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Technological properties of polymer concrete containing vinyl-ester resin waste mineral powder

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The aim of the presented research was to assess the possibility of using waste mineral powder (remaining after preparation of aggregates for mineral-asphalt composites) as a component of polymer concrete with vinyl-ester resin used as the binder. The evaluation was done in terms of chosen technological properties, namely: consistence and temperature changes during setting of polymer mix. The first part of the paper contains material characteristics (chemical composition, particles size distribution, specific surface area) of mineral powders – both commonly used quartz powder and waste mineral powder – applied into polymer concrete as the finest fraction of aggregate. The second part of the research was focused on characteristics of setting of micro-mortars with vinyl-ester resin modified with the waste powder and consistence of concrete mixes prepared with use of those micro-mortars. Taking into consideration obtained data, author determined the optimal compositions of concrete with vinyl-ester resin and waste mineral powder of technical properties not worse than in case of regular (non-modified) one, but at the same time definitely more ecological.
Rocznik
Strony
84--91
Opis fizyczny
Bibliogr. 23 poz., rys., tab. wykr.
Twórcy
  • Department of Building Materials Engineering, Faculty of Civil Engineering, Warsaw University of Technology, Al. Armii Ludowej 16, 00-637 Warsaw, Poland
Bibliografia
  • Atzeni C., Massidda L., Sanna U.: Mechanical properties of epoxy mortars with fly ash as filler. Cement and Concrete Composites 12 (1990), 3-8.
  • Bignozzi M.C., Saccani A., Sandrolini F.: New polymer mortars containing polymeric wastes. Part 1. Microstructure and mechanical properties. Composites Part A: Applied Science and Manufacturing 31 (2000), 97-106. http://dx.doi.org/10.1016/S1359- 835X(99)00063-9
  • Bignozzi M.C., Saccani A., Sandrolini F.: Glass waste valorization in advanced composite materials. In: “Proc. 11th int congress on polymers in concrete – ICPIC ’04” Maultzsch M editors. Berlin; 2004. 587-595.
  • Czarnecki L., Garbacz A., Kurzydłowski K.: Morphology of polymer concrete microstructure. In “Proc. 8th int congress on polymers in concrete – ICPIC’95” Van Gemert D editor. Oostende, 1995. 299-304.
  • Czarnecki L., Garbacz A., Sokołowska J.J.: Fly Ash Polymer Concretes. In: “Proceeding of the second international conference on sustainable construction materials and technologies–SCMT”, Ancona, 2010. 127-137.
  • Czarnecki L., Sokołowska J.J.: Optimization of polymer-cement coating composition using material model. Key Engineering Materials 466 (2011), 191-199. https://dx.doi.org/10.4028/www.scientific.net/KEM.466.191
  • Czarnecki L., Sokołowska J.J.: Material model and revealing the truth. Bulletin Of The Polish Academy Of Sciences Technical Sciences, 63 (2015), 7-14. http://dx.doi.org/10.1515/bpasts-2015-0001
  • EN 196-1, 2016. Methods of testing cement. Determination of strength. European Standard.
  • EN 1015-3, 2000. Methods of test for mortar for masonry. Determination of consistence of fresh mortar (by flow table). European Standard.
  • Garbacz A., Sokołowska J.: Effect of calcium fly ash on PC properties. In: Proceeding of the 13th international congress on polymers in concrete – ICPIC 2010, Funchal-Madeira; 2010. 281-288.
  • Garbacz A., Sokołowska J.J.: Concrete-like polymer composites with fly ashes – comparative study. Construction and Building Materials 38 (2013), 689-699. http://dx.doi.org/10.1016/j.conbuildmat.2012.08.052
  • Gorninski J.P., Dal Molin D.C., Kazmierczak C.S.: Strength degradation of polymer concrete in acidic environments. Cement and Concrete Composites 29 (2007), 637-645. http://dx.doi.org/10.1016/j.cemconcomp.2007.04.001
  • Harja M., Bărbuţă M., Rusu L.: Obtaining and characterization of the polymer concrete with fly ash. Journal of Applied Sciences 9 (2009), 88-96. http://dx.doi.org/10.3923/jas.2009.88.96
  • Jackiewicz-Rek W., Woyciechowski P.: Carbonation rate of air-entrained fly ash concretes. Cement Wapno Beton 5 (2011), 249-256.
  • Jackiewicz-Rek W., Załęgowski K., Garbacz A.: Properties of cement mortars modified with ceramic waste fillers. Procedia Engineering 108 (2015), 681-687. http://dx.doi.org/10.1016/j.proeng.2015.06.199
  • Jaworska B., Sokołowska J.J., Łukowski P., Jaworski J.: Waste mineral powders as a components of polymer-cement composites. Archives of Civil Engineering 61 (2015), 199-210. https://doi.org/10.1515/ace-2015-0045
  • Kępniak M., Woyciechowski P., Franus W.: Chemical and physical properties of the waste limestone powder as a potencial microfiller of polymer composites. Archives of Civil Engineering (2017); acceped for publication.
  • Łukowski P., Salih A.: Durability of mortars containing ground granulated blast-furnace slag in acid and sulphate environment. Procedia Engineering 108 (2015), 47-54. https://dx.doi.org/doi:10.1016/j.proeng.2015.06.118
  • PN-85/B-04500. Bulding mortars. Examination of physical and strength properties (in Polish). Polish Standard.
  • Sokołowska J.J., Piotrowski T., Garbacz A., Kowalik P.: Effect of introducing recycled polymer aggregate on the properties of C-PC composites. Advanced Materials Research 687 (2013), 520-526. https://dx.doi.org/10.4028/www.scientific.net/AMR.687.520
  • Sokolowska J.J., Woyciechowski P.P., Łukowski P., Kida K.: Effect of perlite waste powder on chcemical resistance of polymer concrete composites. Advanced Materials Research 1129 (2015), 516-522. https://dx.doi.org/10.4028/www.scientific.net/AMR.1129.516
  • Varughese K.T., Chaturvedi B.K.: Fly ash as fine aggregate in polyester based polymer concrete. Cement and Concrete Composites 18 (1996), 105-108. http://dx.doi.org/10.1016/0958-9465(95)00006-2
  • Wiliński D., Łukowki P., Rokicki G.: Application of fibres from recycled PET bottles for concrete reinforcements, Journal of Building Chemistry 1 (2016), 1-9. http://dx.doi.org/10.17461/j.buildchem.2016.101
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-f9087731-3a5f-4d9b-b92d-653e347de87e
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