Improving the performance characteristics of grey cast iron parts via ion implantation

OBRABOTKAMETALLOV MATERIAL SCIENCE Vol. 27 No. 1 2025 2. Zverev E.A., Skeeba V.Yu., Martyushev N.V., Skeeba P.Yu. Integrated quality ensuring technique of plasma wear resistant coatings. Key Engineering Materials, 2017, vol. 736, pp. 132–137. DOI: 10.4028/www.scientific.net/ KEM.736.132. 3. Ardashkin I.B., Yakovlev A.N. Evaluation of the resource efficiency of foundry technologies: methodological aspect. AdvancedMaterialsResearch, 2014, vol. 1040, pp. 912–916.DOI: 10.4028/www.scientific.net/AMR.1040.912. 4. Vidayev I.G., Martyushev N.V., Ivashutenko A.S., Bogdan A.M. The resource efficiency assessment technique for the foundry production. Advanced Materials Research, 2014, vol. 880, pp. 141–145. DOI: 10.4028/www. scientific.net/AMR.880.141. 5. Usanova O.Yu., Ryazantseva A.V., Kolishchak L.M. Investigation of the effect of ion implantation on tribotechnical characteristics of cast iron. Journal of Physics: Conference Series, 2022, vol. 2373 (2), p. 022029. DOI: 10.1088/1742-6596/2373/2/022029. 6. Usanova O.Yu., Ryazantseva A.V., Sennikova O.B., Korneev S.D. Vliyanie ionnoi implantatsii na svoistva chuguna, ispol’zuemogo v konstruktsiyakh gornodobyvayushchikh mashin i apparatov [Ionic implantation influence on the properties of cast iron used in the structures of mining machines and devices]. Ustoichivoe razvitie gornykh territorii = Sustainable Development of Mountain Territories, 2023, vol. 15 (4), pp. 912–920. DOI: 10.21177/19984502-2023-15-4-912-920. 7. Issagulov A., Ibatov M., Kovalyov P., Shcherbakova E., Dostaeva A., Arinova S. Ni-hard-class cast irons, prospects for their improvement. Trudy Universiteta = University Proceedings, 2021, no. 2 (83), pp. 47–51. DOI: 10.52209/1609-1825_2021_2_47. 8. Konyuhov V.Y., GladkihA.M., Semenov V.V. Measures to the improvement of efficiency of a repair enterprise. Journal of Physics: Conference Series, 2019, vol. 1353, p. 012046. DOI: 10.1088/1742-6596/1353/1/012046. 9. Sherov A.K., Myrzakhmet B., Sherov K.T., Absadykov B.N., Sikhimbayev M.R. Method for selecting the location of the clearance fields of the landing surfaces of gear pump parts with a biaxial connection. News of the National Academy of Sciences of the Republic of Kazakhstan. Series of Geology and Technical Sciences, 2022, vol. 1 (451), pp. 159–166. DOI: 10.32014/2022.2518-170X.153. 10. BalanovskyA.E., Shtayger M.G., Grechneva M.V., Kondrat’ev V.V., KarlinaA.I. Comparative metallographic analysis of the structure of St3 steel after being exposed to different ways of work-hardening. IOP Conference Series: Materials Science and Engineering, 2018, vol. 411, p. 012012. 11. Youssef A.A., Budzynski P., Filiks J., Kobzev A.P., Sielanko J. Improvement of wear and hardness of steel by nitrogen implantation. Vacuum, 2004, vol. 77 (1), pp. 37–45. 12. Usanova O.Yu., Stolyarov V.V., Ryazantseva A.V. Issledovanie svoistv ionno-implantirovannogo titanovogo splava s pamyat’yu formy, ispol’zuemogo v konstruktsiyakh gornodobyvayushchego oborudovaniya [Investigation of the properties of ion-implanted shape memory titanium alloy used in the construction of mining equipment]. Ustoichivoe razvitie gornykh territorii = Sustainable Development of Mountain Territories, 2022, vol. 14 (4), pp. 695–701. DOI: 10.21177/1998-4502-2022-14-4-695-701. 13. Sudjatmoko L.S., Wirjoadi B.S. Effects of nitrogen ion implantation on hardness and wear resistance of the Ti-6Al-4V alloy. Jurnal Iptek Nuklir Ganendra = Ganendra Journal of Nuclear Science and Technology, 2015, no. 18 (2), pp. 61–68. 14. Bosikov I.I., Modina M.A., Khekert E.V. Analysis of the quality of underground mineral waters of terrigenous deposits of the Hauteriv-Barremian aquifer of the lower cretaceous. News of the National Academy of Sciences of the Republic of Kazakhstan. Series of Geology and Technical Sciences, 2024, vol. 2, pp. 36–47. DOI: 10.32014/2024.2518170X.392. 15. Ershov V.A., Sysoev I.A., Kondrat’ev V.V. Determination of aluminum oxide concentration in molten cryolitealumina. Metallurgist, 2013, vol. 57 (3–4), pp. 346–351. 16. SherovK.T., SikhimbaevM.R., SherovA.K.,DonenbayevB.S., RakishevA.K.MazdubaiA.B.,MusayevM.M., Abeuova A.M. Mathematical modeling of thermofrictional milling process using ANSYS WB software. Journal of Theoretical and Applied Mechanics, 2017, vol. 47 (2), pp. 24–33. DOI: 10.1515/jtam-2017-0008. 17. Pashkov E.N., Martyushev N.V., Ponomarev A.V. An investigation into autobalancing devices with multireservoir system. IOP Conference Series: Materials Science and Engineering, 2014, vol. 66 (1), p. 012014. DOI: 10.1088/1757-899X/66/1/012014. 18. Plotnikova N.V., Skeeba V.Yu., Miller R.A., Rubtsova N.S. Formation of high-carbon abrasion-resistant surface layers when high-energy heating by high-frequency currents. IOP Conference Series: Materials Science and Engineering, 2016, vol. 156 (1), p. 012022. DOI: 10.1088/1757-899X/156/1/012022.

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