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Rotary Head Kinematics During Cleaning of Flat Surfaces

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The present article covers the problem of a mathematical description of the trajectory of those postprocessing traces that occur in the process of hydro jet cleaning of flat surfaces with the use of a rotary head. An analysis was conducted of postprocessing traces taking into consideration the provision of their uniform distribution. The determination of the conditions of an effective cleaning will allow such a selection of the working parameters of the head when a surface is obtained of a high quality, i.e. with a uniform degree of the removal of impurities.
Rocznik
Strony
19--26
Opis fizyczny
Bibliogr. 13 poz., Rys.
Twórcy
autor
autor
Bibliografia
  • 1. Azhari A., Schindler Ch., Kerscher E., Grad P. (2012), Improving surface hardness of austenitic stainless steel using waterjet peening process. The International Journal of Advanced Manufacturing Technology, DOI: 10.1007/s00170-012-3962-1.
  • 2. Bodnárová L., Sitek L., Hela R., Foldyna J. (2011), New potential of highspeed water jet technology for renovating concrete structures. Slovak Journal of Civil Engineering, Vol. XIX, No. 2, 1 – 7.
  • 3. Borkowski P., Borkowski J., Bielecki M. (2012), Technical aspects of coal disintegration using high pressure water jet. Journal of Machine Engineering, Vol. 12, No. 2, 7-19.
  • 4. Caydas¸ U., Hascalik A. (2008), A study on surface roughness in abrasive waterjet machining process using artificial neural networks and regression analysis method. Journal of materials processing technology 202, 574–582.
  • 5. Chillman A., Ramulu M., Hashish M. (2007), Waterjet peening and surface preparation at 600 MPa: A preliminary experimental study. Journal of Fluids Engineering, Transactions of the ASME, Vol. 129, Issue 4, 485-490.
  • 6. Frenzel L. (2007), What effect does waterjet clearing have on the surface and surface preparation? American WJTA Conference and Expo. Houston, Texas,.
  • 7. Gałecki G., Mazurkiewicz M. (1987), Trepanate drilling of deep and large diameter holes In hard rock – conceptual study. 3rd Inter. Conf. on Innovative Mining systems. Rolla, Missouri, 245-252.
  • 8. Heinzel C., Antsupov G. (2012),Prevention of wheel clogging in creep feed grinding by efficient tool clearing. CIRP Annals - Manufacturing Technology, Vol. 61, 323–326.
  • 9. Huang L., Folkes J., Kinnell P., Shipway P. H. (2012), Mechanisms of damage initiation in a titanium alloy subjected to water droplet impact during ultra-high pressure plain waterjet erosion. Journal of Materials Processing Technology, Vol. 212, 1906– 1915.
  • 10. Kim Jung-Gyu, Song Jae-Joon, Han Song Soo, Lee Chung-In(2012), Slotting of concrete and rock using an abrasive suspension waterjet system. KSCE Journal of Civil Engineering, Vol. 16, No. 4, 571-578.
  • 11. Kong M. C., Axinte D. A. (2011), Capability of Advanced Abrasive Waterjet Machining and its Applications. Applied Mechanics and Materials (Volumes 110 - 116), Mechanical and Aerospace Engineering, 1674-1682.
  • 12. Shanmugam D. K., Masood S. H. (2009) An investigation on kerf characteristics in abrasive waterjet cutting of layered composites. Journal of materials processing technology 209, 3887–3893.
  • 13. Sharma V., Chattopadhyaya S., Hloch S. (2011), Multi response optimization of process parameters based on Taguchi—Fuzzy model for coal cutting by water jet technology. Int J Adv Manuf Technol, Vol. 56, 1019–1025.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPB2-0068-0024
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