首页> 外文会议>ASME Pressure Vessels and Piping conference >AN ESTIMATION OF THE LOAD FACTOR AND SEALING PERFORMANCE EVALUATION FOR BOLTED PIPE FLANGE CONNECTIONS WITH GASKETS UNDER INTERNAL PRESSURE
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AN ESTIMATION OF THE LOAD FACTOR AND SEALING PERFORMANCE EVALUATION FOR BOLTED PIPE FLANGE CONNECTIONS WITH GASKETS UNDER INTERNAL PRESSURE

机译:内压下带螺栓的法兰连接法兰连接的载荷系数和密封性能评估

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In designing bolted pipe flange connections with gaskets, It is necessary to know the actual residual gasket contact stress in the connections under internal pressure. However, the actual reduced gasket stress in the connection has not been sufficiently estimated. In estimating the actual residual contact gasket stress more precisely, it is needed to know the load factor (the ratio of an increment in axial bolt force to the axial force due to the internal pressure per bolt) of the connections with gaskets. The new formula for obtaining the load factor was proposed by one of the authors using the tensile spring constant K_(tg) and the compressive spring constant K_(cg), while the spring constant of bolt-nut system is designated as K_t. In the present paper, for estimating the load factor of the connections with gaskets, the circular plate theory is applied for obtaining the values of K_(cg) and K_(tg) and then the load factor is obtained for pipe flanges specified JIS 10K flanges and ASME B 16.5 flanges. The obtained results are in a fairly good agreement with the FEM results. Using the obtained load factor for the connections, a design method is demonstrated taking account of the allowable leak rate. Using the residual contact gasket stress and the fundamental gasket leak rate, an amount of gas leakage is predicted. The predicted amount of gas leakage for 3" and 20" pipe flange connections is fairly coincided with the experimental results and the FEM results. In addition, a design method for determining the bolt preload for a give allowable real rate is demonstrated using the simple method for obtaining the load factor.
机译:在设计带有垫圈的螺栓连接的管道法兰连接时,必须知道内部压力下连接中实际的残余垫圈接触应力。然而,尚未充分估计连接中实际减小的垫圈应力。在更精确地估计实际的残余接触垫圈应力时,需要知道与垫圈连接的负载系数(轴向螺栓力的增量与由于每个螺栓的内部压力引起的轴向力的比值)。一位作者使用拉伸弹簧常数K_(tg)和压缩弹簧常数K_(cg)提出了一种获得载荷系数的新公式,而螺栓螺母系统的弹簧常数称为K_t。在本文中,为了估计与垫圈连接的负载系数,应用圆板理论来获得K_(cg)和K_(tg)的值,然后获得指定JIS 10K法兰的管道法兰的负载系数。和ASME B 16.5法兰。所得结果与有限元结果相当吻合。使用获得的连接负载系数,论证了允许泄漏率的设计方法。使用残余接触垫片应力和基本垫片泄漏率,可以预测气体泄漏量。 3“和20”管道法兰连接的预计气体泄漏量与实验结果和FEM结果完全吻合。另外,使用简单的获得载荷系数的方法论证了一种设计方法,该设计方法用于确定给定的允许实际比率的螺栓预载荷。

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