Development of software and hardware device of automated system of the process stabilization of arc dimensional processing

Authors

DOI:

https://doi.org/10.15587/2312-8372.2015.36244

Keywords:

stabilization process, arc dimensional processing, programmable logic controller, the supply electrode

Abstract

This article discusses the implementation of software and hardware device of automated system of the process stabilization of arc dimensional processing on EDM machines and some results of our research in this area are given. The main aim of research is to develop a functional structure of the program software and hardware devices and then checking its performance. Software and hardware device controller, based on a programmable logic controller, controls the automated electric supply tool electrode for EDM type of AMH-1.

It is given the dependences that describe the control law according to which the programmable logic controller stabilizes and supports the arc parameters.

The use of modern process control systems of EDM allows processing the materials with higher energy efficiency and less resource consumption.

This paper proposes a variant of the problem solution of automated system of the process stabilization of arc dimensional processing.

This system allows to automate the process of finding and maintaining the feed rate of the tool-electrode in an area close to the quasi-optimal performance of the process.

The investigation results can be used by designers in the field of process automation of tool electrode submission during EDM machining of metals.

Author Biographies

Григорій Володимирович Савеленко, Kirovograd National Technical University, ave. University, 8, Kirovograd, Ukraine, 25000

Assistant

Department Economics and Organization of Production

Юрій Олексійович Єрмолаєв, Kirovograd National Technical University, ave. University, 8, Kirovograd, Ukraine, 25000

Ph.D., Assistant Professor

Department of automation of production processes

Олександр Георгійович Собінов, Kirovograd National Technical University, ave. University, 8, Kirovograd, Ukraine, 25000

Lecturer

Department of Software

Василь Іванович Гуцул, Kirovograd National Technical University, ave. University, 8, Kirovograd, Ukraine, 25000

