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Compression of Two Rollers in Sheet-Fed Offset Printing Machine

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The most important units of sheet-fed offset printing machine, like the ink and dampening systems as well as a printing unit, are composed, in the main, of contacting rollers of various sizes (in case of the printing unit they are named cylinders). Adequate setting of the said rollers is very important, because it has big influence on quality of print-outs. The settings are made experimentally by measuring the width of the contact area in the ink and dampening systems or by computing the clamp parameters – in the printing unit. This paper includes analysis of compression of two rollers depending on a width of the contact area, radiuses of the rollers as well as their Poisson’s ratios and Young’s modules.
Rocznik
Strony
58--61
Opis fizyczny
Bibliogr. 18 poz., Wykr.
Twórcy
autor
  • Warsaw University of Technology, Faculty of Production Engineering, Institute of Mechanics and Printing, Division of Graphic Art Technologies, Warsaw, Poland, agnieszka.jurkiewicz@wp.eu
Bibliografia
  • 1. Belyaev N. M. (1957), Trudy po teorii uprugosti I plastichnosti (Works on Plasticity and Elasticity Theory), Moscow, Gostekhteorizdat.
  • 2. Birger I. A., Panovko Y. G. (eds) (1968), Strength, stability, vibrations. Mashinostroenie, Moscow, Vol. 2.
  • 3. Chandrasekaran N., Haisler W. E., Goforth R. E. (1987), Finite Elrment Analysis of Problem Hertz Kontakt z Friction, Finite Elements w Analysis and Design, Vol. 3, 39-56.
  • 4. Chehman Y. I., Senkus V. T., Didych V. P., Bosak V. O.(2005), Printing equipment. Textbook, Ukrainian Academy of Printing.
  • 5. Dejidas L. P., Jr., T. M. Destree (2007), Technologia offsetowego drukowania arkuszowego, COBRPP, Warsaw.
  • 6. Destree T. M. (2007), Trudności w arkuszowym drukowaniu offsetowym, COBRPP, Warsaw.
  • 7. Dinnik A. N. (1952), Impact and compression of elastic bodies. Selected Works, Vol. 1, AN UkrSSR, Kiev.
  • 8. Galin L. A., Ed., (1976), Development of Contact Problem Theory in the USSR, Nauka, Moscow.
  • 9. Hoeprich M. R., Zantopulos H. (1981), Line contact deformation: A cylinder between two flat plates. ASME, Journal of Lubrication Tribology, 103, 21-25.
  • 10. Jarema S. M. (2006), Mechanics of contact interaction of pairs of rolling friction of printing systems, UAP, University of Ukraine, Kiev.
  • 11. Johnson K. I. (1985), Contact mechanics, Cambridge University Press, Cambridge.
  • 12. Kipphan H. (2001), Handbook of Print Media, SpringerVerlag, Berlin Heidelberg.
  • 13. Loo T. T. (1958), Effect of Curvature on the Hertz Theory for Two Cylinders in Contact, J. Appl. Mech., 25, 122-124.
  • 14. Muskhelishvili N. I. (1963), Some Basic Problems of the Mathematical Theory of Elasticity, Nordhoff, The Netherlands.
  • 15. Nowacki W. (1970), Teoria sprężystości, PWN, Warszawa.
  • 16. Popov V. L. (2010), Contact Mechanics and Friction, Springer-Verlag Berlin Heidelberg.
  • 17. Timoshenko S. (1962), Goodier J. N., Teoria sprężystości, Arkady, Warszawa.
  • 18. Zhuravlev G. A., Karpenko V.A. (2000), Convergence of elastic bodies modeled by circular cylinders, Machinery engineering. No. 6(28). 51–55.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPB2-0062-0006
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