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The Properties of a Polypropylene Matrix Composite with Anthracite Filler

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Języki publikacji
EN
Abstrakty
EN
The article presents the results of research concerning the effect of anthracite dust with 10%, 20%, 30%, 40% and 50% content in composites with a polypropylene matrix on selected properties. Hardness was examined with the Shore’s D method; stiffness, tensile strength as well as (MFR) Melt Flow Rate and (MVR) Melt Volume Rate of the investigated material were evaluated; wettability of the obtained material was also determined. Surface and volume resistivity were also investigated; the thermal properties of the filler were determined by thermogravimetric analysis (TGA). It was found that the investigated polypropylene composites filled with anthracite dust are hydrophobic materials and the composite hardness and stiffness are growing along with the volumetric increase of anthracite. It was noted that anthracite reinforces the material to a limited extent.
Twórcy
  • Silesian University of Technology, Department of Engineering Materials and Biomaterials, of Mechanical Engineering, 18 A Konarskiego Str., 44-100 Gliwice, Poland
  • Silesian University of Technology, Department of Engineering Materials and Biomaterials, of Mechanical Engineering, 18 A Konarskiego Str., 44-100 Gliwice, Poland
  • Łukasiewicz Research Network Institute for Engineering of Polymer Materials and Dyes, 55 Marii Skłodowskiej-Curie Str., 87-100 Toruń, Poland
Bibliografia
  • [1] T. Klepka (Ed.), Modern polymer materials and their processing, chap. 1, Lublin University of Technology, Lublin, 26-28 (2014).
  • [2] E.K. Sichel (Ed.), Carbon black polymer composites, Marcel Dekker, New York (1989).
  • [3] A. Boczkowska, G. Grzesiński, The composites and their production techniques, OWPW, Warsaw, 50-56 (2016), in polish.
  • [4] A. Boczkowska, J. Kapuściński, Z. Lindermann, Composites, OWPW, Warsaw (2003).
  • [5] J. Stabik, M. Chomiak, Ł. Suchoń, A. Dybowska, K. Mrowiec, Archives of Materials Science and Engineering 54 (2), 218-226 (2012).
  • [6] A. Gnatowski, E. Kazik, P. Palutkiewicz, Composites Theory and Practice 18 (3), 127-132 (2018).
  • [7] M. Żenkiewicz, J. Richert, P. Rytlewski, K. Moraczewski, M. Stepczyńska, Polimery-W 55 (2), 119-126 (2010).
  • [8] P.M. Ajayan, L.S. Schradler, P.V. Braun, Nanocomposites Science and Technology, Viley – VCH Verlag, Weinheim (2003).
  • [9] H. Yui, G. Wu, H. Sano, M. Sumita, K. Kino, Polymer 47, 3599-3608 (2006).
  • [10] J. Huang, C. Mao, Y. Zhu, W. Jiang, X. Yang, Carbon 73, 267-274 (2014), DOI: 10.1016/j.carbon.2014.02.063
  • [11] L. Shen, F.Q. Wang, H. Yang, Q.R. Meng, Polym. Test. 30, 442-448 (2011), DOI: 10.1016/j.polymertesting.2011.03.007
  • [12] Ch.-L. Huang, Ch.-W. Lou, Ch.-F. Liu, Ch.-H. Huang, X.-M. Song, J.-H. Lin, Appl. Sci. 5, 1196-1210 (2015), DOI:10.3390/app5041196
  • [13] K.K. Sadasivuni, D. Ponnamma, S. Thomas, Y. Grohens, Prog. Polym. Sci. 39 (4), 749-780 (2014).
  • [14] J. Stabik, M. Szczepanik, A. Dybowska, Ł. Suchoń, Journal of Achievements in Materials and Mechanical Engineering 38 (1), 56-63 (2010).
  • [15] W. Zhang, D. Zhang, H. Wang, J. Cheng, Minerals 5 (4), 919-935 (2015), DOI:10.3390/min5040533
  • [16] S. Pusz, U. Szeluga, B. Nagel, S. Czajkowska, H. Galina, J. Strzezik, Polym. Composites 36, 336-347 (2015), DOI: 10.1002/pc.22948
  • [17] B. Kumanek, U. Szeluga, S. Pusz, A. Borowski, P.S. Wróbel, A. Bachmatiuk, J. Kubacki, M. Musioł, O. Maruzhenko, B. Trzebicka, Fuller. Nanotub. Car. N. 26 (7), 405-416 (2018).
  • [18] D. Cai, M. Song, J. Mater. Chem. 20, 7906-7915 (2010), DOI: 10.139/c0jm00530d
  • [19] F.O. Abas, R.U. Aabass, MATEC Web of Conference 225, 01022 (2018), DOI: 10.105/matecconf/201822501022
  • [20] U. Szeluga, L. Kurzeja, H. Galina, Polym. Bull. 60 (4), 555-567 (2008), DOI: 10.1007/s00289-008-0889-7
  • [21] S. Kuciel, A. Kufel, Polimery 63 (5), 387-390 (2018), DOI: 10.14314/polimery.2018.5.8
  • [22] S. Kuciel, P. Kuźnia, P. Jakubowska, Polimery-W, 61 (2), 106-112 (2016), DOI: 10.14314/polimery.2016.106
  • [23] M.Y. Shen, T.Y. Chang, T.H. Shieh, Y.L. Li, C.L. Chiang, H. Yang, M.C. Yip, J. Nanomater. 2013, 1-9 (2013), DOI: 10.1155/2013/565401
  • [24] P.J. Mather, K.M. Thomas, J. Mater. Sci. 32, 401-407 (1997).
  • [25] O. Maruzhenko, Y. Mamunya, G. Boiteux, S. Prouvost, S. Pusz, U. Szeluga, B. Kumanek, Polym. J. 39 (4), 219-226 (2017) (Russia).
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-e8ad4a7c-888c-40f7-b5e1-91800642e9f1
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