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Erschienen in: Strength of Materials 5/2014

01.09.2014

Damageability of Heat-Resistant Steels with Consideration of the Conditions Simulating the Operation of Power Equipment*

verfasst von: F. F. Giginyak, P. A. Bulakh

Erschienen in: Strength of Materials | Ausgabe 5/2014

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Abstract

The paper presents the results of investigation into the regularities of deformation and kinetics of damage accumulation in heat-resistant steels 10GN2MFA and 15Kh2MFA under different modes of loading at a complex stress state.

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Literatur
1.
Zurück zum Zitat F. F. Giginyak, Î. K. Shkodzinskii, R. K. Fedorov, et al., “An automated stand for tests of constructional materials under conditions of the complex stressed state,” Strength Mater., 23, No. 10, 1135–1140 (1991).CrossRef F. F. Giginyak, Î. K. Shkodzinskii, R. K. Fedorov, et al., “An automated stand for tests of constructional materials under conditions of the complex stressed state,” Strength Mater., 23, No. 10, 1135–1140 (1991).CrossRef
2.
Zurück zum Zitat A. O. Lebedev, M. R. Muzyka, and N. L. Volchek, Method of Evaluating the Material Degradation due to In-Service Damage Accumulation. LM-Hardness Method [in Ukrainian], Patent of Ukraine No. 52107A. Valid since January 15, 2003. A. O. Lebedev, M. R. Muzyka, and N. L. Volchek, Method of Evaluating the Material Degradation due to In-Service Damage Accumulation. LM-Hardness Method [in Ukrainian], Patent of Ukraine No. 52107A. Valid since January 15, 2003.
3.
Zurück zum Zitat A. A. Lebedev, F. F. Giginyak, and V. V. Bashta, “Cyclic creep of body steels under a complex stress system in the temperature range 20–400°C,” Strength Mater., 10, No. 10, 1128–1130 (1978).CrossRef A. A. Lebedev, F. F. Giginyak, and V. V. Bashta, “Cyclic creep of body steels under a complex stress system in the temperature range 20–400°C,” Strength Mater., 10, No. 10, 1128–1130 (1978).CrossRef
4.
Zurück zum Zitat O. K. Shkodzinskii, A. A. Lebedev, and F. F. Giginyak, “Evaluation of the endurance of heat-resisting steels in soft pulsed loading in a multiaxial stress state,” Strength Mater., 21, No. 5, 599–603 (1989).CrossRef O. K. Shkodzinskii, A. A. Lebedev, and F. F. Giginyak, “Evaluation of the endurance of heat-resisting steels in soft pulsed loading in a multiaxial stress state,” Strength Mater., 21, No. 5, 599–603 (1989).CrossRef
5.
Zurück zum Zitat F. F. Giginyak, A. A. Lebedev, and Î. K. Shkodzinskii, “An elastic-viscoplastic model describing the properties of pearlitic class steels,” in: XXI All-Union Sci. Meeting on the Strength Problems of Engines (Abstracts of Papers) [in Russian], TsIAM, Moscow (1986), p. 57. F. F. Giginyak, A. A. Lebedev, and Î. K. Shkodzinskii, “An elastic-viscoplastic model describing the properties of pearlitic class steels,” in: XXI All-Union Sci. Meeting on the Strength Problems of Engines (Abstracts of Papers) [in Russian], TsIAM, Moscow (1986), p. 57.
6.
Zurück zum Zitat F. F. Giginyak, O. K. Shkodzinskii, A. A. Lebedev, and B. T. Timofeev, “Loss of stability for the process of plastic deformation with a complex stressed state,” Strength Mater., 23, No. 10, 1039–1047 (1991).CrossRef F. F. Giginyak, O. K. Shkodzinskii, A. A. Lebedev, and B. T. Timofeev, “Loss of stability for the process of plastic deformation with a complex stressed state,” Strength Mater., 23, No. 10, 1039–1047 (1991).CrossRef
7.
Zurück zum Zitat F. F. Giginyak, P. A. Bulakh, and T. N. Mozharovskaya, “The kinetics of damage accumulation in heat-resistant steels under different loading conditions,” Strength Mater., 42, No. 1, 90–94 (2010).CrossRef F. F. Giginyak, P. A. Bulakh, and T. N. Mozharovskaya, “The kinetics of damage accumulation in heat-resistant steels under different loading conditions,” Strength Mater., 42, No. 1, 90–94 (2010).CrossRef
8.
Zurück zum Zitat F. F. Giginyak and P. A. Bulakh, “Life prediction for 10GN2MFA heat-resistant steel with account for damageability of the metal in pulsating tension under conditions of a complex stress state,” Strength Mater., 44, No. 5, 534–548 (2012).CrossRef F. F. Giginyak and P. A. Bulakh, “Life prediction for 10GN2MFA heat-resistant steel with account for damageability of the metal in pulsating tension under conditions of a complex stress state,” Strength Mater., 44, No. 5, 534–548 (2012).CrossRef
9.
Zurück zum Zitat F. F. Giginyak, A. O. Lebedev, Î. K. Shkodzinskii, Strength of Structural Materials under Low-Cycle Loading at a Complex Stress State [in Ukrainian], Naukova Dumka, Kyiv (2003). F. F. Giginyak, A. O. Lebedev, Î. K. Shkodzinskii, Strength of Structural Materials under Low-Cycle Loading at a Complex Stress State [in Ukrainian], Naukova Dumka, Kyiv (2003).
10.
Zurück zum Zitat F. F. Giginyak and P. A. Bulakh, “Refinement of an elastic-viscoplastic model of deformation by taking into account the metal damage under cyclic loading,” Strength Mater., 44, No. 4, 388–394 (2012).CrossRef F. F. Giginyak and P. A. Bulakh, “Refinement of an elastic-viscoplastic model of deformation by taking into account the metal damage under cyclic loading,” Strength Mater., 44, No. 4, 388–394 (2012).CrossRef
Metadaten
Titel
Damageability of Heat-Resistant Steels with Consideration of the Conditions Simulating the Operation of Power Equipment*
verfasst von
F. F. Giginyak
P. A. Bulakh
Publikationsdatum
01.09.2014
Verlag
Springer US
Erschienen in
Strength of Materials / Ausgabe 5/2014
Print ISSN: 0039-2316
Elektronische ISSN: 1573-9325
DOI
https://doi.org/10.1007/s11223-014-9593-z

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