Obrabotka Metallov 2021 Vol. 23 No. 1
OBRABOTKAMETALLOV Vol. 23 No. 1 2021 42 TECHNOLOGY Determination of temperature of maximum operability of replaceable cutting hard-alloy inserts based on study of electromagnetic properties change Evgeny Artamonov a , Andrey Tveryakov b , Anton Shtin c,* Industrial University of Tyumen, 38 Volodarskogo st., Tyumen, 625000, Russian Federation a https://orcid.org/0000-0002-3099-4435, evgart2014@mail.ru , b https://orcid.org/0000-0002-6444-2559, tveryakov@mail.ru, c https://orcid.org/0000-0002-7000-6761, shtin92@mail.ru Obrabotka metallov (tekhnologiya, oborudovanie, instrumenty) = Metal Working and Material Science. 2021 vol. 23 no. 1 pp. 33–44 ISSN: 1994-6309 (print) / 2541-819X (online) DOI: 10.17212/1994-6309-2021-23.1-33-44 Obrabotka metallov - Metal Working and Material Science Journal homepage: http://journals.nstu.ru/obrabotka_metallov ARTICLE INFO Article history : Received: 26 August 2020 Revised: 09 September 2020 Accepted: 12 January 2021 Available online: 15 March 2021 Keywords : Hard alloys Metal processing Maximum operability temperature ABSTRACT Introduction. Today, under the conditions of sanctions, the Russian Federation, more than ever before, needs the development of energy-saving technologies in various industries. There is no secret that when assigning cutting modes for new materials, tool companies conduct tests for the destruction of replaceable cutting inserts during cutting, the obtained numerical values are published in catalogs. The greatest impact on the life and operability of hard alloy cutting tools is exerted by the physical and mechanical properties of tool materials. Studies have shown that the physical and mechanical properties of tungsten hard alloys in the process of operation, namely in the process of cutting dif fi cult-to-process materials under the in fl uence of high temperatures, vary symmetrically. During the development of the laboratory plant, a literary review was carried out, which showed that at the moment non-destructive testing methods of technological facilities are widely used. Methods of non-destructive testing of technological objects allow conducting studies of the state of material, defects in the structure, internal changes, without samples destroying; this advantage was decisive during the literary review. The object of this study is replaceable cutting hard alloy inserts made of single carbide hard alloy В 35 (92 %WC+8 %Co), tetrahedral in the state of supply. The subject of the study is the relationship between the changes of the magnetic component of the properties of a single-carbide hard alloy В 35 (92 %WC+8 %Co) depending on the effect of high temperatures on it. This study is based on the laws of physics of the division of electrodynamics, as well as well-known non-destructive testing techniques, scienti fi c foundations of material science. All studies are carried out in accredited laboratories of Tyumen Industrial University. The reliability of the obtained data is con fi rmed by the high correlation of the results of numerical values with the data obtained by the scienti fi c predecessors. Research methodology. The paper shows the developed plant for determination of the maximum operability temperature of replaceable cutting hard-alloy inserts on the basis of study of change of electromagnetic properties. The method of research is given. Tests of the specimen are carried out during heating of replaceable cutting inserts made of tungsten hard alloy B35 (92 %WC+8 %Co). The heating temperature interval is selected in accordance with the temperature mode of the cutting process in the blade treatment of hard-to-process materials. Thus, heating is carried out in the range from 0 to 1000 °C. The heating itself is carried out by the fl ame method manually. Results and discussions. Based on the results of experimental studies, tables of the results are compiled, where, with an interval of 10 °C, the corresponding values of the magnetic fi eld of eddy currents induced in replaceable cutting inserts made of tungsten hard alloy B35 (92 %WC+8 %Co) are indicated. The results of the investigation are obtained to determine the maximum operability temperature of replaceable cutting hard alloy inserts based on the study of the change in electromagnetic properties for the hard alloy B35 (92%WC+8%Co) amounted to 460…730 °C, which corresponds to a cutting speed of 18 m/min during the treatment of the alloy EI867-VD (57 %Ni9 %Mo10 %Cr6 %W4.2 %Al4 %Co). On the basis of persistent tests in factory conditions, it is proved that the developed technique allows determining temperature intervals of maximum operability based on the study of changes in electromagnetic properties (magnetic fi eld of eddy currents arising in replaceable cutting inserts) of hard alloys. These intervals make it possible to assign the most appropriate operating conditions for the cutting tool based on a scienti fi cally sound technique that allows using the maximum tool resource. For citation: Artamonov E.V., Tveryakov A.M., Shtin A.S. Determination of temperature of maximum operability of replaceable cutting hard- alloy inserts based on study of electromagnetic properties change. Obrabotka metallov (tekhnologiya, oborudovanie, instrumenty) = Metal Working and Material Science , 2021, vol. 23, no. 1, pp. 33–44. DOI:10.17212/1994-6309-2021-23.1-33-44. (In Russian). ______ * Corresponding author Shtin Anton S. , Ph.D. (Engineering), Assistant Industrial University of Tyumen, 38 Volodarskogo, 625000, Tyumen, Russian Federation Tel.: +7-953-826-98-02, e-mail: shtin92@mail.ru
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