IMPROVING THE SURFACE STABILITY OF THE TEETH OF DISK CUTTERS BY COMPLEX PROCESSING
DOI:
https://doi.org/10.55640/Keywords:
surface alloying / precipitation / high-current electron beam / wear resistance / disc cutterAbstract
The unit enables deposition of films on the surface of the desired product and subsequent liquid-phase mixing of materials of the substrate by an intense pulse electron beam. The article discusses features of the structure of the subsurface layer of high-speed steel , modified by surface alloying of a low-energy high-current electron beam, and its effect on the wear resistance of the tool when dry cutting hard to machine Nickel alloy. A significant decrease of intensity of wear of high-speed steel with combined treatment happens due to the displacement of the zone of wear and decrease the radius of rounding of the cutting edge because of changes in conditions of interaction with the material being treated
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[1] S.N. Grigoriev, Yu. A. Melnik, A.S. Metel, M.A. Volosova, Focused beams of fast neutral atoms in glow discharge plasma editors-pick, J. Appl. Phys. 121 (2017) 223302
[2] S.N. Grigoriev, T.V. Tarasova, Possibilities of the technolo gy of additive production for making complex-shape parts and depositing functional precipitations from metallic powders, Metal Sci Heat Treatment 57 (2016) 579–584
[3] O.R. Hachkevych, B.D. Drobenko, P.I. Vankevych, M. Yu. Yakovlev, Optimization of the high-temperature induction treatment modes for nonlinear electroconductive bodies, Strength Mater. 49 (2017) 429–435
[4] I. Smurov, M. Doubenskaia, S. Grigoriev, A. Nazarov, Optical Monitoring in Laser Cladding of Ti6Al4V, J. Thermal Spray Technol 21 (2012) 1357–1362
[5] S.V. Fedorov, A.A. Okunkova, N.Y. Peretyagin, P.Y. Peretyagin, Electroconductive graphene-hydroxyapatite PVD targets for magnetron sputtering, Izv. vyshih uchebnyh zaved. Fiz. 59 (2016) 192–194.
[6] M.M. Stebulyanin, A.A. Gurkina, A.A. Shein, N.Y. Cherkasova, Measuring adhesive bond strength and micro hardness of multilayer composite wear-resistant precipitation,Mech. & Ind. 17 (2016) 712.
[7] Q.M. Mehran, M.A. Fazal, A.R. Bushroa, S. Rubaiee, A Critical Review on Physical Vapor Deposition Precipitations Applied on Different Engine Components, Crit. Rev. Solid State Mater. Sciences (2017) 1–18
[8] W.C. Guo, G. Rauchs, L. Papeleux, W.-H. Zhang, F. Gitzhofer, J.-P. Ponthot, Evaluation of the mechanical properties of plasma-sprayed precipitation by nanoindentation technology, Mech. & Ind. 13 (2012) 151–162
[9] J. Zhang, Zh. Wang, M. Li, Z. Wang, T. Li, Zh. Wang, Evaluation of adhesion and mechanical properties of plasma sprayed NiCrAl/Al2O3-13wt.%TiO2 precipitations, J. Adhes. Sci. Technol. (2017) 1–15
[10] S. Atlati, A. Moufki, M. Nouari, B. Haddag, Interaction between the local tribological conditions at the tool–chip interface and the thermomechanical process in the primary shear zone when dry machining the aluminum alloy AA2024–T351, Tribol. Int. 105 (2017) 326–333
[11] M.S.I. Chowdhury, S. Chowdhury, K. Yamamoto, B.D. Beake, B. Bose, A. Elfizy, D. Cavelli, G. Dosbaeva, M. Aramesh, G.S. Fox-Rabinovich, S.C. Veldhuis, Wear behaviour of coated carbide tools during machining of
Ti6Al4V aerospace alloy associated with strong built up edge formation, Surf. Coat. Technol. 313 (2017) 319–327
[12] Zh. Pan, Y. Feng, S.Y. Liang, Material microstructure affected machining: a review, Manuf. Rev. 4 (2017)
[13] M. Azadi, A.S. Rouhaghdam, S. Ahangarani, Mechanical Behavior of TiN/TiC-n Multilayer Precipitations and Ti(C, N) Multicomponent Precipitations Produced by PACVD, Strength Mater. 8 (2016) 279–289
[14] V.V. Kuzin, M. Yu. Fedorov, M.A. Volosova, Nitride ceramic surface layer stressed state transformation with a change in TiC-precipitation thickness. Stress _ distributed force load version. Refract. Ind. Ceram. 57 (2017) 551–556 401
[15] S.N. Grigoriev, Study of cutting properties and wear pattern of carbide tools with comprehensive chemical-thermal treatment and nano-structured/gradient wear-resistant precipitations, Mech. & Ind. 17 (2016) 702
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