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Erschienen in: Metal Science and Heat Treatment 7-8/2023

15.12.2023

Effect of Heat Treatment on Fatigue Strength and Frequency Stability of Tool Steel 6KhS

verfasst von: V. V. Myl’nikov, E. A. Dmitriev, D. I. Shetulov

Erschienen in: Metal Science and Heat Treatment | Ausgabe 7-8/2023

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Abstract

The effect of heat treatment on the fatigue processes developing in tool steel 6KhS loaded by a “soft” scheme of cantilever bending of flat specimens is studied. The fatigue limit and the cyclic endurance are determined. The frequency characteristics and the dynamics of the frequency stability in tests of steel specimens at a load close to the fatigue limit are presented. The fatigue resistance of the steel after low-temperature tempering is shown to be highly scattered. The steel exhibits the highest frequency stability after high-temperature tempering.

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Literatur
1.
Zurück zum Zitat V. F. Lavtent’ev and S. A. Korableva, Fatigue of Metals [in Russian], Nauka, Moscow (2015), 479 p. V. F. Lavtent’ev and S. A. Korableva, Fatigue of Metals [in Russian], Nauka, Moscow (2015), 479 p.
2.
Zurück zum Zitat H. Mughrabi and H.-J. Christ, “Cyclic deformation and fatigue of selected ferritic and austenitic steels; specific aspects,” ISIJ Int., 37(12), 1154 – 1169 (1997).CrossRef H. Mughrabi and H.-J. Christ, “Cyclic deformation and fatigue of selected ferritic and austenitic steels; specific aspects,” ISIJ Int., 37(12), 1154 – 1169 (1997).CrossRef
3.
Zurück zum Zitat V. E. Gromov, Yu. F. Ivanov, S. V. Vorob’ev, and S. V. Konovalov, Fatigue of Steels Modified by High Intensity Electron Beams, Cambridge (2015), 272 p. V. E. Gromov, Yu. F. Ivanov, S. V. Vorob’ev, and S. V. Konovalov, Fatigue of Steels Modified by High Intensity Electron Beams, Cambridge (2015), 272 p.
4.
Zurück zum Zitat L. M. Shkol’nik, Methods of Fatigue Tests [in Russian], Metallurgiya, Moscow (1978), 304 p. L. M. Shkol’nik, Methods of Fatigue Tests [in Russian], Metallurgiya, Moscow (1978), 304 p.
5.
Zurück zum Zitat I. V. Gadolina, N. A. Makhutov, and A. V. Erpalov, “Varied approaches to loading assessment in fatigue studies,” Int. J. Fatigue, 144, 106035 (2021).CrossRef I. V. Gadolina, N. A. Makhutov, and A. V. Erpalov, “Varied approaches to loading assessment in fatigue studies,” Int. J. Fatigue, 144, 106035 (2021).CrossRef
6.
Zurück zum Zitat S. Suresh, Fatigue of Metals, Cambridge University Press, Cambridge (2006), 701 p. S. Suresh, Fatigue of Metals, Cambridge University Press, Cambridge (2006), 701 p.
7.
Zurück zum Zitat V. V. Myl’nikov, O. V. Kondrashkin, D. I. Shetulov, et al., “Fatigue resistance changes of structural steels at different load spectra,” Steel Trans., 49(10), 678 – 682 (2019). V. V. Myl’nikov, O. V. Kondrashkin, D. I. Shetulov, et al., “Fatigue resistance changes of structural steels at different load spectra,” Steel Trans., 49(10), 678 – 682 (2019).
8.
Zurück zum Zitat V. T. Troshchenko, L. A. Khamaza, V. V. Pokrovsky, et al., Cyclic Deformation and Fatigue of Metals, Esevier, Amsterdam (1993), 500 p. V. T. Troshchenko, L. A. Khamaza, V. V. Pokrovsky, et al., Cyclic Deformation and Fatigue of Metals, Esevier, Amsterdam (1993), 500 p.
9.
Zurück zum Zitat S. A. Golovin and I. V. Tikhonova, “Temperature dependence of internal friction and properties of deformed low-carbon iron alloys,” Deform. Razrush. Mater., No. 7, 16 – 21 (2013). S. A. Golovin and I. V. Tikhonova, “Temperature dependence of internal friction and properties of deformed low-carbon iron alloys,” Deform. Razrush. Mater., No. 7, 16 – 21 (2013).
10.
Zurück zum Zitat S. A. Golovin and A. G. Petrushina, “Temperature spectrum of internal friction of cast irons,” Izv. Vysh. Uchebn. Zaved., Chern. Metall., No. 9, 51 – 54 (2009). S. A. Golovin and A. G. Petrushina, “Temperature spectrum of internal friction of cast irons,” Izv. Vysh. Uchebn. Zaved., Chern. Metall., No. 9, 51 – 54 (2009).
