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The preparation of aramid fibres in silicone based composite materials

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Purpose: The evaluation of modified aramid fibres - Kevlar - as reinforcement in silicon materials used in medicine. Design/methodology/approach: Samples of laminated material based on modified aramid fibres and medical silicone were made by a method of manual formation of laminates that is impregnation of reinforcement with matrix to hardening silicone process using hardening methods connected with heat. Created material was observed on Scanning Electron Microscopy manufactured by Zeiss. Findings: The results show that the modification of aramid fibres has a positive influence on adhesion of silicon material to aramid fibres and strengthening of tested samples. Research limitations/implications: Carried out investigations show that the problem with modification of aramid fibres is very important in having proper percentage of intensifier in developed material used for medical purposes. Originality/value: Taking the specific properties of material into account it seems that modification of aramid fibres would be useful in medicine. However, application of aramid fibres as reinforcing phase of polymer medical materials requires many additional investigations which are already planned and will soon be done in Institute of Engineering Materials and Biomaterials at Silesian University of Technology.
Rocznik
Strony
125--131
Opis fizyczny
Bibliogr. 24 poz., rys., tab.
Twórcy
  • Division of Materials Processing Technology, Management and Computer Techniquesin Materials Science, Institute of Engineering Materials and Biomaterials, Silesian University of Technology, ul. Konarskiego 18a, 44-100 Gliwice, Poland
autor
  • Division of Materials Processing Technology, Management and Computer Techniquesin Materials Science, Institute of Engineering Materials and Biomaterials, Silesian University of Technology, ul. Konarskiego 18a, 44-100 Gliwice, Poland
autor
  • Division of Metal and Polymer Materials Processing, Institute of Engineering Materials and Biomaterials, Silesian University of Technology, ul. Konarskiego 18a, 44-100 Gliwice, Poland
autor
  • Division of Metal and Polymer Materials Processing, Institute of Engineering Materials and Biomaterials, Silesian University of Technology, ul. Konarskiego 18a, 44-100 Gliwice, Poland
Bibliografia
  • [1] M.A. Freilich, J.C. Meiers, J.P. Duncan, A.J. Goldberg, Fiber - Reinforced Composites In Clinical Dentistry, Quintessence Publishing Co, Inc., 1999.
  • [2] W. Królikowski, Plastics reinforced materials and reinforcing fibers, WNT, Warsaw, 1988 (in Polish).
  • [3] A. Krysztafkiewicz, The improve factors to the adhesion in the system of the filler - polymer, The Applied Chemistry 33 (1989) 438-446.
  • [4] L. Domka, A. Malicka, P. Łajdus, W. Hędzelek, The modification of aramid fibers as a filler for acrylic materials, Technical Magazine 6 (2006) 149-154.
  • [5] K. Imielińska, R. Wojtyra, Effect of water and impact on the mechanical behaviour of hybrid polymer composites for marine applications, Materials Engineering 6 (2003) 627-630.
  • [6] K. Imielińska, Effect of low velocity impact on compression strength of laminated polymer composites, Archives of Materials Science 1 (2004) 73-87.
  • [7] M. Kałuża, T. Bartosik, Strengthening the construction materials based on carbon, glass and aramid fibers, Building Materials 2 (2007) 36-38.
  • [8] E. Stodolak, M. Błażewicz, I. Rajzer, B. Czajkowska, Composite with carbon fibres: biological and mechanical study, Carbo 4 (2007) 187-190.
  • [9] D. Kwiatkowski, Estimation of dynamic properties of PA/PP blend filled with glass fibre, Composites 3 (2003) 322-324.
  • [10] R. Sobczak, Z. Nitkiewicz, J. Koszkul, Dynamic properties and structure of polypropylene composites reinforced glass fibre, Composites 4 (2004) 369-373.
  • [11] A. Szarek, P. Postawa, Composites PMMA - carbon fibre as an alternative to connection of endoprosthesis with bone, Composites 1 (2010) 46-51.
  • [12] N.T. Xiem, D. Kroisová, P. Louda, T.D. Hung, Z. Rozek, Effects of temperature and plasma treatment on mechanical properties of ceramic fibres, Journal of Achievements in Materials and Manufacturing Engineering 37/2 (2009) 526-531.
  • [13] M. Cieślik, D. Sabat, A. Cieślik-Bielecka, M. Adwent, G. Bajor, P. Kłapcińska, T. Cieślik, Comparative valuation of biological properties of pure and reinforced by carbon fibers P(LLA/GLA) co-polymer after implantation in rabbits mandible and soft tissues, Biomaterials Engineering 58-60 (2006) 54-57.
  • [14] H. Leda, Glass or carbon fibres in polymer matrix composites, Composites 3 (2003) 209-215.
  • [15] M. Guigon, M. Klinkin, The interface and interphase in carbon fibre-reinforced composites, Composites 25 (1994) 534-539.
  • [16] A. Wilczyński, The fiber polymer composites, WNT, Warsaw, 1996.
  • [17] K. Dobrucki, A method of designing of polymer composites for impact loading, Proceedings of the 10th Jubilee International Scientific Conference “Achievements in the Mechanical and Materials Engineering” AMME’2001, Gliwice - Sopot, 2001, 56-60.
  • [18] M. Rojek, J. Stabik, S. Sokol, Fatigue and ultrasonic testing of epoxy-glass composites, Journal of Achievements in Materials and Manufacturing Engineering 20 (2006) 183-186.
  • [19] L.A. Dobrzański, A. Pusz, A.J. Nowak, Aramid-silicon laminated materials with special properties - new perspective of its usage, Journal of Achievements in Materials and Manufacturing Engineering 28/1 (2008) 148-156.
  • [20] L.A. Dobrzański, A. Pusz, A.J. Nowak, M. Górniak, Constructional model of internal oesophageal prosthesis, Archives of Materials Science and Engineering 42/2 (2010) 69-76.
  • [21] L.A. Dobrzański, A. Pusz, A.J. Nowak, The effect of micropores on output properties of laminates materials with assumed medical implantation, Journal of Achievements in Materials and Manufacturing Engineering 37/2 (2009) 408-415.
  • [22] L.A. Dobrzański, A. Pusz, A.J. Nowak, The elimination of micropores and surface defect in aramid-silicon laminated materials with special properties, Journal of Achievements in Materials and Manufacturing Engineering 35/2 (2009) 121-128.
  • [23] M. Rojek, J. Stabik, Ł. Suchoń, Hard coal modified with silanes as polyamide filler, Journal of Achievements in Materials and Manufacturing Engineering 39/1 (2010) 43-51.
  • [24] L. Kroll, P. Kostka, M. Lepper, W. Hufenbach, Extended proof of fibre-reinforced laminates with holes, Journal of Achievements in Materials and Manufacturing Engineering 33/1 (2009) 41-46.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-25b2f9db-5ceb-4b92-a4d2-2b9625c1a6f9
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