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Welding and Surfacing
Название Restoration of machine parts made of structural carbon steel 20 by induction facing
DOI 10.17580/chm.2025.06.10
Автор E. S. Kozik, E. V. Svidenko
Информация об авторе

MIREA — Russian Technological University, Moscow, Russia

E. S. Kozik, Cand. Eng., Associate Prof., Dept. of Materials Science, e-mail: ele57670823@yandex.ru

 

Orenburg State University, Orenburg, Russia
E. V. Svidenko, Cand. Eng., Associate Prof., Dept. of Materials Science and Technology, e-mail: tzvetkova.katia2016@yandex.ru

Реферат

In modern mechanical engineering, the task of comprehensively improving the performance properties of worn plates is particularly significant. As a result of studying the surface relief of the plates, it is possible to maximize the service life of worn plates by a certain processing method. The study of the surface relief of the mold plates is carried out in order to identify the places most susceptible to wear and maximum linear wear to determine the economically feasible thickness of the hardened layer, as well as to identify the necessary structural improvements of the press tools. The nature of wear is determined on the plates of the upper belt of the CM-816 molds, an external inspection of the spent plates and measurement of linear wear is performed. Visual inspection shows that, in addition to abrasive wear, fatigue staining of the surface layer occurs during operation. Linear wear is determined using an hour-type indicator with a division price of 0.01 mm with a grid size of 40x40 mm from the edge. The measurement is performed relative to the unworn section of the plate. The purpose of the work is to restore worn plates by induction surfacing on HDPE.

Ключевые слова Plates, wear, layer thickness, induction surfacing, HDPE, microstructure
Библиографический список

1. Marukovich E. I., Marukovich E. I., Kharkov V. A., Meshkov D. A. et al. Analysis of thermal processes during induction facing. Liteynoe proizvodstvo i metallurgiya. 2020. No. 4. pp. 60-63.
2. Ivanovskiy V. V., Krivochurov N. T., Ishkov A. V., Kamyshnikov O. S. The new technology of induction arc surfacing for hardening of center hoe tip for SZS-2.1 seeding machine. Vestnik Altaiskogo gosudarstvennogo agrarnogo universiteta. 2021. No. 1 (195). pp. 106-114.
3. Gordienko A. I., Mikhlyuk A. I., Vegera I. I. Induction heat treatment in mechanical engineering: analysis, challenges and development prospects. Lityo i metallurgiya. 2010. No. 1-2. pp. 140–148.
4. Ivanayskiy V. V., Kirivochurov N. T., Ishkov A. V., Shanchurov S. M. et al. Features of modeling thermal processes in parts with variable cross-section in a combined method of induction facing. Polzunovskiy vestnik. 2012. No. 1. pp. 99–104.
5. Makhmudova N. A., Zhuraeva G. Sh. Facing with high-frequency currents (induction). Universum: tekhnicheskie nauki. 2023. No. 1. pp. 65–67.
6. Krivochurov N. T., Ishkov A. V., Ivanaysky V. V., Sokolov A. V. Method of induction facing of wear-resistant coating. Patent RF, No. 2561560. Applied: 02.07.2014. Published: 27.08.2015.
7. Ivanayskiy V. V. Physicochemical and technological principles of controlling the structure and properties of protective wear-resistant coating on working parts of agricultural machinery : monograph. Barnaul : Izdatelstvo AGAU, 2010. 187 p.
8. Sayid Abdulgader, El-Kashif Emad, Adly Mahmoud, Morsy M. A. Fatigue behavior of surfaced C45 steel. Journal of Engineering and Applied Science. 2021. Vol. 68, Iss. 8. pp. 1–11.
9. Rajan К., Joshi V., Ghosh A. Effect of carbonitriding on endurance life of ball bearing produced from SAE 52100 bearing steels. Journal of Surface Engineered Materials and Advanced Technology. 2013. Vol. 3. pp. 172-177.
10. Shmatov A. A. Practical realization of thermochemical technology for surface carbide strengthening metalwording. International Journal of Applied and fundamental research. 2021. Vol. 10. pp. 84–89.
11. Lygdenov B. D., Markhasaeva Y. A., Markhasaev A. V., Mei Shunqi et al. Thermodynamic model of steel saturation diffusion reaction. Grand Altai Council of HEI Chancellors Network Edition. 2020. Vol. 1. pp. 106–109.
12. Malushkin N. N., Romanov D. A., Kovalev A. P., Bashchenko L. P. Distribution of microhardness and structure over a layer of heat-resistant high-hardness alloy formed by multilayer plasma facing in a nitrogen environment. Izvestiya vuzov. Fizika. 2021. Vol. 64. No. 7. pp. 75–80.
13. Soner B. Microstructural properties of M7C3 eutectic carbides in a Fe-Cr-C alloy. Mater. Lett. 2006. Vol. 60. No. 5. pp. 605–608.
14. Aliferov A. I., Lupi S. Induction and electric contact heating of metals. Novosibirsk : NSTU, 2011. 410 p.
15. Sosnovsky I., Gafo Y., Kashitsyn I., Sosnovsky A. Control and stabilization of technological modes of powder materials centrifugal induction sintering on cylindrical parts internal surface. Euro PM 2007 Powder Metallurgy Congress 8 Exhibition 14-17 Оctober 2007, Toulouse, France. Vol. 2. pp. 117–119.
16. Gafo Yu. N., Sosnovsky I. A. Determination of thermal parameters of centrifugal induction baking of powder coatings. Poroshkovaya metallurgiya. 2009. No. 1/2. pp. 134–143.
17. Laptev S. K., Shatsov A. A., Grebenkov S. K., Laptev D. S. Effect of facing on the structure and properties of pearlitic and austenitic steels. Vestnik PNIPU. Mashinostroenie. Materialovedenie. 2022. Vol. 24. No. 2. pp. 32–37
18. Babenko A. A., Zhuchkov V. I., Selmenskikh N. I., Upolovnikova A. G. Structure and properties of low-carbon pipe steel 17G1S-U, microalloyed with boron. Izvestiya vuzov. Chernaya Metallurgiya. 2018. Vol. 61, No. 10. pp. 774–779.
19. Bashchenko L. P., Pochetukha V. V., Mikhaylichenko T. A. Effect of tempering on the structure of deposited coatings from high-speed steel. Izvestiya vuzov. Chernaya Metallurgiya. 2023. Vol. 66, No. 6. pp. 705–708.
20. Nefedyev S. P., Emelyushin A. N. The influence of nitrogen on the formation of the structure and properties of plasma coatings of the 10R6M5 type. Vestnik Yugorskogo gosudarstvennogo universiteta. 2021. Vol. 62, No. 3. pp. 33–45.
21. Malushin N. N., Gromov V. E., Romanov D. A., Bashchenko L. P. et al. Development of a comprehensive technology for hardening cold rolling rolls by plasma facing. Zagotovitelnye proizvodstva v mashinostroenii. 2023. Vol. 21, No. 7. pp. 296–302.
22. GOST 27674-88. Friction, wear and lubrication. Terms and definitions. Introduced: 01.01.1989.

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