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IssuesArchive of Issues2009-2pp.269-276

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A. M. Kovrizhnykh, "Limiting stress of metals and the limiting state under creep conditions," Mech. Solids. 44 (2), 269-276 (2009)
Year 2009 Volume 44 Number 2 Pages 269-276
DOI 10.3103/S0025654409020125
Title Limiting stress of metals and the limiting state under creep conditions
Author(s) A. M. Kovrizhnykh (Institute of Mining, Siberian Branch of Russian Academy of Sciences, Krasny pr-t 54, Novosibirsk, 630091, Russia, akovr@sibmail.ru)
Abstract We show that, as long as one deals with a plane stress state, the Coulomb-Mohr fracture criterion traditionally used in soil and rock mechanics is in a rather good agreement with the results of fracture experiments for metal materials under the conditions of creep caused by a long-term action of a constant load. We perform statistical analysis to compare the proposed theoretical limiting-stress-fracture-time dependencies with the experimental results given in [1–3] and the results of computations by other authors [1, 4, 5].

Just as in [6], the limiting state arising under the conditions of creep caused by long-term loading is considered in the case of plane strain. We use the solutions of the rigid-plastic problems on the pressure exerted by a flat die on a half-plane and the extension of a strip with angular notches to find the fracture time for the corresponding problems in the setting of a perfectly rigid-creeping body.
References
1.  V. P. Sdobyrev, "Long-Term Strength of EI437B Alloy in Complex Stress State," Izv. Akad. Nauk SSSR. OTN. Mekh. Mashinostr., No. 4, 92–97 (1958).
2.  V. P. Sdobyrev, "Long-Term Strength Criterion for Some High-Temperature Alloys in Complex Stress State," Izv. Akad. Nauk SSSR. OTN. Mekh. Mashinostr., No. 6, 93–99 (1959).
3.  I. I. Trunin, "Estimation of Resistance to the Long-Term Fracture and Some Specific Features of Strain in Complex Stress State," Zh. Prikl. Mekh. Tekhn. Fiz., No. 1, 110–114 (1963) [J. Appl. Mech. Tech. Phys. (Engl. Transl.)].
4.  A. E. Johnson, "Complex-Stress Creep of Metals," Metallurgical Reviews 5(20), 447–506 (1960) [Mekhanika. Period. Sb. Perev. Inostr. Statey (Russ. Transl.), No. 4 (74), 91–145 (1962)].
5.  A. A. Lebedev, "Generalized Criterion for Long-Term Strength," in Thermostrength of Materials and Structural Members (Naukova Dumka, Kiev, 1965), pp. 69–76 [in Russian].
6.  Yu. N. Rabotnov, "Influence of Stress Concentration on the Long-Term Strength," Izv. Akad. Nauk SSSR. Mekh. Tverd. Tela, No. 3, 36–41 (1967) [Mech. Solids (Engl. Transl.)].
7.  L.M. Kachanov, Theory of Creep (Fizmatgiz, Moscow, 1960) [in Russian].
8.  Yu. N. Rabotnov, Creep of Construction Elements (Nauka, Moscow, 1966) [in Russian].
9.  N. N. Malinin, Applied Theory of Plasticity and Creep (Mashinostroenie, Moscow, 1968) [in Russian].
10.  E. N. Kablov and E. R. Golubovskii, Heat Resistance of Nickel Alloys (Mashinostroenie, Moscow, 1998) [in Russian].
11.  A. M. Lokoshchenko, V. V. Nazarov, D. O. Platonov, and S. A. Shesterikov, "Analysis of Long-Term Strength Criteria for Metals under Complex Stress State," Izv. Akad. Nauk. Mekh. Tverd. Tela, No. 2, 139–149 (2003) [Mech. Solids (Engl. Transl.) 38 (2), 113–121 (2003)].
12.  O. V. Sosnin, B. V. Gorev, and A. F. Nikitenko, "Enegry Variant of Theory of Creep. 1. Basic Hypotheses and Their Experimental Verification," Probl. Prochn., No. 11, 3–8 (1976) [Strength of Materials (Engl. Transl.) 8 (11), 1255–1260 (1976)].
13.  A.M. Kovrizhnykh, "Plastic Deformation of Hardering Materials under Complex Loading," Izv. Akad. Nauk SSSR. Mekh. Tverd. Tela, No. 4, 140–146 (1986) [Mech. Solids (Engl. Transl.) 21 (4), 146–153 (1986)].
14.  A. M. Kovrizhnykh, "On the Hyperbolicity of Equations in the Theory of Plastic Shear," Dokl. Ross. Akad. Nauk 365(4), 485–487 (1999) [Dokl. Phys. (Engl. Transl.) 44 (4), 238–240 (1999)].
15.  V. V. Sokolovskii, Statics of Free-Flowing Media (Fizmatgiz, Moscow, 1960) [in Russian].
16.  R. T. Shield, "Mixed Boundary Value Problems in Soil Mechanics," Quart. Appl. Math. 11(1), 61–75 (1953).
17.  A. M. Kovrizhnykh, "The Question of Metal Embrittlement in Plastic Deformation," Zh. Prikl. Mekh. Tekhn. Fiz., No. 6, 161–168 (1989) [J. Appl. Mech. Tech. Phys. (Engl. Transl.) 30 (6), 994–999 (1989)].
Received 13 November 2006
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