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A study of properties of POSS-modified varnish coatings UV-cured on a wood surface

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Research was carried out in a new topic area related to the quality of lacquer finishes on wood surfaces, such as furniture or floor elements. Selected results are presented relating to basic mechanical properties of composite varnish coatings modified with a selected commercial POSS compound, photo-cured on the surface of a chosen wood species. The test results obtained for two groups of varnish coatings differing in the varnish binder used (oligoether or oligoester) pointed to various effects of POSS modification of the varnish compositions and UV-cured coatings. These effects were dependent on the functional property considered as well as the content of POSS nanofiller in the varnish composition. In general, the presence of selected POSS molecules in the UV coating structure improved its abrasion and linear scratching resistance, but did not improve – or even slightly reduced – the adhesion of the coating to the wood surface.
Rocznik
Strony
127--145
Opis fizyczny
Bibliogr. 34 poz., rys., tab.
Twórcy
  • Łukasiewicz Research Network – Wood Technology Institute, Poznan, Poland
  • Wood Technology Institute, Poznan (2011-2014)
Bibliografia
  • Amerio E., Sangermano M., Colucci G., Malucelli G., Messori M., Taurino R., Fabbri P. [2008]: UV curing of organic-inorganic hybrid coatings containing polyhedral oligomeric silsesquioxane blocks. Macromolecular Materials and Engineering 293: 700-707
  • Andrzejewska E., Marcinkowska A., Wegner K. [2011]: Nanocomposites obtained by photopolymerization of (methacrylate monomer)/(methacrylate functionalized polyhedral oligomeric silsesquioxane) system. Polimery 56 [1]: 63-66
  • Ayandele E., Sarkar B., Alexandridis P. [2012]: Polyhedral oligomeric silsesquioxane (POSS)-containing polymer nanocomposites. Nanomaterials [2]: 445-475
  • Banecki J. [2011]: Comparative studies of furniture lacquer coatings’ resistance to linear scratching acc. to the method described in TS 15186:2005. Drewno 54 [185]: 61-80
  • Bizet S., Galy J., Gerard J.-F. [2006]: Structure−property relationships in organic−inorganic nanomaterials based on Methacryl−POSS and dimethacrylate networks. Macromolecules 39: 2574-2583
  • Constantin F., Gârea S.A., Iovu H. [2013]: The influence of organic substituents of polyhedral oligomeric silsesquioxane on the properties of epoxy-based hybrid nanomaterials. Composites Part B 44: 558-564
  • Cordes D.B., Lickiss P.D., Rataboul F. [2010]: Recent developments in the chemistry of cubic polyhedral oligosilsesquioxanes. Chemical Reviews 110: 2081-2173
  • Dutkiewicz M., Maciejewski H., Marciniec B., Szołyga M. [2014]: Thiirane functional spherosilicate as epoxy resin modifier: Synthesis and thermal stability. Journal of Thermal Analysis and Calorimetry 117 [1]: 259-264
  • Guirong P. [2007]: Polyhedral oligomeric silsesquioxane (POSS). Physical properties of polymer handbook, chapter 34: 577-584
  • Haddad T.S., Lichtenhan J.D. [1996]: Hybrid organic-inorganic thermoplastics: Styryl-based polyhedral oligomeric silsesquioxane polymers. Macromolecules 29: 7302-7304
  • Hu L.-C., Shea K.J. [2011]: Organo-silica hybrid functional nanomaterials: how do organic bridging groups and silsesquioxane moieties work hand-in-hand? Chemical Society Reviews 40: 688-695
  • Janowski B., Pielichowski K. [2008]: Polimery nanohybrydowe zawierające poliedryczne oligosilseskwioksany. Polimery 53 [2]: 87-98
  • Kopesky E.T., McKinley G.H., Cohen R.E. [2006]: Toughened poly(methyl methacrylate) nanocomposites by incorporating polyhedral oligomeric silsesquioxanes. Polymer 47: 299-309
