PSI - Issue 6

S.A. Atroshenko et al. / Procedia Structural Integrity 6 (2017) 190–195 Author name / Structural Integrity Procedia 00 (2017) 000 – 000

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A deeper penetration of particles in the erosion is observed for the HPT processed samples, comparing to the ECAP treated alloy. Fracture takes place between the α -phase plates and the thickness of the damaged layer varies from 4 to 14 microns in the case of the HPT processed alloy and from 2 to 11 microns for the ECAP samples.

Acknowledgements

This work was supported by the RSF (grant No. 17-11-01053). Additionally, the authors A.D. Evstifeev and N.A. Kazarinov received support for erosion experiment from RFBR (16-31-60003 mol_a_dk, 16-31-60047 mol_a_dk). The authors are grateful to the student of Lyceum No 101 Nikolaeva Elena for help in processing the results of structural studies.

References

Goodwin, J. E., Sage, W., Tilly G. P., 1969. Study of erosion by solid particles. Proceedings of the Institution of Mechanical Engineers 184, 1, 279-292. Kamkar, N., Brindier, F., Brocher, P., Jedrzejowski P., 2013. Water droplet erosion mechanisms in rolled Ti – 6Al – 4V. Wear 301, 1, 442-448. Kamkar, N., Brindier F., Jedrzejowski, P., Brocher, P., 2015. Water droplet impact erosion damage initiation in forged Ti – 6Al – 4V. Wear 322, 192-202. Petrov, Yu.V., Atroshenko, S.A., Kazarinov, N.A., Evstifeev, A.D., Solov’ev , V.Yu., 2017. Dynamic Fracture of the Surface of an Aluminum Alloy under Conditions of High-Speed Erosion. Physics of the Solid States 59, 4, 661-666. Tilly, G. P., Sage W., 1970. The interaction of particle and material behaviour in erosion processes. Wear 16, 6, 447-465. Valiev, R.Z., Langdon, T.G., 2006. Principles of equal-channel angular pressing as a processing tool for grain refinement, Prog. Mater. Sci. 51, 7, 881 – 981.

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