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Creation of bas-relief basing on photography using high-pressure abrasive-water jet

Autorzy
Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Presented technology of spatial superficial material forming based on flat virtual image (picture) luminance is a new, original own application of high-pressure abrasive-water jet forming. Basis of spatial forming of ceramic and rock materials with high-pressure abrasive-water jet in conjunction with depth and jet velocity parameters are described in. It was built a control system and developed adequate algorithms allowing the 3D sculpturing operation of different complex objects to be mechanized.
Rocznik
Strony
43--51
Opis fizyczny
Bibliogr. 13 poz., tab., rys.
Twórcy
autor
  • Koszalin University of Technology, Unconventional HydroJetting Technology Center
Bibliografia
  • [1] AGUS M.. BORTOLUSSI A., CICCU R., Granite cutting with AWJ: influence of abrasive properties. Int. Conf. on Jet Cutting Technology. Rouen, 1994. Paper No. 18.
  • [2] BORKOWSKI J., BORKOWSKI P., Optimization of materials cutting with abrasive suspension jet. Advances in Manufacturing Science and Technology. Vol. 28. No.2, 2004,49-59.
  • [3] BORKOWSKI P., Theoretical and experimental basis of hydro-jet surface treatment (in Polish). Publ. Koszalin Univ. of Technology, 2004.
  • [4] BORKOWSKI P., High-pressure abrasive-water jet surface treatment (in Polish). Publ. Proecological Techno I. Center. Koszalin, 2002.
  • [5] BORKOWSKI P., High-pressure abrasive-water jet surface treatment of rock materials (in Polish). VI Int. Conf. on Non-metal Materials Cutting NM'200I. Rzeszow-Zakopane, 2001, 159-166.
  • [6] BORKOWSKI P., ŻUKOCIŃSK1 T.; Three dimensional method of material forming using high-pressure abrasive-water jet controlled by flat image luminance. 18th Int. Conf. on Jetting Technology. Gdansk, 2006, 265- 274.
  • [7] BORKOWSKI P., ŻUKOCIŃSKI T., Basis of three dimensional forming using high-pressure abrasive-water jet controlled by virtual image luminance. Advances in Manufacturing Science and Technology. Vol. 30, No. 1,2006,53-62.
  • [8] FENGGANG L., GESKIN E. S., TISMENETSKIY L., Feasibility study of abrasive water jet polishing. 13th Int. Conf. on Jetting Technology. Sardinia, 1996, 709-723.
  • [9] GROPPETTI R., GUTEMA T., DI LUCCHIO A., Contribution to the analysis of some kerf quality attributes for precision abrasive water jet cutting 14th Int. Conf. on Jetting Technology. Brugge, 1998, 253-269.
  • [10] HENNING A., WESTKAMPER E., Modelling of contour generation in abrasive waterjet cutting 15th Int. Conf. on Jetting Technology. Ronneby, 2000, 309-320.
  • [11] HLAVA L. M., Interaction of ¡grains with waterjet - the base of the physical derivation of complex equation for jet cutting of rock materials. 13th Int. Conf. on Jetting Technology. Sardinia, 1996 ,471 -485.
  • [12] LEE C.-I., KIM W.-M., KIM H.-M., KIM D.-I., Testing of waterjet .system for rock surface treatment. Int. Symp. on New Applications of Water Jet Technology. Ishinomaki, 1999, 171-178.
  • [13] MOMBER A. W., KOVACEVIC R., Principles of abrasive water jet machining. Springer-Verlag. London Ltd., 1998
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-a372f2b5-9e3d-4689-b977-75290a9b844c
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