High Temperature Low Cycle Fatigue of Co–Cr–Ni–W–Ta Heat Resistant Alloy Produced by Additive Technological Processes

Author:

Ryzhkov P. V.,Suhov D. I.,Hodinev I. A.,Monin S. A.

Publisher

Pleiades Publishing Ltd

Subject

General Engineering,General Materials Science

Reference20 articles.

1. Rekomendatel’nyi tsirkulyar no. RTs-AP-33.15-1: Metodicheskie rekomendatsii po opredeleniyu raschetnykh znachenii kharakteristik konstruktsionnoi prochnosti metallicheskikh materialov (Recommendation Circular no. RC-AP-33.15-1: Guidelines for Determining Design Values of Characteristics of Metallic Materials Structural Strength), Moscow: Aviaizdat, 2013.

2. Eugenov, A.G., Shurtakov, S.V., Prager, S.M., and Malinin, R.Yu., On the development of a universal calculation method for assessing the degradation of recycled metal powder materials, depending on the cyclicity of use in the selective laser melting process, Aviats. Mater. Tekhnol., 2020, no. 4 (61), pp. 3–11. https://doi.org/10.18577/2071-9140-2020-0-4-3-11

3. Lutsenko, A.N., Slavin, A.V., Erasov, V.S., and Khvat-skii, K.K., Strength tests and researches of aviation materials, Aviats. Mater. Tekhnol., 2017, no. S, pp. 527–546. https://doi.org/10.18577/2071-9140-2017-0-S-527-546

4. Bannantine, J.A., Comer, J.J., and Handrock, J.L., Fundamentals of Metal Fatigue Analysis, Englewood Cliffs, NJ: Prentice Hall, 1990.

5. Donachie, M.J. and Donachie, S.J., Superalloys: A Technical Guide, Materials Park, OH: ASM Int., 2002, 2nd ed.

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