Appropriate Correlations for Assessing Expanded Tube-to-Tubesheet Joint Strength

[+] Author and Article Information
Stanley Yokell

MGT Inc., Boulder, Colorado

J. Pressure Vessel Technol 126(3), 376-381 (Aug 18, 2004) (6 pages) doi:10.1115/1.1767176 History: Received May 15, 2003; Revised June 17, 2003; Online August 18, 2004
Copyright © 2004 by ASME
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Goodier,  J. N., and Schoessow,  G. J., 1943, “The Holding Power and Hydraulic Tightness of Expanded Tube Joints: Analysis of the Stress and Deformation,” Trans. ASME.
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Uragami, K., Sugino, M., Urushibata, S., Kodama, T., and Fujiwara, Y., 1982, “Experimental Residual Stress Analysis of Tube-to-Tubesheet Joints During Expansion,” ASME Paper 82-PVP-61.
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Yokell,  S., 1982, “Heat Exchanger Tube-to-Tubesheet Joints,” Mech. Eng. (Am. Soc. Mech. Eng.), Hp. 94.
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Hahn, B., 2004, personal communication, Atlantic Group, Norfolk, VA.


Grahic Jump Location
Sum of + and − tolerances/ID increases to be measured versus percent apparent wall reduction
Grahic Jump Location
Tube outside strain amplitude versus frequency (adapted from U.S. Patent No. 4,142,581, Issued March 6, 1979 to Yuji Yoshitomi and others)
Grahic Jump Location
Metal structure of tube rolled and expanded by applying uniform pressure (adapted from reference 16)
Grahic Jump Location
Grooves used for enhancing tube joint strength (adapted by from A Working Guide to Shell-and-Tube Heat Exchangers by Stanley Yokell, McGraw-Hill, New York, 1990 by permission of the author)



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