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The Fatigue Strength of Thick-Walled Cylinders

Published online by Cambridge University Press:  21 February 2011

Erich Karl*
Affiliation:
BASF Aktiengesellschaft D-6700 Ludwigshafen, FRG
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Extract

ASME recently formed two committees which were given thetask of drafting a new Vessel Code and a new Piping Code for pressures ranging from approximately 70 Mpa (10,000 psi) up to 1,400 Mpa (200,000 psi). Pressure vessels and pipework operating in this pressure range are, in many cases, employed for batch-type operations or are subjected to pulsating pressures, for example in LDPE (low-density polyethylene) plants, in isostatic pressing processes, or in the production of synthetic crystals. For this reason, it is very important to design the pressure-bearing components so that they can safely tolerate the load cycles which are to be imposed on them.

Type
Research Article
Copyright
Copyright © Materials Research Society 1984

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References

REFERENCES

1. Burns, D.J. and Parry, J.S.C.: Effect of Mean Shear Stress on the Fatigue Behavior of Thick-Walled Cylinders.Google Scholar
2. Morrison, J.L.M., Crossland, B. and Parry, J.S.C.: ASME Paper 59– A 167.Google Scholar
3. Bett, K. and Rogan, J., Imperial College London: Several reports on the Fatigue Strength of Pipes and Bends for LDPE Plants.Google Scholar
4. Findley, W. and Reed, R., Brown University: Fatigue of Thick-Walled Tubes Subjected to Surface Treatments including Plating, Autofrettage and Shot-Peening. Union Carbide Contr. No. 511–7747.Google Scholar
5. Crofton, P.S.J.: The Fatigue Limit of Thick-Walled Steel Cylinders; Imperial College of Science and Techn., London.Google Scholar
6. Haslam, G.H.: High Temperatures-High Pressures, 1969 Vol.1 p. 705711.Google Scholar