Session: DA-10-01/11-01 Design of Bolted Joints (joint with CT) and CFD in Design and Analysis
Paper Number: 60398
Start Time: Wednesday, July 14, 2021, 08:00 PM
60398 - Sealing Evaluation of Tubesheet-Flanged Joint Under Internal Pressure and Non-Axisymmetry Thermal Loading
Tubesheet-flanged joint is usually used in some situations for its detachability, such as some small scale heat exchangers. This type of structure is convenient for maintenance. But leakage will become a major failure mode for flanged joint, especially for heat exchangers with multiple passes. Temperature gradient of different passes may cause non-axisymmetric thermal loading, stress and deformation distribution. In this paper, a detailed three dimensional finite element model of a tubesheet-flanged joint of an oil-water heat exchanger is modeled with a flexible graphite metallic spring wound gasket. This kind of gasket has a good compression resilience performance. The compression-unloading curve of gasket under different temperatures are used. The stress and temperature distribution of the joint and gaskets are simulated under preload condition, pressure condition and operation condition. The sealing performance are evaluated using gasket stress and flange stiffness criteria. The results show that the gasket compression stress distributions under preload and pressure condition are similar. Under operation condition, the gasket compression stress in local area decreases significantly and the gasket compression stress distribution along the circumferential direction becomes non-uniform because of different pass temperature. Under preload of half bolt yield strength, all assessment parameters are within the allowable limits.
Key Words: stress analysis, spring wound gasket, sealing evaluation, tubesheet-flanged joint
Presenting Author: Qianyu SHI Harbin Boiler Co., Ltd.
Authors:
Hui Tang Harbin Boiler Co., Ltd.Qianyu SHI Harbin Boiler Co., Ltd.
Qi Li Harbin Boiler Co., Ltd.
Zhijian Wang Harbin Boiler Co., Ltd.
Ming Ma Harbin Boiler Co., Ltd.
Sealing Evaluation of Tubesheet-Flanged Joint Under Internal Pressure and Non-Axisymmetry Thermal Loading
Category
Technical Paper Publication