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Parametric Equation of Stress Concentration Factor for Circular X-Joints Under Axial Loads 被引量:1

Parametric Equation of Stress Concentration Factor for Circular X-Joints Under Axial Loads
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摘要 In engineering practice, tubular X-joints have been widely used in offshore structures. The fatigue failure of tubular X-joints in offshore engineering is mainly caused by axial tensile stress. In this study, the stress concentration factor distribution along the weld toe in the hot spot stress region for tubular X-joints subject to axial loads have been analyzed by use of finite element method. Through numerical analysis, it has been found that the peak stress concentration factor is located at the saddle position. Thereafter, 80 models have been analyzed, and the effect of the geometric parameters of a tubular X-joint on the stress concentration factor has been investigated. Based on the experimental values of the numerical stress concentration factor, a parametric equation to calculate the stress concentration factor of tubular X-joints has been proposed. The accuracy of this equation has been verified against the requirement of the Fatigue Guidance Review Panel, and the proposed equation is found capable of producing reasonably accurate stress concentration factor values for tubular X-joints subject to axial loads. In engineering practice, tubular X-joints have been widely used in offshore structures. The fatigue failure of tubular X-joints in offshore engineering is mainly caused by axial tensile stress. In this study, the stress concentration factor distribution along the weld toe in the hot spot stress region for tubular X-joints subject to axial loads have been analyzed by use of finite element method. Through numerical analysis, it has been found that the peak stress concentration factor is located at the saddle position. Thereafter, 80 models have been analyzed, and the effect of the geometric parameters of a tubular X-joint on the stress concentration factor has been investigated. Based on the experimental values of the numerical stress concentration factor, a parametric equation to calculate the stress concentration factor of tubular X-joints has been proposed. The accuracy of this equation has been verified against the requirement of the Fatigue Guidance Review Panel, and the proposed equation is found capable of producing reasonably accurate stress concentration factor values for tubular X-joints subject to axial loads.
出处 《China Ocean Engineering》 SCIE EI 2007年第1期51-64,共14页 中国海洋工程(英文版)
基金 The research work was financially supported by the National Natural Scientice Foundation of China(Grant No.10142001) by the Shandong Provincial Natural Scientice Foundation(Grant No.Y2006F46)
关键词 stress concentration factor SCF S-N curves hot spot stress range HSSR tubular X-joints axialloads parametric equation stress concentration factor ( SCF ) S-N curves hot spot stress range ( HSSR ) tubular X-joints axialloads parametric equation
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  • 1Chang E, Dover W D. Parametric equations to predict stress distribution along the intersection of tubular Y and T-joints[J]. Inter. national Journal of Fatigue, 1999,21 (4) :361 - 381
  • 2Van Wingerde A M, Packer J A, Wardenier J. Simplified SCF formulae and graphs for CHS and RHS K and KK-conneetions[ J]. Journal of Constructional Steel Research, 2001,57:221 - 252
  • 3American Petroleum Institute. Recommended Practice for Planning, Designing and Constructing Fixed Offshore Platforms [M]. American Petroleum Institute, Washington,DC,API,1993
  • 4Zhao X L, et al. Design Guide for Circular and Rectangular Hollow Sections Joints Under Fatigue Loading[M]. CIDECT, Koln : TUV-Verlag, 2000
  • 5Gulati K C, Wang W J and Kan D K Y. An analytical study of stress concentration effects in multibrace joints under combined loading[ A]. Proceedings of the 14th Annual Offshore Technology Conference [C], Paper OTC 4407, Houston, USA, 1982 : 337 - 355
  • 6秦飞,GHO W M,FUNG TC,Soh C K.完全叠接管节点在低周循环载荷下的破坏模式研究[J].海洋工程,2002,20(1):29-35. 被引量:7

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