11.
Zurück zum Zitat D. McClaflin and and A. Fatemi, “Torsional deformation and fatigue of hardened steel inclusion mean stress and stress gradient effects,” Int. J. Fatigue, 26(7), 773 – 784 (2004). D. McClaflin and and A. Fatemi, “Torsional deformation and fatigue of hardened steel inclusion mean stress and stress gradient effects,” Int. J. Fatigue, 26(7), 773 – 784 (2004).
12.
Zurück zum Zitat I. S. Golovin, A. S. Bychkova, A. V. Mikhailovskaya, and S. V. Dobatkin, “Contribution of phase and structural transformations in multicomponent Al – Mg alloys into linear and nonlinear mechanisms of elasticity,” Fiz. Met. Metalloved., 115(2), 204 (2014). I. S. Golovin, A. S. Bychkova, A. V. Mikhailovskaya, and S. V. Dobatkin, “Contribution of phase and structural transformations in multicomponent Al – Mg alloys into linear and nonlinear mechanisms of elasticity,” Fiz. Met. Metalloved., 115(2), 204 (2014).
13.
Zurück zum Zitat V. K. Kardashev, K. V. Sapozhnikov, V. I. Betekhtin, et al., “Internal friction, Youngs’s modulus, and electrical resistivity of submicrocrystalline titanium,” Phys. Solid State, 59(12), 2381 – 2386 (2017).CrossRef V. K. Kardashev, K. V. Sapozhnikov, V. I. Betekhtin, et al., “Internal friction, Youngs’s modulus, and electrical resistivity of submicrocrystalline titanium,” Phys. Solid State, 59(12), 2381 – 2386 (2017).CrossRef
14.
Zurück zum Zitat M. S. Blanter, I. S. Golovin, H. Neuhäuser, and H. R. Sinning, “Internal friction in metallic materials,” Springer Ser. Mater. Sci., 90, 1 – 535 (2007).CrossRef M. S. Blanter, I. S. Golovin, H. Neuhäuser, and H. R. Sinning, “Internal friction in metallic materials,” Springer Ser. Mater. Sci., 90, 1 – 535 (2007).CrossRef
15.
Zurück zum Zitat V. V. Stolyarov, “Inelasticity of ultrafine-grained metals,” Izv. Vysh. Uchebn. Zaved., Chern. Metall., No. 1, 151 – 154 (2010). V. V. Stolyarov, “Inelasticity of ultrafine-grained metals,” Izv. Vysh. Uchebn. Zaved., Chern. Metall., No. 1, 151 – 154 (2010).
17.
Zurück zum Zitat V. V. Myl’nikov and D. I. Shetulov, “Facility for fatigue testing, Patent 2781466 RU,” Byull. Izobr. Polezn. Modeli, No. 29 (2022), appl. 14.09.2021, publ. 12.10.2022. V. V. Myl’nikov and D. I. Shetulov, “Facility for fatigue testing, Patent 2781466 RU,” Byull. Izobr. Polezn. Modeli, No. 29 (2022), appl. 14.09.2021, publ. 12.10.2022.
18.
Zurück zum Zitat V. V. Mylnikov, “Effect of loading frequency on fatigue of structural materials,” Nauka Tekh., 18(5), 427 – 435 (2019).CrossRef V. V. Mylnikov, “Effect of loading frequency on fatigue of structural materials,” Nauka Tekh., 18(5), 427 – 435 (2019).CrossRef
19.
Zurück zum Zitat V. S. Biront, The Theory of Treatment of Metals. Quenching, Aging and Tempering [in Russian], SFU ITsMiZ, Krasnoyarsk (2007), 172 p. V. S. Biront, The Theory of Treatment of Metals. Quenching, Aging and Tempering [in Russian], SFU ITsMiZ, Krasnoyarsk (2007), 172 p.
20.
Zurück zum Zitat V. V. Myl’nikov, D. I. Shetulov, and E. A. Chernyshov, “Investigation into the surface damage of pure metals allowing for the cyclic loading frequency,” Russ. J. Non-Ferr. Met., 54(3), 229 – 233 (2013). V. V. Myl’nikov, D. I. Shetulov, and E. A. Chernyshov, “Investigation into the surface damage of pure metals allowing for the cyclic loading frequency,” Russ. J. Non-Ferr. Met., 54(3), 229 – 233 (2013).
21.
Zurück zum Zitat D. I. Shetulov, “About assessment of fatigue resistance of surface anomalous layers,” Fiz.-Khim. Mekh. Mater., No. 6, 117 (1984). D. I. Shetulov, “About assessment of fatigue resistance of surface anomalous layers,” Fiz.-Khim. Mekh. Mater., No. 6, 117 (1984).
Metadaten
Titel
Effect of Heat Treatment on Fatigue Strength and Frequency Stability of Tool Steel 6KhS
verfasst von
V. V. Myl’nikov
E. A. Dmitriev
D. I. Shetulov
Publikationsdatum
15.12.2023
Verlag
Springer US
Erschienen in
Metal Science and Heat Treatment / Ausgabe 7-8/2023
Print ISSN: 0026-0673
Elektronische ISSN: 1573-8973
DOI
https://doi.org/10.1007/s11041-023-00946-7

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