Limit Pressure of Rupture Discs Found on Tensile Instability Condition

Author:

Gao Guang Fan1,Wang Guo Dong2,Ding Xin Wei3,Chen Jiang Jun2

Affiliation:

1. Changzhou University

2. Jiangsu Polytechnic University

3. Dalian University of Technology

Abstract

With attention concentrated on the pole of bulge profile, tensile instability which results in the fracture of forward acting rupture discs has been studied. A formula was developed to calculate the theoretical limit pressure of rupture discs, and the theoretical predictions were compared with the measured data. It is found that the strain-hardening exponent of sheet metals has no influence on the limit pressure, whereas the limit pressure is in direct proportion to the strength coefficient of sheet metals. It is important to realize that the strength coefficient of sheet metals can be acquired easily from the limit pressure. This has potential value for the tests of mechanical properties of sheet metals.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference14 articles.

1. G. Sachs and J.D. Lubahn: Trans ASME Vol. 68 (1946), p.271.

2. R. Hill: Philos. Mag. Vol. 41 (1950), p.1133.

3. J.D. Bressan and J.A. Williams: Int. J. Mech. Sci. Vol. 25 (1983), p.155.

4. W.F. Brown and G. Sachs: Trans ASME Vol. 70 (1948), p.241.

5. G.F. Lake and N.P. Inglis: Proc. Inst. Mech. Eng. Vol. 42 (1939), p.365.

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