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Color gamut volumes of ink-jet prints made on papers suitable for offset technique

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Ink-jet as a digital technology can be used for carrying out very short runlenghts. This constitutes a very important issue nowadays since the digital printing market was estimated to grow by 71% from 2008 to 2013 year. [1] [2] There are many kinds of papers suitable for ink-jet, yet they are rather expensive. This is the reason why users of digital machines search for cheaper equivalents, i.e. offset papers. Unfortunately, such papers can give bad printing quality. Before using them, a considerable number tests should be carried out in order to check what types of offset paper are useful in ink-jet technique.
Rocznik
Strony
10--14
Opis fizyczny
Bibliogr. 27 poz., rys., wykr.
Twórcy
  • Warsaw University of Technology, Faculty of Production Engineering Institute of Mechanics and Printing, Department of Printing Techniques Konwiktorska 2, 00-217 Warsaw, Poland
  • Warsaw University of Technology, Faculty of Production Engineering Institute of Mechanics and Printing, Department of Printing Techniques Konwiktorska 2, 00-217 Warsaw, Poland
Bibliografia
  • [1] Bredsten J., Sorce P.: Personalization in Europe, Printing Industry Center, Rochester Institute of Technology, December 2011
  • [2] Piłczyńska K.: Digital ink-jet for book printing, Kvaliłogia Knigi, Ukrainian Academy of Printing, no 1 (23)/2013, p. 76
  • [3] www.colorcodehex.com/color-model.html , viewed May 2015
  • [4] Jakucewicz S.: Papier w poligrafii, Inicjał, Warszawa 1999, p. 85
  • [5] http://www.widen.com/premediablog/pia-color-managementconference-take-2 , viewed July 2015
  • [6] Wu J.: Influence of coating pigment porosity on inkjet color and lightfastness performance. Science & Technology. 2012, 5, p. 6-17.
  • [7] Chapman D. M., Michos D.: Novel Silica Gels for Glossy, Ink-Receptive Coatings. Journal of Imaging Science and Technology. 2000, 44 (5), p. 418-422.
  • [8] Chovancova V., Howell P., Fleming P.D., Rasmusson A., Color and Lightfastness of Different Epson Ink Jet Ink Sets. 49 (6), 11/12 2005, J. Imaging Sci. Technol., p. 652-659.
  • [9] High Resolution N2 Adsorption Analyses for Porosity of Coating Colors with Binder Polymer Effect. Ishii C., Naoi, S., Koseki, K. & Amari, T. 45 (6), Journal of Imaging Science and Technology, p. 537-541.
  • [10] Khoultchaev K., Graczyk T.,.Influence of Polymer-Polymer Interactions on properties of Inkjet Coatings. 45 (1), 2001, Journal of Imaging Science and Technology, p. 16-23.
  • [11] Larsson M., Engström G., Impact of Calendering on Coating Structures, 22 (2), 2007, Nordic Pulp and Paper Research Journal, p. 267-274.
  • [12] Lee H.K., Joyce M.K., Fleming J.E, Influence of Silica and Slumina Oxide on Coating Structure and Print Quality of Inkjet Papers. Cawthorne. 2005, TAPPI Journal, p. 11-16.
  • [13] Lee H.K., Joyce M.K., Fleming J.E, Influence of Pigment Particle Size and Pigment Ratio on Printability of Glossy Inkjet Paper Coatings. 2005, Journal of Imaging Science and Technology, p. 54-60.
  • [14] Vikman K., Vuorinen T., Water Fastness of Inkjet Prints on Modified Conventional Coatings. Journal of Imaging Science and Technology. 2004, 48 (2), p. 138-147.
  • [15] Wikström M., Bouveng M., Rigdahl M., Impact of High Temperature and Soft Nip Calendering on the Pore Structure of the Coating Layer. Nordic Pulp and Paper Research Journal. 2002, 17 (2), p. 147-152.
  • [16] Withiam M.C., Silica Pigment Porosity Effects on Color Ink jet Printability. Recent Progress in Ink Jet Technologies II. 1999, II, p. 493-501.
  • [17] Mozina K., Agusi J., Rat B., Bracko S., Permanence of inkjet prints in relation to typographic and colorimetric characteristics. International Circle. 7 2014, p. 34-42.
  • [18] Effect of Paper Properties on Print Quality of Inkjet Printer. S. Bandyopadhyay. Florida, 2001. Proceedings of the IS&T NIP177: International Conference on Digital Printing Technologies, p. 141-143.
  • [19] Batz-Sohn C., Storeck A., Scharfe S., Tailor-Made Silica and Alumina for Inkjet Media Coatings. 2004. 20th International Conference on Digital Printing Technologies Final Program and Proceeding, p. 805-810.
  • [20] Chen T., Burch E., High Performance Porous Inkjet Media Derived from Fumed Silica. Alaska. Proceedings of the IS&T NIP23: International Conference on Digital Printing Technologies, p. 110-113.
  • [21] Chovancova V., Howell P., Fleming J.E., Rasmusson A., Printability of Different Epson Ink Jet Ink Sets. Salt Lake City : brak nazwiska, 2004. Proceedings of the IS&T NIP20: International Conference on Digital Printing Technologies, p. 457-463.
  • [22] Lee H.K., Joyce M.K., Fleming J.E, Influence of Pigment Particle on Gloss and Printability for Inkjet Paper Coatings. Salt Lake City, 2004. Proceedings of the IS&T NIP20: International Conference on Digital Printing Technologies. p. 934-939.
  • [23] Monie S.A., Krupkin N.V.: Effect of Silica Pore Characteristics on Inkjet Print Attributes, Denver : 2006, p. 611-614.
  • [24] Superka A., Bashey A. R.: Engineered Pigments for Inkjet Receptive Media. Baltimore, 2005. Proceedings of the IS&T NIP21: International Conference on Digital Printing Technologies, p. 453-456.
  • [25] Vikman K., Fastness Properties of Ink Jet Prints on, 2001, Proceedings of the NIP17: International Conference on Digital Printing Technologies, p. 405-410.
  • [26] Wu Y.J., Lovell V., Pekarovicova A., Fleming P.D., Joyce M.: Color Capability of Inkjet Coating, San Francisco, 2008. Proceedings of the 60th TAGA Annual Technical Conference
  • [27] Blachowski K.: Influence of halftone screening structures in color reproduction on color gamut, Paper review, no 12/2010, p.740
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-270d86cd-dedb-439c-babd-738aba2bcffa
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