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Published in: Strength of Materials 2/2013

01-03-2013

Interpolation Analysis of the Features of Long-Term Creep Rupture in Chrome-Nickel and Chrome-Molybdenum Steels

Authors: V. V. Krivenyuk, D. S. Avramenko, R. P. Prikhod’ko

Published in: Strength of Materials | Issue 2/2013

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Abstract

We substantiate that the base diagram method, due to its sufficiently accurate evaluation of the deviations of certain portions of the experimental diagrams from the corresponding portions of the constant base ones, significantly improves the efficiency of using the creep rupture strength data for various heats of steels and alloys to specify the features of their long-term softening.

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Literature
1.
go back to reference Data Sheets on the Elevated-Temperature Properties of 18Cr–8Ni Steel, NRIM Creep Data Sheet, No. 4B (1986). Data Sheets on the Elevated-Temperature Properties of 18Cr–8Ni Steel, NRIM Creep Data Sheet, No. 4B (1986).
2.
go back to reference Data Sheets on the Elevated-Temperature Properties of 18Cr–10Ni–Ti Stainless Steel, NRIM Creep Data Sheet, No. 5B (1987). Data Sheets on the Elevated-Temperature Properties of 18Cr–10Ni–Ti Stainless Steel, NRIM Creep Data Sheet, No. 5B (1987).
3.
go back to reference Data Sheets on the Elevated-Temperature Properties of 1Cr–0.5Mo Steel, NRIM Creep Data Sheet, No. 1B (1996). Data Sheets on the Elevated-Temperature Properties of 1Cr–0.5Mo Steel, NRIM Creep Data Sheet, No. 1B (1996).
4.
go back to reference Data Sheets on the Elevated-Temperature Properties of 0.5Cr–0.5Mo Steel, NRIM Creep Data Sheet, No. 20B (1994). Data Sheets on the Elevated-Temperature Properties of 0.5Cr–0.5Mo Steel, NRIM Creep Data Sheet, No. 20B (1994).
5.
go back to reference Data Sheets on the Elevated-Temperature Properties of 1Cr–0.5Mo Steel, NRIM Creep Data Sheet, No. 35A (1990). Data Sheets on the Elevated-Temperature Properties of 1Cr–0.5Mo Steel, NRIM Creep Data Sheet, No. 35A (1990).
6.
go back to reference V. V. Krivenyuk, Prediction of Long-Term Creep Rupture Strength of Refractory Metals and Alloys [in Russian], Naukova Dumka, Kiev (1990). V. V. Krivenyuk, Prediction of Long-Term Creep Rupture Strength of Refractory Metals and Alloys [in Russian], Naukova Dumka, Kiev (1990).
7.
go back to reference G. S. Pisarenko and V. V. Krivenyuk, “A new approach to the prediction of long-term creep rupture strength of metals,” Dokl. AN SSSR, Mekhanika, 312, No. 3, 558–562 (1990). G. S. Pisarenko and V. V. Krivenyuk, “A new approach to the prediction of long-term creep rupture strength of metals,” Dokl. AN SSSR, Mekhanika, 312, No. 3, 558–562 (1990).
8.
go back to reference V. V. Krivenyuk, “Creep-rupture prediction for steels and alloys by parametric methods and the base diagram method. Part 1. Interpolation analysis of experimental data,” Strength Mater., 38, No. 5, 515–526 (2006).CrossRef V. V. Krivenyuk, “Creep-rupture prediction for steels and alloys by parametric methods and the base diagram method. Part 1. Interpolation analysis of experimental data,” Strength Mater., 38, No. 5, 515–526 (2006).CrossRef
9.
go back to reference V. V. Krivenyuk, “Creep-rupture prediction for steels and alloys by parametric methods and the base diagram method. Part 2. Extrapolation analysis of experimental data,” Strength Mater., 38, No. 6, 586–594 (2006).CrossRef V. V. Krivenyuk, “Creep-rupture prediction for steels and alloys by parametric methods and the base diagram method. Part 2. Extrapolation analysis of experimental data,” Strength Mater., 38, No. 6, 586–594 (2006).CrossRef
10.
go back to reference F. R. Larson and J. Miller, “A time–temperature relationship for rupture and creep stresses,” Trans. ASME, 74, No. 5, 765–775 (1952). F. R. Larson and J. Miller, “A time–temperature relationship for rupture and creep stresses,” Trans. ASME, 74, No. 5, 765–775 (1952).
11.
go back to reference S. S. Manson and A. M. Haferd, A Linear Time–Temperature Relation for Extrapolation of Creep and Stress Rupture Data, NACA TN 2890 (1953). S. S. Manson and A. M. Haferd, A Linear Time–Temperature Relation for Extrapolation of Creep and Stress Rupture Data, NACA TN 2890 (1953).
12.
go back to reference R. L. Orr, O. D. Sherby, and J. E. Dorn, “Correlation of rupture data for metals at elevated temperatures,” Trans. ASM, 46, 113–128 (1954). R. L. Orr, O. D. Sherby, and J. E. Dorn, “Correlation of rupture data for metals at elevated temperatures,” Trans. ASM, 46, 113–128 (1954).
Metadata
Title
Interpolation Analysis of the Features of Long-Term Creep Rupture in Chrome-Nickel and Chrome-Molybdenum Steels
Authors
V. V. Krivenyuk
D. S. Avramenko
R. P. Prikhod’ko
Publication date
01-03-2013
Publisher
Springer US
Published in
Strength of Materials / Issue 2/2013
Print ISSN: 0039-2316
Electronic ISSN: 1573-9325
DOI
https://doi.org/10.1007/s11223-013-9446-1

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