Flexibility Factors for Branch Pipe Connections Subjected to In-Plane and Out-of-Plane Moments

Author:

Xue Liping1,Widera G. E. O.1,Sang Zhifu2

Affiliation:

1. Marquette University, Center for Joining and Manufacturing Assembly, P.O. Box 1881, Milwaukee, WI 53201-1881

2. Nanjing University of Technology, Nanjing, Jiangsu, 210009, People’s Republic of China

Abstract

Stress intensity factor and flexibility factor are important analysis parameters for branch pipe connections subjected to in-plane and out-of-plane moments. The calculation of stress intensity factors for a large range of unreinforced fabricated tees (0.333⩽d∕D⩽1, 20⩽D∕T⩽250, d∕D⩽t∕T⩽3) was performed by Widera and Wei [WRC Bulletin 497 2004] and empirical formulas were provided based upon a parametric finite element analysis employing four-node shell elements. The purpose of this paper is to extend the previous effort by Widera and Wei and calculate the in-plane and out-of-plane flexibility factors for the same range of geometric parameters. Similarly, empirical formulas for the determination of these flexibility factors are proposed. The results show that the lengths of the branch and run pipes as well as the geometric parameters (d∕D, D∕T and t∕T) have an effect on the calculation of flexibility factors.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

Reference18 articles.

1. Widera, G. E. O., and Wei, Z., 2004, “Large Diameter Ratio Shell Intersections, Part 3: Parametric Finite Element Analysis of Large Diameter Shell Intersections (External Loadings),” WRC Bulletin 497.

2. Rodabaugh, E. C., and Moore, S. E., 1979, “Stress Indices and Flexibility Factors for Nozzles in Pressure Vessels and Piping,” NUREG/CR-0788, ORNL/Sub-2913.

3. Rodabaugh, E. C., and Moore, S. E., 1977, “Flexibility Factors for Small (d∕D<1∕3) Branch Connections with External Loadings,” ORNL/Sub-2913-6.

4. Rodabaugh, E. C. , 1970, “Stress Indices for Small Branch Connections with External Loadings,” ORNL-TM-3014.

5. Stress Analysis of Nozzles in Cylindrical Vessels with External Load;Steele;J. Pressure Vessel Technol.

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