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Tytuł artykułu

Investigation on lineworks printed with different types of flexographic printing forms for purposes of printed electronics

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Nowadays one can observe fast development of materials and technologies dedicated to inexpensive mass production of electronic devices with conventional printing techniques. One of them is flexography. In this paper investigation on quality of lineworks printed with flexographic printing technique for purposes of printed electronics is presented. There was analysed influence of different printing forms on printed elements reproduction accuracy. Results obtained with conventional graphic ink with commercially available conductive ink were compared as well. Aspects which should be taken under consideration when implementing flexography to printed electronics applications have been specified.
Rocznik
Strony
3--9
Opis fizyczny
Bibliogr. 20 poz., rys., tab.
Twórcy
  • Research and Development Centre for the Graphic Arts (COBRPP) Miedziana 11, 00-958 Warsaw, Poland
autor
  • Warsaw University of Technology, Institute of Mechanics and Printing, Division of Graphic Arts Konwiktorska 2, 00-217 Warsaw Poland
  • Research and Development Centre for the Graphic Arts (COBRPP) Miedziana 11, 00-958 Warsaw, Poland
autor
  • Research and Development Centre for the Graphic Arts (COBRPP) Miedziana 11, 00-958 Warsaw, Poland
Bibliografia
  • [1] Jakubowska M., Printing techniques in electronics: materials and technology, OWPW, 2013
  • [2] Wong S. W., Salleo A. (editors), Flexible Electronics. Materials and Applications, Springer 2009
  • [3] Hagberg J. et al., Gravure offset printing development for fine line thick film circuits, Microelectronics International, 18(3), pp. 32-35, 2001
  • [4] Tobjörk D., Österbacka R., Paper Electronics, Advanced Materials, 23, pp. 1935-1961, 2011, DOI: 10.1002/adma.20100 4692
  • [5] Hübler A. C. et al., Fully mass printed loudspeakers on paper, Organic Electronics, 13, pp. 2290–2295, 2012
  • [6] Blayo A., Pineaux B., Printing Processes and their Potential for RFID Printing, Joint sOc-EUSAI conference, Grenoble, 2005, [web page] http://ami-conferences.org/2005/proceedings/articles_pagines/89.pdf [accessed on 21 Oct. 2013]
  • [7] Fthenakis V. (editor), Third generation photovoltaics, InTech, 2012, [web page] www.intechopen.com [accessed on 17 Sept. 2013]
  • [8] Krebs, F. C. , Fabrication and processing of polymer solar cells: A review of printing and coating techniques, Solar Energy Materials and Solar Cells, 93(4), pp. 394-412, 2009
  • [9] Krebs, F. C. et al., A complete process for production of flexible large area polymer solar cells entirely using screen printing – First public demonstration, Solar Energy Materials and Solar Cells, 93(4), 2009, pp. 422–441
  • [10] Park H. et al., Fully roll-to-roll gravure printed rectenna on plastic foils for wireless power transmission at 13.56 MHz, Nanotechnology, No. 23, 2012, doi:10.1088/0957-4484/23/34/344006
  • [11] Jakubowska M., Printing techniques in electronics: materials and technology, OWPW, 2013
  • [12] Yin Z. P. et al., Inkjet printing for flexible electronics: Materials, processes and equipments, Chinese Science Bullettin, 30(55), 2010, pp. 3383–3407
  • [13] Dąbrowa T., Hamerliński J., et al., Evaluation of linework elements reproduction in gravure printing for different methods and parameters of electromechanical engraving, Acta Poligraphica, No. 3, 2014, pp. 9-27
  • [14] T. M. Destree, The PIA/GATF guide to troubleshooting for the sheetfed offset press, COBRPP, 2005 (polish edition)
  • [15] J. Krzyżkowski, Y. Pyryev, Cylinder Gap Shock and its Impact on Quality of Prints in Offset Printing Technique, Challenges of modern technology, 4(2), 2013
  • [16] Huebler A.C. et al., Ring oscillator fabricated completely by means of mass-printing technologies, Organic Electronics 8(2007), pp. 480–486
  • [17] Wolfer T. et al., Flexographic and inkjet printing of polymer optical waveguides for fully integrated sensor systems, Procedia Technology, No. 15, 2014, pp. 522 – 530
  • [18] Lorenz A., Evaluation of Flexographic Printing Technology for Multi-Busbar Solar Cells, Energy Procedia, No. 67, 2015, pp. 126 – 137
  • [19] Deganello D. et al., Impact of metered ink volume on reel-toreel flexographic printed conductive networks for enhanced thin film conductivity, Thin Solid Films, No. 520, 2012, pp. 2233–2237
  • [20] Deganello D. et al., Patterning of micro-scale conductive networks using reel-to-reel flexographic printing, Thin Solid Films, No. 518, 2010, pp. 6113–6116
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1b7dac97-cc08-495f-b747-a504cdcdba9b
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