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Comparative Study of Flange-to-Seal Contact Couplings With Bolt Relaxation Under Creep Condition

机译:蠕变条件下带法兰松弛的法兰-密封接触联轴器的比较研究

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摘要

Future coal-fired steam turbines promise increased efficiency and low emissions. However, this comes at the expense of increased thermal load from higher inlet steam temperatures and pressures leading to severe creep that significantly influences the sealing behavior and high temperature strength of bolted flange-seal couplings. Flanges with different thicknesses were employed for a comparative study. The important stress/ creep values in the flanges and U-type seals had been obtained for variations in flange thickness and bolt relaxation while maintaining other leading parameters constant. The variation of contact stresses due to creep deformation plays an important role in achieving a leak proof sealing. In this paper, a two-dimensional finite element analysis of bolted flange-seal couplings has been carried out by taking the relaxation of bolt stress under full-loading turbine service. The creep strength of flanges and U-type seals are investigated by Cocks-Ashby (C-A) equivalent strain method. The multiaxial state of stresses is considered in this method by using C-A multiaxial coefficient. According to ASME allowable creep limit, the C-A equivalent strains of three flange-seal couplings are evaluated and compared. Furthermore, based on the results of contact stresses, the creep behavior of U-type seals is analyzed varying flange thickness. Finally, analysis shows that the thinner flange-seal coupling has larger long-term contact stress, while the U-type seal with the thicker flange has the least creep strength.
机译:未来的燃煤蒸汽轮机有望提高效率并降低排放。但是,这是以较高的入口蒸汽温度和压力导致的热负荷增加为代价的,从而导致严重的蠕变,从而严重影响螺栓连接的法兰密封件的密封性能和高温强度。使用不同厚度的法兰进行比较研究。已获得了法兰和U型密封件中重要的应力/蠕变值,以适应法兰厚度和螺栓松弛的变化,同时保持其他主要参数不变。由蠕变引起的接触应力变化在实现防漏密封中起着重要作用。在本文中,通过考虑在满负荷涡轮机使用中螺栓应力的松弛,对螺栓法兰-密封件联轴器进行了二维有限元分析。通过Cocks-Ashby(C-A)等效应变方法研究了法兰和U型密封的蠕变强度。该方法通过使用C-A多轴系数来考虑应力的多轴状态。根据ASME允许的蠕变极限,评估并比较了三个法兰密封接头的C-A等效应变。此外,根据接触应力的结果,分析了不同法兰厚度的U型密封件的蠕变行为。最后,分析表明,较薄的法兰密封件具有较大的长期接触应力,而带有较厚法兰的U型密封件的蠕变强度最小。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2014年第7期|072504.1-072504.8|共8页
  • 作者单位

    Key Lab of Education Ministry for Power Machinery and Engineering, School of Mechanical Engineering,Shanghai Jiao Tong University,Shanghai 200240, China College of Mechanical Engineering, Zhejian University of Techology, Hangzhou 310014, China;

    Key Lab of Education Ministry for Power Machinery and Engineering, School of Mechanical Engineering, Shanghai Jiao Tong University, Shanghai 200240, China Gas Turbine Research Institute, Shanghai Jiao Tong University, Shanghai 200240, China;

    Key Lab of Education Ministry for Power Machinery and Engineering, School of Mechanical Engineering, Shanghai Jiao Tong University, Shanghai 200240, China Gas Turbine Research Institute, Shanghai Jiao Tong University, Shanghai 200240, China;

    Design & Research Institute, Shanghai Electric Power Generation Equipment Co., Ltd., Shanghai 200240, China;

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  • 入库时间 2022-08-18 00:21:01

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