Tytuł artykułu
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Abstrakty
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.
Wydawca
Czasopismo
Rocznik
Tom
Strony
84--91
Opis fizyczny
Bibliogr. 23 poz., rys., tab. wykr.
Twórcy
autor
- 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