  • Kurek J. [2004]: Powłoki funkcyjne. Lakiernictwo Przemysłowe [4] 30: 20-21
  • Lee A., Lichtenhan J.D. [1999]: Thermal and viscoelastic property of epoxy-clay and hybrid inorganic-organic epoxy nanocomposites. Journal of Applied Polymer Science 73: 1993-2001
  • Li G.Z., Wang L., Toghiani H., Daulton T.L., Koyama K., Pittman Jr C.U. [2001]: Viscoelastic and mechanical properties of epoxy/multifunctional polyhedral oligomeric silsesquioxane nanocomposites and epoxy/ladderlike polyphenylsilsesquioxane blends. Macromolecules 34: 8686-8693
  • Lichtenhan J.D., Otonari Y.A., Carr M.J. [1995]: Linear hybrid polymer building blocks: methacrylate-functionalized polyhedral oligomeric silsesquioxane monomers and polymers. Macromolecules 28: 8435-8437
  • Lichtenhan J.D., Vu N.Q., Carter J.A., Gilman J.W., Feher F.J. [1993]: Silsesquioxane-siloxane copolymers from polyhedral silsesquioxanes. Macromolecules 26: 2141-2142
  • Liu H., Zheng S. [2005]: Polyurethane networks nanoreinforced by polyhedral oligomeric silsesquioxane. Macromolecular Rapid Communications 26: 196-200
  • Marciniec B. [2010]: Funkcjonalizowane oktasilseskwioksany klatkowe (T8) jako podstawa hybrydowych nanokompozytow polimerowych. Przemysł Chemiczny 89 [9]: 1184-1187
  • Phillips S.H., Haddad T.S., Tomczak S.J. [2004]: Developments in nanoscience: polyhedral oligomeric silsesquioxane (POSS)-polymers. Current Opinion in Solid State and Materials Science [8]: 21-29
  • Pielichowski K., Njuguna J., Janowski B., Pielichowski J. [2006]: Polyhedral oligomeric silsesquioxanes (POSS)-containing nanohybrid polymers. Advances in Polymer Science 201: 225-296
  • Pilch-Pitera B. [2013]: Blocked polyisocyanates containing monofunctional polyhedral oligomeric silsesquioxane (POSS) as crosslinking agents for polyurethane powder coatings. Progress in Organic Coatings 76: 33-41
  • Prządka D., Marcinkowska A., Andrzejewska E. [2016]: POSS-modified UV-curable coatings with improved scratch hardness and hydrophobicity. Progress in Organic Coatings 100: 165-172
  • Qin Y., Bi Y., Ren H., Zhu F., Luo M., Zhang L. [2010]: Poly(methylmethacrylate)/Meth-acryl-POSS nanocomposites with excellent thermal properties. Chinese Journal of Chemistry 28: 2527-2532
  • Scott D.W. [1946]: Thermal rearrangement of branched-chain methylpolysiloxanes. Journal of the American Chemical Society 68: 356-358
  • Wang X., Hu Y., Son L., Xing W., Lu H., Lv P., Jie G. [2011]: UV-curable waterborne polyurethane acrylate modified with octavinyl POSS for weatherable coating applications. Journal of Polymer Research 18: 721-729
  • Wojtas A., Zaborski M., Kosmalska A. [2010]: Wpływ dodatku oligosilseskwioksanów klatkowych T8 na właściwości mechaniczne kauczuku silikonowego. Polimery 55 [3]: 208-214
  • List of standards
  • PN-EN ISO 4624:2004 Farby i lakiery – Proba odrywania do oceny przyczepności (Paints and varnishes – Pull-off test for adhesion)
  • PN-EN ISO 2808:2008 Farby i lakiery – Oznaczanie grubości powłoki (Paints and varnishes – Determination of film thickness)
  • PN-EN 13722:2006 Meble – Ocena połysku powierzchni (Furniture – Assessment of the surface gloss)
  • PN-EN 15185:2011 Meble – Ocena odporności powierzchni na ścieranie (Furniture – Assessment of the surface resistance to abrasion)
  • PN-EN 15186:2012 Meble – Ocena odporności powierzchni na zarysowanie (Furniture – Assessment of the surface resistance to scratching)
  • PN-ISO 4211-4:1999 Meble – Badanie powierzchni – Ocena odporności na uderzenie (Furniture – Tests for surfaces – Part 4: Assessment of resistance to impact)
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-becaab01-3919-4efa-b191-48267942189f
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