Engineering Journal: Science and InnovationELECTRONIC SCIENCE AND ENGINEERING PUBLICATION
Certificate of Registration Media number Эл #ФС77-53688 of 17 April 2013. ISSN 2308-6033. DOI 10.18698/2308-6033
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Article

Acoustic diagnostics in the process of electrical discharge machining

Published: 17.08.2018

Authors: Stavitskiy I.B.

Published in issue: #8(80)/2018

DOI: 10.18698/2308-6033-2018-8-1793

Category: Aviation and Rocket-Space Engineering | Chapter: Design, construction and production of aircraft

The paper presents theoretical and experimental investigation results concerning acoustic waves generated during electrical discharge machining; we determine and study their sources. We establish that all sources are a function of the discharge current (pulse energy), electric current pulse duration and physical properties of the material being machined. We show that the amplitude of acoustic signals generated during electrical discharge machining is proportional to the working pulse frequency and energy, as well as linked to the output parameters of the machining process. Electrical discharge machining performance may be considered an informative parameter suitable for real-time process diagnostics in order to improve process quality and control efficiency


References
[1] Greshnikov V.A., Drobot Yu.V. Akusticheskaya emissiya. Primenenie dlya ispytaniy materialov i izdeliy [Acoustic emission. Use in material and product testing]. Moscow, Standartinform Publ., 1976, 276 p.
[2] Avdeenko A.M. Fizicheskaya mezomekhanika — Physical Mesomechanics, 2014, vol. 17, no. 1, pp. 83–88.
[3] Mozgovoy N.I., Mozgovaya Ya.G., Pashkova E.A. Obrabotka metallov (tekhnologiya, oborudovanie, instrumenty) — Metal Working and Material Science, 2015, no. 3 (68), pp. 42–48.
[4] Tyutin M.R., Botvina L.R., Levin V.P., Efimov G.A., Kuzelev N.R. Zavodskaya laboratoriya. Diagnostika materialov — Industrial laboratory. Diagnostics of materials, 2017, vol. 83, no. 7, pp. 44–48.
[5] Hutton P.H., Ord R.N. Acoustic Emission. Research Techniques in Nondestructive Testing. Sharpe R.S., ed. Academic Press, 1970, 492 p. [In Russ.: Hutton P.H., Ord R.N. Akusticheskaya emissiya. Metody nerazrushayushchikh ispytaniy. Sharpe R.S., ed. Moscow, Mir Publ., 1972].
[6] Artyukhov V.I., Vakar K.B., Makarov V.I. et al. Akusticheskaya emissiya i ee primenenie dlya nerazrushayushchego kontrolya v yadernoy energetike [Acoustic emission and its use for non-destructive testing in the nuclear power industry]. Vakar K.B., ed. Moscow, Atomizdat Publ., 1980, 216 p.
[7] Aleshin N.P., Belyy V.E., Vopilkin A.Kh. et al. Metody akusticheskogo kontrolya metallov [Methods of acoustic monitoring for metals]. Aleshin N.P., ed. Moscow, Mashinostroenie Publ., 1989, 456 p.
[8] Gorkunov E.S., Efimov A.G., Shubochkin A.E. Kontrol, diagnostika — Testing. Diagnostics, 2016, no. 9, pp. 16–26.
[9] Tverskoy V.S. Defektoskopiya — Russian Journal of Nondestructive Testing, 1981, no. 4, pp. 62–67.
[10] Ovcharuk V.N., Chye E. U. Pribory — Instruments, 2014, no. 1, pp. 37–43.
[11] Chentsov V.P. Akusticheskaya emissiya pri uprugoplasticheskom deformirovanii konstruktsionnykh materialov i opyt ee primeneniya v nerazrushayushchem kontrole [Acoustic emission during elasto-plastic deformation of structural materials and the experience of using it for non-destructive testing]. Khabarovsk, Tomsk, Tomsk Polytechnic University Publ., 2014, 267 p.
[12] Greshnikov V.A., Braginskiy A.P. Defektoskopiya — Russian Journal of Nondestructive Testing, 1980, no. 5, pp. 101–106.
[13] Kino G.S. Acoustic waves: devices, imaging, and analog signal processing. Prentice Hall PTR, 1987, 601 p. [In Russ.: Kino G.S. Akusticheskie volny. Ustroystva, vizualizatsiya i analogovaya obrabotka signalov. Moscow, Mir Publ., 1990, 656 p.].
[14] Muto K., Shiota Y., Futamura S. Study on observation of EDM processing and monitoring of discharging point with acoustic emission. Proc. of Int. Symp. for Electro Machining (ISEM – 9). Nagoya, 1989, pp. 301–304.
[15] Smith C., Koshy P. CIRP Annals — Manufacturing Technology, 2013, vol. 62, no. 1, pp. 171–174.
[16] Kozochkin M.P., Porvatov A.N., Khoteenkov K.E., Tokbergenov M.Zh. Vestnik MGTU “Stankin” — Vestnik «MSTU «STANKIN», 2016, no. 1 (36), pp. 46–52.
[17] Zolotykh B.N. Osnovnye voprosy teoriielektricheskoy erozii v impulsnom razryade v zhidkoy dielektricheskoy srede. Avtoref. dis. … d-ra tekhn. nauk [Main issues of the theory of electric erosion in a pulse discharge in a liquid dielectric medium. Autoref. Dr. Eng. Sc. Diss.]. Moscow, 1968, 52 p.
[18] Bendat J.S., Piersol A.G. Engineering Applications of Correlation and Spectral Analysis. New York, John Wiley and Sons, 1980, 315 p. [In Russ.: Bendat J.S., Piersol A.G. Primeneniya korrelyatsionnogo i spektralnogo analiza. Moscow, Mir Publ., 1983, 300 p.].
[19] Inoue K. Wire-Cut Electrical Discharge Machining. Tokyo, Japan, 1978, 171 p.
[20] Rasskazov N.N. Povyshenie effektivnosti mekhanicheskoy obrabotki na osnove nepreryvnogo kontrolya iznosa i razrusheniya rezhushchego instrumenta metodom akusticheskoy emissii. Avtoref. dis. … kand. tekhn. nauk [Increasing machining efficiency by continuous monitoring of cutting tool wear and failure via acoustic emission. Autoref. Cand. Eng. Sc. Diss.]. Moscow, 1987, 55 p.
[21] Rasskazov N.N., Divaev A.V. Izvestiya vysshikh uchebnykh zavedeniy. Mashinostroenie — Proceedings of Higher Educational Institutions. Маchine Building, 1987, no. 11, pp. 150–153.
[22] Stavitskiy B.I. Elektronnaya Obrabotka Materialov — Surface Engineering and Applied Electrochemistry, 2002, no. 1, pp. 5–33.