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The main purpose of processing of tough-to-machine materials is improving of cutting process of steels with different physicochemical properties and alloying by means of various chemical elements in combination with heat treatment. Producing of high quality surface layers depends on properties of material used to make details, that is why reasons of tough machining were identified: influence of chemical composition and resulting structure. The studies of grinding of tough-to-machine materials were undertaken by means of grinding wheels made from synthetic diamonds as they are most resistant and highly-productive. Based on the studies recommendations for using of characteristics of grinding wheels and tough-to machine steel grades are given. Research on heat processes during grinding allows us to determine patterns showing how cutting speed, detail motion speed, area and action period of contact influence temperature and speed of heat processes in surface layers as well as depth of heating. These patterns also give the chance to show interrelation between temperature and rate of heating and cooling. This gives an opportunity to predict state of structure of surface layer of details made of tough-to-machine steels under different machining conditions reasonably.
Wydawca
Czasopismo
Rocznik
Tom
Strony
172--177
Opis fizyczny
Bibliogr. 26 poz., rys., tab.
Twórcy
autor
- Tchaikovsky Branch Perm National Research Polytechnic Institute 617764, Lenin st., 73, Tchaikovsky, Russia Federal State Budgetary Institution of Science Udmurt Federal Research Center of the Ural Branch of the Russian Academy of Sciences 426067, T. Baramzinoy str., 34, Izhevsk, Russia
autor
- 2Federal State Budgetary Institution of Science Udmurt Federal Research Center of the Ural Branch of the Russian Academy of Sciences 426067, T. Baramzinoy str., 34, Izhevsk, Russia
autor
- Slovak University of Technology, Faculty of Materials Science and Technology J. Bottu 25, 917 24 Trnava, Slovakia
Bibliografia
- [1] V.B. Dementyev and T.N. Ivanova. “Investigation of the surface layer structure of high-chromium and high-strength steels at the variation of the heating temperature”. Materials Science Forum, vol. 870, pp. 431-436, 2016.
- [2] T.N. Ivanova and A.M. Dolganov. “Up-to-date equipment in the technology of diamond face grinding of flat surfaces”. Yekaterinburg: The Institute of Economics Press, Ural Branch of RAS, 2007.
- [3] T.N. Ivanova. “Opportunities of abrasive tools in 21st century technology”. Materials Science Forum “Advanced technologies of the XXI century”, Odessa, pp. 113-118, 2013.
- [4] T.N. Ivanova and F.Y. Svitkovsky. “Investigation of the regularities and the enhancement of the efficiency of the grinding process for components from hard-to-machine materials”. Metal Treatment. Technology. Equipment, vol. 22, no. 1, pp. 22-24, 2004.
- [5] T.N. Ivanova. “Investigation of the surface layer structure at grinding”. Metal Treatment. Technology. Equipment. Tools, vol. 28, no. 3, pp. 30-32, 2005.
- [6] T.N. Ivanova. “Investigation of machinability of hardto-machine steels at grinding”. Natural Sciences and Technics, vol. 59, no. 3, pp.173-176, 2012.
- [7] T.N. Ivanova and V.B. Dementyev. “Formation of the properties of the surface layer of components from hard-to-machine materials simultaneously at heating and cooling”. Chemical Physics and Mesoscopy, vol. 15, no. 4, pp. 587-598, 2012.
- [8] P. Božek and E. Pivarčiová. “Registration of Holographic Images Based on Integral Transformation”. Computing and Informatics, vol. 31, no. 6, pp. 1369- 1383, 2012.
- [9] T.N. Ivanova and V.B. Dementyev. “Investigation of the physical-mechanical properties of steel 8CrV after high-speed thermal process”. Chemical Physics and Mesoscopy, vol. 14, no. 4, pp. 7-18, 2012.
- [10] I.P. Zakharenko. “Ultra-hard materials in tool production”. Kiev: Higher School, 1985.
- [11] V.P. Zverovshikov. “Dinamika centrobezhnoy obrabotki detaley diskretnym shlifovalnym materilom” [Dynamics of centrifugal processing of details by a discrete grinding material]. Monograph, Penza State University Press, 2005, p. 200.
- [12] D.I. Volkov. “Theoretical model of the stress state of the surface layer of components at deep grinding”. State Aviation Technological Academy, Vol. 15, no. 1, pp. 52-63, 2009.
- [13] D.I. Volkov. “Finite-difference calculation of the temperature in belt grinding”. Russian Engineering Research, vol. 32, no. 3, pp. 296-298, 2012.
- [14] A.M. Kozlov. “Opredelenie parametrov rabochey poverhnosti abrazivnogo instrumenta na osnove modelirovaniya” [Model-based determination of the parameters of the working surface of an abrasive tool]. Proceedings of Institutions of Higher Education. Machine-building. 2005. № 1. pp. 51-55.
- [15] V.A. Nosenko. Technology of metal grinding. Stary Oskol: TNT, 2013.
- [16] V.A. Nosenko. “Investigation of deep grinding of steel 30CrMnCNi2A”. Proceedings of Volgograd State Technical University, no. 9, 2004, pp. 29-31.
- [17] V.A. Nosenko. “Unidirectional and opposing deep grinding of titanium alloy with periodic wheel adjustment”. Russian Engineering Research, vol. 30, no. 10, pp. 1016-1021, 2010.
- [18] V.A. Nosenko. “Impregnation of abrasive tools with foaming agents”. Russian Engineering Research, vol. 31, no. 11, pp. 1160-1163, 2011.
- [19] D.V. Podzei. “Technologicheskie ostatochnye napryazheniya” [Technological residual stresses}. Monograph, Machine-building, 1973. p. 216.
- [20] P. Božek and E. Pivarčiová. “Flexible manufacturing system with automatic control of product quality”. Strojarstvo, vol. 55, no. 3, pp. 211-221, 2013.
- [21] S.A. Popov, N.P. Malevsky and L.M. Tereshenko. “Almazno-abrazivnaya obrabotka metallov i tverdyh splavov” [Diamond-abrasive treatment of metals and hard alloys]. Monograph, Machine-building, 1977. p. 264.
- [22] F.Y. Svitkovsky. “Nauchnye osnovy technologii glubinnogo shlifovaniya detaley iz trudnoobrabatyvaemyh materrialov” [Scientific principles of the technology of deep grinding of components from hardto-machine materials]. In Technological Sciences and Industry Restructuring Problems, 2003. p. 610.
- [23] L.V. Khudobin and M.A. Belov. Grinding of work pieces from corrosion-resistant steels with the use of lubricoolants. Saratov: University Press, 1989.
- [24] G.H. Yusupov, S.A. Kolegov and Y.T. Pusyreva. Effective diamond grinding. Stary Oskol: TNT, 2014.
- [25] P.I. Yasheritsyn and A.N. Martynov. Finishing of metals in machine-building. Minsk: Higher School, 1983.
- [26] E.M. Trent. Metal cutting. London: Butterworth, 1990.
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-a4105232-52e5-486b-bb43-eea4d8e3548f