Analytical Modeling of Hydraulically Expanded Tube-To-Tubesheet Joints

Author:

Laghzale Nor Eddine1,Bouzid Abdel-Hakim1

Affiliation:

1. Department of Mechanical Engineering, Ecole de Technologie Superieure, 1100 Rue Notre-Dame Ouest, Montreal, QC, H3C 1K3, Canada

Abstract

Abstract The loss of the initial tightness during service is one of the major causes of failure of tube-to-tubesheet joints. The initial residual contact pressure and its variation during the lifetime of the joint are among the parameters to blame. A reliable assessment of the initial contact pressure value requires accurate and rigorous modeling of the elastoplastic behavior of the tube and the tubesheet during the expansion process. This paper deals with the development of a new analytical model used to accurately predict the residual contact pressure resulting from a hydraulic expansion process. The analytical model is based on the elastic perfectly plastic material behavior of the tube and the tubesheet and the interaction between these two elements of the expanded joint. The model results have been compared and validated with those of the more accurate finite element analysis models. Additional comparisons have been made with existing methods.

Publisher

ASME International

Subject

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

Reference25 articles.

1. U-Tube Heat-Exchangers: New Common Design Rules for ASME, CODAP, and EN 13445 CODES;Osweiller;J. Eng. Mech.

2. Holding Power and Hydraulic Tightness of Expanded Tube Joints: Analysis of Stress and Deformation;Goodier;Trans. ASME

3. Hydraulisches Aufweiten Em Dash Ein Neues Verfahren Zur Befestigung Von Rohren;Krips;VGB Kraftwerkstechnik

4. Expanded, and Welded-and-Expanded Tube-to-Tubesheet Joints;Yokell;ASME J. Pressure Vessel Technol.

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