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Investigation of abrasive granule movement relatively to the workpiece surface during vibration treatment

НазваInvestigation of abrasive granule movement relatively to the workpiece surface during vibration treatment
Назва англійськоюInvestigation of abrasive granule movement relatively to the workpiece surface during vibration treatment
АвториOlexander Kondratiuk; Leonid Serilko; Oleg Lyashuk (https://orcid.org/0000-0003-4881-8568); Yuriy Galan
ПринадлежністьNational University of Water and Environmental Engineering, Rivne, Ukraine Ternopil Ivan Puluj National Technical University, Ternopil, Ukraine
Бібліографічний описInvestigation of abrasive granule movement relatively to the workpiece surface during vibration treatment / Olexander Kondratiuk; Leonid Serilko; Oleg Lyashuk; Yuriy Galan // Scientific Journal of TNTU. — Tern. : TNTU, 2020. — Vol 98. — No 2. — P. 59–67.
Bibliographic description:Kondratiuk O.; Serilko L.; Lyashuk O.; Galan Yu. (2020) Investigation of abrasive granule movement relatively to the workpiece surface during vibration treatment. Scientific Journal of TNTU (Tern.), vol 98, no 2, pp. 59–67.
DOI: https://doi.org/10.33108/visnyk_tntu2020.02.059
УДК

621.9.048

Ключові слова

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

The review of vibration treatment is carried out in this paper. The workpiece vibration treatment is essential in ensuring the engineering products quality. The schemes of abrasive granule interaction with the workpiece surface during vibration and vibration-centrifugal treatment are considered. Process analysis is based on the nature of the abrasive pellet interaction with the workpiece surface. The whole process of roughness forming on VCP is divided into certain stages. The proposed models reveal the physical nature of the granules interaction with the workpiece surface.

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 pp.
  2. Yushchunev M. N. Otdelka poverkhnosti i povyshenie prochnosti detalei pri ob"emnoi vibratsionnoi obrabotke. [Surface finish and increase the strength of parts during volumetric vibration processing] Uprochnyayushche-kalibruyushchie metody obrabotki detalei. Rostov na Donu: RISKhM, 1970. P. 174–176.
  3. Yushchunev M. N. Otdelochno-uprochnyayushchaya obrabotka v ustanovke s vibriruyushchim i vrashchayushchimsya konteinerom. [Finishing and hardening treatment in a unit with a vibrating and rotating container] Vibratsionnaya obrabotka detalei mashin i priborov. Rostov na Donu: RISKhM, 1972. P. 105–112.
  4. Kondratyuk O. M. Teoretichna model' protsesu vіbratsіino-vіdtsentrovoї obrobki [Theoretical model of the process of vibration-centrifugal processing]. Vіsnik NUVGP: zb. nauk. pr. Rіvne: NUVGP, 2007. Vol. 2 (38). P. 286–293.
  5. Kondratyuk A., Ljasuk O., Klen Action V., Galan Y. Investigation of the interaction of abrasive working medium particle in vibration treatment with machined parts of surfaces, of the Ternopil National Technical University. Scientific Journal of the Ternopil National Technical University, 2017. Vol. 2 (86). P. 32–40.
  6. 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.
  7. Schehorsky A., Kravchenko M., Kozakov O., Polonsky L. Statistical method of finding quality indicators distribution of surfaces treated in thickness of gas-thermal coatings in various depths. Bulletin of TNTU. Ternopil: TNTU, 2014. Volume 76. No. 4. P. 135–148.
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 pp.
  2. Yushchunev M. N. Otdelka poverkhnosti i povyshenie prochnosti detalei pri ob"emnoi vibratsionnoi obrabotke. [Surface finish and increase the strength of parts during volumetric vibration processing] Uprochnyayushche-kalibruyushchie metody obrabotki detalei. Rostov na Donu: RISKhM, 1970. P. 174–176.
  3. Yushchunev M. N. Otdelochno-uprochnyayushchaya obrabotka v ustanovke s vibriruyushchim i vrashchayushchimsya konteinerom. [Finishing and hardening treatment in a unit with a vibrating and rotating container] Vibratsionnaya obrabotka detalei mashin i priborov. Rostov na Donu: RISKhM, 1972. P. 105–112.
  4. Kondratyuk O. M. Teoretichna model' protsesu vіbratsіino-vіdtsentrovoї obrobki [Theoretical model of the process of vibration-centrifugal processing]. Vіsnik NUVGP: zb. nauk. pr. Rіvne: NUVGP, 2007. Vol. 2 (38). P. 286–293.
  5. Kondratyuk A., Ljasuk O., Klen Action V., Galan Y. Investigation of the interaction of abrasive working medium particle in vibration treatment with machined parts of surfaces, of the Ternopil National Technical University. Scientific Journal of the Ternopil National Technical University, 2017. Vol. 2 (86). P. 32–40.
  6. 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.
  7. Schehorsky A., Kravchenko M., Kozakov O., Polonsky L. Statistical method of finding quality indicators distribution of surfaces treated in thickness of gas-thermal coatings in various depths. Bulletin of TNTU. Ternopil: TNTU, 2014. Volume 76. No. 4. P. 135–148.
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