Ph.D., Associate Professor

Department of Mathematics

References

  1. Nosulenko, V. I. (2005). Razmernaya obrabotka metallov elektricheskoy dugoy. Elektronnaya obrabotka materialov, 1, 8-17
  2. Nosulenko, V. I. (2006). O fizicheskoy prirode, ob obshchem i otlichiyakh, tekhnologicheskikh vozmozhnostyakh elektricheskikh razryadov i klassifikatsii sposobov elektrorazryadnoy obrabotki metallov. Elektronnaya obrabotka materialov, 1, 4-14
  3. Savelenko, G. V. (2013). Obosnovaniye algoritma raboty ekstremalnogo regulyatora podachi elektroda-instrumenta na stankakh razmernoy obrabotki dugoy. Materialy I mezhdunarodnoy zaochnoy nauchno-prakticheskoy konferentsii "Avtomatizirovannoye proyektirovaniye v mashinostroyenii". Novokuznetsk: Izdatelskiy tsentr SibGIU, 115-122
  4. Yermolayev, Yu. O.; KNTU. (2011). Modernizatsiya elektromekhanichnoyi chastyny pryvoda podachi elektroeroziynoho verstata dlya rozmirnoyi obrobky duhoyu. Zvit pro NDR, № derzhreyestratsiyi 0111U007656. Kirovohrad, 34.
  5. Yermolayev, Yu. O., Savelenko G. V. (2004). Rozrobka SAU elektromekhanichnoho pryvodu verstata typu “DUHA” na bazi “ESHYM–1”. Zbirnyk naukovykh prats KNTU, 15, 270-273.
  6. Gutkin, B. G. (1971). Avtomatizatsiya elektroerozionnykh stankov. L.: Mashinostroyeniye, 160.
  7. Savelenko, G. V. (2015). The method of automatically determining of stability of the process dimensional of arc. Eastern-European Journal of Enterprise Technologies, 1(73), ?. doi:10.15587/1729-4061.2015.36226
  8. Yermolayev, Yu. O., Velykyy, P. M., Savelenko, G. V. (2007). Doslidzhennya SAU protsesu ROD na verstati z elektromekhanichnym pryvodom. I. Osnovni faktory, shcho vplyvayut na protses. Zbirnyk naukovykh prats KNTU, 19, 270-273.
  9. Sobinov, O. H. (2006). Modelyuvannya shvydkosti znimannya materialu pry tekhnolohichnomu protsesi rozmirnoyi obrobky duhoyu. Zbirnyk naukovykh prats KNTU, 17, 247-252.
  10. Smirnova, N. V., Smirnov, V. V. (2012). Opredeleniye parametrov volt-ampernoy kharakteristiki dugi pri izmenenii velichiny mezhelektrodnogo promezhutka. Zbirnyk naukovikh prats KNTU: Tekhnika v sílskogospodarskomu virobnitstvi, galuzeve mashinobuduvannya, avtomatizatsíya, 25 (2), 272-277.
  11. Smirnova, N. V. (2011). Korrelyatsionnyy metod opredeleniya parametrov rabochey tochki dugi v protsesse razmernoy obrabotki detaley elektricheskoy dugoy. Nauchno-prakticheskiy zhurnal "Otraslevyye aspekty tekhnicheskikh nauk", 3, 25-28.
  12. Smirnova, N. V., Smirnov, V. V.; In: Husak, O. H., Yevtukhov, V. H. (2012). Upravleniya rezhimom goreniya dugi v protsesse razmernoy obrabotki detaley elektricheskoy dugoy. Materialy II Vseukrayinskoyi mizhvuzivskoyi naukovo-tekhnichnoyi konferentsiyi "Suchasni tekhnolohiyi v promyslovomu vyrobnytstvi", Sumy, Part 1, 153.
  13. Savelenko, G. V., Yermolayev, Yu. O. (2014). Extreme regulator structure grounding of automated process productivity of electric discharge machining. Technology Audit And Production Reserves, 6(4(20)), 42-47. doi:10.15587/2312-8372.2014.32750
  14. Nosulenko, V. I., Sisa, O. F. (2006). Stalist protsesu rozmirnoyi obrobky metaliv elektrychnoyu duhoyu ne profilovanym elektrodom. Zbirnyk naukovykh prats KNTU, V. 15, 148-153.
  15. Zelenova, I. Ya., Dorozhko, L. I., Miroshkin, A. N. (2007). Sistema avtomatizirovannogo proyektirovaniya kompozitsionnykh mikroprogrammnykh ustroystv upravleniya. Naukovi pratsi Donetskoho natsionalnoho tekhnichnoho universytetu. Seriya: Problemy modelyuvannya ta avtomatyzatsiyi proektuvannya, 6 (127), 54-61.
  16. Nikolayev, A. A., Kornilov, G. P., Tulupov, P. G., Yakimov, I. A., Povelitsa, Ye. V., Anufriyev, A. V. (2014). Razrabotka usovershenstvovannoy sistemy avtomaticheskogo upravleniya polozheniyem elektrodov dugovykh staleplavilnykh pechey i agregatov kovsh-pech. Russian Internet Journal of Electrical Engineering. Vol. 1, No. 1, 48-58. Available: http://www.electrical-engineering.ru/issues/2014/2014-1-8.pdf
  17. Savelenko, H. V., Yermolayev, Yu. O. (2014). Doslidzhennya robochoho protsesu rozmirnoyi obrobky duhoyu na verstati z elektromekhanichnym pryvodom. Kompyuterno-intehrovani tekhnolohiyi: osvita, nauka, vyrobnytstvo, 14, 164-169. Available: http://nbuv.gov.ua/j-pdf/Kitonv_2014_14_27.pdf
  18. POR P. D. R. ARM Cortex-M4 32b MCU+ FPU, 225DMIPS, up to 2MB Flash/256+ 4KB RAM, USB OTG HS/FS, Ethernet, 17 TIMs, 3 ADCs, 20 comm. interfaces, camera & LCD-TFT. (April 2014). Available: http://www.st.com/web/en/resource/technical/document/datasheet/DM00071990.pdf

Published

2015-01-29

How to Cite

Савеленко, Г. В., Єрмолаєв, Ю. О., Собінов, О. Г., & Гуцул, В. І. (2015). Development of software and hardware device of automated system of the process stabilization of arc dimensional processing. Technology Audit and Production Reserves, 1(3(21), 22–28. https://doi.org/10.15587/2312-8372.2015.36244