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Investigation of the operation of vibration-centrrifugal installation for automobile parts machining

НазваInvestigation of the operation of vibration-centrrifugal installation for automobile parts machining
Назва англійськоюInvestigation of the operation of vibration-centrrifugal installation for automobile parts machining
АвториOleg Lyashuk, Leonid Serilko, Ivan Hevko, Olexander Kondratiuk, Oleg Tsion; Yuriy Galan
ПринадлежністьTernopil Ivan Puluj National Technical University, Ternopil, Ukraine National University of Water and Environmental Engineering, Rivne, Ukraine
Бібліографічний описInvestigation of the operation of vibration-centrrifugal installation for automobile parts machining / Oleg Lyashuk, Leonid Serilko, Ivan Hevko, Olexander Kondratiuk, Oleg Tsion, Yuriy Galan // Scientific Journal of TNTU. — Tern.: TNTU, 2021. — Vol 101. — No 1. — P. 79–88.
Bibliographic description:Lyashuk O., Serilko L., Hevko I., Kondratiuk O., Tsion O., Galan Yu. (2021) Investigation of the operation of vibration-centrrifugal installation for automobile parts machining. Scientific Journal of TNTU (Tern.), vol 101, no 1, pp. 79–88.
DOI: https://doi.org/10.33108/visnyk_tntu2021.01.079
УДК

621.9.048

Ключові слова

vibration treatment, technological process, abrasive granule, granule speed, kinetic energy.

The scheme of vibration-centrifugal installation, providing the increase of productivity and efficiency of machine parts vibration treatment is presented in this paper. The influence of the treated environment on the technological vibration treatment process and determination of its optimal parameters is investigated on the basis of mathematical modeling. Graphical dependences of specific kinetic energy on the crank rotational velocity at different values of the fork rotational velocity are presented. Effective ways of technological process parameters optimization and new ways of its development are identified.

ISSN:2522-4433
Перелік літератури
  1. Babichev A. P., Trunin V. B., Samodumskii Yu. M., Ustinov V. P. Vibratsionnye stanki dlya obrabotki detalei [Vibrating Machines for Parts Processing]. Moscow: Mashinostroenie, 1984. 168 p.
  2. Kondratjuk O. M., Romejko I. V. Analiz cyrkuljaciji robochogho seredovyshha pry vibracijno-vidcentrovij obrobci detalej [Analysis of the circulation of the working medium during vibration-centrifugal machining of parts]. Visnyk NUVGhP. Vypusk 2 (3). Rivne: 2006. Р. 253–271.
  3. Pat. 109854 Ukrajina, MPK V24 V31/6. Vibracijno-vidcentrova ustanovka. [Vibrating and centrifugal installation] / Kondratjuk O. M., Ghalan Ju. A., Ljashuk O. L., Skyba O. P.; zajavnyk ta patentovlasnyk: Kondratjuk O. M., Ghalan Ju. A., Ljashuk O. L., Skyba O. P.; u 2016 02643; zajavl. 17.03.2016;
    opubl. 12.09.2016, Bjul. № 17.
  4. Serilko L. S., Kondratjuk O. M. Analiz vyznachennja syly rizannja i znjattja metalu pry obrobci detalej v abrazyvnomu seredovyshhi vibracijno-vidcentrovogho stanka [Analysis of the determination of the cutting force and metal removal when processing parts in an abrasive environment of a vibration-centrifugal machine] Vseukrajinsjkyj naukovo-tekhnichnyj zhurnal “Vibraciji v tekhnici ta tekhnologhijakh”. Vypusk № 2 (47)/ 2007. Р. 64–69.
  5. Pavlovsjkyj M. A. Teoretychna mekhanika: pidruchnyk. K.: Tekhnika, 2002. 512 р.
  6. URL: ttps://uk.wikipedia.org/wiki/%D0%86%D0%BA%D0%BE%D1%81%D0%B0%D0%B5%D0%B4 %D1%80.
  7. Alexander Kondratyuk, Oleg Ljasuk, Volodymyr Klen Action, Yuriy Galan Investigation of the interaction of abrasive working medium particle in vibration treatment with machined parts of surfaces. Bulletin of the Ternopil National Technical University. Scientific Journal of the Ternopil National Technical University. 2017. No. 2 (86). P. 32–40.
  8. Коndratiuk O., Теslia V., Кuchvara I., Bosiuk P., Galan Yu. Theoretical substantiation of vibration-centrifugal finishing of parts by loose abrasives. MOTROL. Commission of Motorization and Energetics in Agriculture. Lublin-Rzeszów, 2018. Vol. 20. No. 1. P. 73–78.
  9. Pshenychnyj Y. N. Rasshyrenye tekhnologhycheskykh vozmozhnostej obrabotky detalej v vybryrujushhykh kontejnerakh [Expansion of technological capabilities for processing parts in vibrating containers]: dys. ... kand. tekh. nauk: 05.03.01. Lughansk, 2004. 265 p.

