealing performance of pipe flange connections with 20" nominal diameter. Two types of torque controlled assembling procedures, that is, ASME PCC-1 and JIS B 2251 procedures, are evaluated as an assembling procedures and an effect of scatter in the axial bolt forces obtained from the above methods is examined. Then, the effect of scatter in the axial bolt forces on the sealing performance of the connection is evaluated. The contact stress distribution in the larger pipe flange connection with 20" nominal diameter under internal pressure is analyzedusing FEM by taking into account a non-linearity and a hysteresis. The measured scatter in the axial bolt forces is applied in the FEM calculations.
机译:众所周知,通过转矩控制方法紧固的管法兰连接中的轴向螺栓力的分散是很大的。实际上,在化学工业中已使用通过转矩控制方法拧紧的具有大公称直径的管法兰连接。在我们的研究中,已显示了公称直径较小(小于8英寸)的连接的特性。因此,在带有垫圈的管道法兰连接的最佳设计中,有必要了解大直径的管道法兰连接的特性。扭矩控制方法紧固内螺纹时,轴向压力下的公称直径和接触垫圈应力分布是由于轴向螺栓力的分散引起的,本文通过实验和有限元分析来评估散射对轴向螺栓力的影响公称直径为20“的管道法兰连接的垫片应力分布和密封性能的影响。评估了两种类型的扭矩控制组装程序,即ASME PCC-1和JIS B 2251程序,并检查了通过上述方法获得的轴向螺栓力的分散影响。然后,评估轴向螺栓力中的散射对连接的密封性能的影响。分析了内部压力下公称直径为20“的较大管法兰连接处的接触应力分布 考虑到非线性和滞后性,可以使用FEM。在FEM计算中应用了测得的轴向螺栓力分散。

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