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THE STRESS ANALYSIS AND THE SEALING PERFORMANCE EVALUATION OF THE PIPE FLANGE CONECTION AT ELEVATED TEMPERATURE

机译:升高温度下管道法兰连接的应力分析及密封性能评价

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The authors have been evaluating the effects of the material properties of spiral wound gaskets (SWG) and the sealing performance of the pipe flange connections at elevated temperature with numerical and experimental analysis. The contact gasket stress increased by the mismatch of the thermal expansion between the gasket and flange/bolt as increasing the temperature and the sealing performance of the pipe flange connection was improved. The authors have also evaluated the effect of scatter in axial bolt force and revealed the assembly efficiency is not as high as expected in case of large nominal diameter pipe flange connection. Following the previous studies, the sealing performance of pipe flange connection and the assembly efficiency with SWG at elevated temperature were further evaluated with the experimental leakage test and 3-D FE analysis in this study. In order to make a precise evaluation, the experimentally obtained material properties of SWG were used in the analysis. The uniform axial bolt force tests and the scattered axial bolt force test were done to compare the sealing performance and the assembly efficiency evaluated by the ratio of the tightness parameter of each test at elevated temperature. Although the leak rate improved as increasing the temperature, the assembly efficiency decreased. The leakage based assembly efficiency was proposed according to the experimental results and numerical analyses.
机译:作者一直在评估螺旋缠绕垫圈(SWG)的材料特性的影响,以及在高温下的数值和实验分析中的管道法兰连接的密封性能。通过垫圈和法兰/螺栓之间的热膨胀的不匹配随着较高的温度和管道法兰连接的密封性能而增加,接触垫圈应力增加。作者还评估了轴向螺栓力散射的效果,并揭示了大量标称直径管法兰连接的情况下的装配效率高于预期。在先前的研究之后,通过实验泄漏试验和本研究中的3-D Fe分析进一步评估了管道法兰连接的密封性能和随着SWG的升高温度。为了进行精确评估,在分析中使用实验获得的SWG的材料性质。完成均匀的轴向螺栓力测试和散射的轴向螺栓力测试以比较密封性能和通过在升高温度下进行每个测试的密封性参数的比率评估的组装效率。虽然泄漏率随着温度的提高而改善,但是装配效率降低。根据实验结果和数值分析提出了基于泄漏的组装效率。

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