Stress concentration at crossholes in thick cylindrical vessels

Author:

Makulsawatudom P1,Mackenzie D1,Hamilton R1

Affiliation:

1. University of Strathclyde Department of Mechanical Engineering Glasgow, Scotland, UK

Abstract

Elastic stress concentration factors (SCFs) for internally pressurized thick cylindrical vessels with radial and offset circular and elliptical crossholes are presented. Three forms of intersection between the crosshole and main bore are considered: plain, chamfered and blend radiused. The minimum SCF was found to occur for the plain intersection configuration, with the peak stress at the crotch corner between the main bore and crosshole on the longitudinal plane of symmetry. Incorporating a chamfer or blend radius at the intersection reduces the stress concentration at the main bore but introduces higher peak stress elsewhere in the chamfer or blend region.

Publisher

SAGE Publications

Subject

Applied Mathematics,Mechanical Engineering,Mechanics of Materials,Modeling and Simulation

Reference17 articles.

1. Stress distribution in a tee junction of thick pipes

2. Experimental determination of stress-concentration factors in thick-walled cylinders with crossholes and sideholes

3. Chaaban A., Barake N. Elasto-plastic analysis of high pressure vessels with radial cross-bores. In Proceedings of the ASME Pressure Vessels and Piping Conference, 1993, PVP-Vol.263, pp. 67–71 (American Society of Mechanical Engineers, New York).

4. Stress Concentration in Heavy-Walled Cylindrical Pressure Vessels - Effect of Elliptic and Circular Side Holes

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