Formulas for Stresses in Bolted Flanged Connections

Author:

Waters E. O.1,Wesstrom D. B.2,Rossheim D. B.3,Williams F. S. G.4

Affiliation:

1. Yale School of Engineering, Yale University, New Haven, Conn.

2. The Travelers Indemnity Company, Hartford, Conn.

3. M. W. Kellogg Company, New York, N. Y.

4. Taylor Forge & Pipe Works, New York, N. Y.

Abstract

Abstract Progress in pressure-vessel design and fabrication during the past two decades has brought about a marked change In the form of bolted connections. Whereas flanges were formerly provided with hubs of approximately uniform thickness, screwed to or slipped over the shell or pipe, it is now customary to use tapered hubs, and an integral structure is obtained by butt welding the end of the hub to the shell. This has invalidated former methods of design for flanged connections. This paper outlines a revised analysis based on the ring, tapered hub, and shell being considered as three elastically coupled units loaded by a bolting moment, a hydrostatic pressure, or a combination of the two. Design formulas and charts are given for the computation of stresses that are likely to be critical, and their application is illustrated by three problems taken from current commercial practice.

Publisher

ASME International

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