Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
In this study, the effects of the lacquer applied to the printing materials which were printed by electrophotographic printing method on printing quality were investigated. In practice, printing materials with the same weight and different optical properties were used and the study was carried out in three stages. The optical and physical properties of the printing materials used in the fi rst part were determined, in the second part, the printing of these materials by electrophotographic printing method and printability tests were performed. In the third chapter, matte and glossy lacquers were applied to these printed materials and printability tests were repeated. As a result of the study, it was observed that the application of gloss and matte lacquer caused a decrease in the printing density values and also the application of matte lacquer caused a decrease in the gloss values.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
35--40
Opis fizyczny
Bibliogr. 19 poz., rys., tab.,wz.
Twórcy
autor
- Marmara University, School of Applied Sciences, Department of Printing Technologies Istanbul, Turkey
autor
- Marmara University, Institute of Pure and Applied Sciences, Department of Printing Technologies, Istanbul, Turkey
Bibliografia
- 1. Board N. (2003). The complete technology book on printing inks (pp. 411–464). India: Asia Pacifi c Business Press Inc., NIIR.
- 2. Benedek I. & Feldstein M.M. (2019). Technology of pressure-sensitive adhesives and products (pp. 210–228). FL, USA: CRC Press.
- 3. Kipphan, H. (2001). Handbook of Print Media: Technologies and Production Methods (p. 225). Germany: Springer.
- 4. Arslan, S., Sönmez, S. & Şahinbaşkan, T. (2019). Investigation of the effect of cellophane application on print quality in electrophotographic printing system, III. International Printing Technologies Symposium, 10–12 October 2019 (pp. 239–244). Istanbul, Turkey.
- 5. Sönmez, S., Akgül, A., Özomay, Z. & Kurt, M.B. (2017). The investigation of effect of trapping values using water based ink constituted with electrophotographic printing system integrated with screen printing, II. International Printing Technologies Symposium, 3–4 April 2017 (pp. 201–208). İstanbul, Turkey.
- 6. Acton, Q.A. (2013). Alloys—advances in research and application. Atlanta, USA: ScholarlyEditions.
- 7. Leach, R. & Pierce, R. (2007). The printing ink manual (pp. 699–765). Netherlands, Germany: Springer, Science & Business Media.
- 8. Kurt, M.B. & Okur, C. (2020). Examination of color difference of ultraviolet CMYK inks on seize varnish before and after varnish in metal offset printing. In Prof. Dr. H. Akgül & Assoc. Prof. Dr. M. Yüksel (Eds.), Theory and research in science and mathematics II (pp. 53–65). Ankara, Turkey: Gece Publishing.
- 9. Bhat, R. (2014). Evaluating the change in print quality due to liner in self adhesive labels. Int. J. of Sci. and Res. (IJSR), 3(12), 855–858. ISSN: 2319-7064.
- 10. Wang, S., Ihalainen, P., Järnström, J. & Peltonen, J. (2009). The effect of basepaper and coating method on the surface roughness of pigment coatings. J. of Dispersion Sci. and Tech., 30(6), 961–968. DOI: 0.1080/01932690802646447.
- 11. Sönmez, S. (2020). Gloss of paper, In Prof. Dr. B. Kıran (ed.), Current research in engineering siences (pp. 80-82). Izmir, Turkey: Duvar Publishing.
- 12. Ji, W., Pointer, M.R., Luo, R.M. & Dakin, J. (2006). Gloss as an aspect of the measurement of appearance. J. Opt. Soc. Am. A, 23(1), 22–33. DOI: 10.1364/JOSAA.23.000022.
- 13. Leloup, F.B., Audenaert, J. & Hanselaer, P. (2019). Development of an image-based gloss measurement instrument. J. Coatings Tech. Res., 16(4), 913–921. DOI: 10.1007/s11998-019-00184-8.
- 14. Santos, N.F. & Velho, J.L. (2002). Coating structure with calcium carbonate pigments and its infl uence on paper and print gloss (pp. 93–96). Annual Meeting-Technical Section: Canadian Pulp and Paper Association.
- 15. Elmas, G.M. & Sonmez, S. (2011). Printability properties of some ASAM handsheets. Asian J. Chem., 23(6), 2515–2519. ISNN: 0970-7077.
- 16. Bansal, S. & Aggarwal, D. (2011). Color image segmentation using CIELabcolor space using ant colony optimization. Int. J. Comput. Appl., 29(9), 28–34. DOI: 10.5120/3590-4978
- 17. Raval, K., Shukla, R. & Shah, A.K. (2017). Color image segmentation using FCM clustering technique in RGB, L*a*b, HSV, YIQ color spaces. European J. Adv. Eng. Tech., 4(3), 194–200. ISSN: 2394 - 658X
- 18. Evans, M.R. Daytime color appearance of retrorefl ective traffi c control sign materials. Retrieved January 18, 2021, from https://www.fhwa.dot.gov/publications/research/safety/13018/13018.pdf
- 19. Dinesh, C. (2018), Analysis of the applicability of different color difference equations in printing industry. Int. J. Sci. Eng. & Comp. Tech., 8(2–4), 74–79.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-05bb47ba-7ef6-4921-9e59-dcf15094dd5d