 

References:
  1. Babichev A. P., Trunin V. B., Samodumskii Yu. M., Ustinov V. P. Vibratsionnye stanki dlya obrabotki detalei [Vibrating Machines for Parts Processing]. Moscow: Mashinostroenie, 1984. 168 p.
  2. Kondratjuk O. M., Romejko I. V. Analiz cyrkuljaciji robochogho seredovyshha pry vibracijno-vidcentrovij obrobci detalej [Analysis of the circulation of the working medium during vibration-centrifugal machining of parts]. Visnyk NUVGhP. Vypusk 2 (3). Rivne: 2006. Р. 253–271.
  3. Pat. 109854 Ukrajina, MPK V24 V31/6. Vibracijno-vidcentrova ustanovka. [Vibrating and centrifugal installation] / Kondratjuk O. M., Ghalan Ju. A., Ljashuk O. L., Skyba O. P.; zajavnyk ta patentovlasnyk: Kondratjuk O. M., Ghalan Ju. A., Ljashuk O. L., Skyba O. P.; u 2016 02643; zajavl. 17.03.2016;
    opubl. 12.09.2016, Bjul. № 17.
  4. Serilko L. S., Kondratjuk O. M. Analiz vyznachennja syly rizannja i znjattja metalu pry obrobci detalej v abrazyvnomu seredovyshhi vibracijno-vidcentrovogho stanka [Analysis of the determination of the cutting force and metal removal when processing parts in an abrasive environment of a vibration-centrifugal machine] Vseukrajinsjkyj naukovo-tekhnichnyj zhurnal “Vibraciji v tekhnici ta tekhnologhijakh”. Vypusk № 2 (47)/ 2007. Р. 64–69.
  5. Pavlovsjkyj M. A. Teoretychna mekhanika: pidruchnyk. K.: Tekhnika, 2002. 512 р.
  6. URL: ttps://uk.wikipedia.org/wiki/%D0%86%D0%BA%D0%BE%D1%81%D0%B0%D0%B5%D0%B4 %D1%80.
  7. Alexander Kondratyuk, Oleg Ljasuk, Volodymyr Klen Action, Yuriy Galan Investigation of the interaction of abrasive working medium particle in vibration treatment with machined parts of surfaces. Bulletin of the Ternopil National Technical University. Scientific Journal of the Ternopil National Technical University. 2017. No. 2 (86). P. 32–40.
  8. Коndratiuk O., Теslia V., Кuchvara I., Bosiuk P., Galan Yu. Theoretical substantiation of vibration-centrifugal finishing of parts by loose abrasives. MOTROL. Commission of Motorization and Energetics in Agriculture. Lublin-Rzeszów, 2018. Vol. 20. No. 1. P. 73–78.
  9. Pshenychnyj Y. N. Rasshyrenye tekhnologhycheskykh vozmozhnostej obrabotky detalej v vybryrujushhykh kontejnerakh [Expansion of technological capabilities for processing parts in vibrating containers]: dys. ... kand. tekh. nauk: 05.03.01. Lughansk, 2004. 265 p.

 

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