Load Distribution Between Threads in Threaded Connections

Author:

Grewal A. S.1,Sabbaghian M.2

Affiliation:

1. Light Truck VC, Ford Motor Company, CAE Technology, Livonia, MI

2. Department of Mechanical Engineering, Louisiana State University, 2508 CEBA, Baton Rouge, LA 70803-6413

Abstract

Threaded connections are commonly employed in axial load-bearing equipment and pressure vessel components. There are a number of parameters that affect the load distribution between the threads and the stress concentration at the thread roots. These include the thread form, the thickness of walls supporting the threads, the pitch of threads, number of threads engaged, and the boundary conditions. In this paper, the influence of these parameters on the load distribution between threads is reported. Load distribution analyses in threaded connections is performed by analytical and by finite element methods. Square and buttress-type threads have been considered. Three-dimensional nonlinear finite element analyses on threaded connections have been performed using MSC/NASTRAN finite element code. The effect of clearance between the nonmating faces of threads as well as the presence of a flexible media between the mating faces of threads are investigated.

Publisher

ASME International

Subject

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

Reference16 articles.

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2. Burn D. J. , ChaabanA., MrazG., and NeubardP. D., 1987, “Load stress and Fatigue Analysis of Threaded end Closure” High Pressure Engineering and Technique, ASME PVP-Vol. 125, pp. 63–71.

3. Chaaban, A., and Jutras, M., 1988, “Static and Fatigue Analysis of Buttress Threads of Thick Walled Vessel Using the Finite Element Methods,” High Pressure Technology: Material, Design, Stress Analysis and Applications, ASME Pressure Vessel and Piping Conference, Pittsburgh, PA, June, p. 35.

4. Chaaban A. , and JutrasM., 1992, “Static Analysis of Buttress Threads using the Finite Element Method,” ASME JOURNAL OF PRESSURE VESSEL TECHNOLOGY, Vol. 114, p. 209209.

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