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Thermal diffusivity measurements of selected fiber reinforced polymer composites using heat pulse method

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The objective of this paper was to examine the effect of fiber content on the thermal diffusivity in selected fiber reinforced polymer composites. The influence of fiber type on the thermal diffusivity was also considered and discussed.
Rocznik
Strony
25--32
Opis fizyczny
Bibliogr. 29 poz.
Twórcy
autor
autor
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, sebastian.pawlak@polsl.pl
Bibliografia
  • [1] L.A. Dobrzański, A. Pusz, A.J. Nowak, Aramid-silicon laminated material with special properties - new perspective of its usage, Journal of Achievements in Materials and Manufacturing Engineering 28/1 (2008) 7-14.
  • [2] M. Bilewicz, J.C. Viana, L.A. Dobrzański, Self reinforced polymer-polymer composites, Journal of Achievements in Materials and Manufacturing Engineering 24/2 (2007) 43-46.
  • [3] L.A. Dobrzański, M. Bilewicz, J.C. Viana, Mechanical approach of PP/MMT polymer nanocomposite, Archives of Materials Science and Engineering 43/2 (2010) 94-100.
  • [4] M. Bilewicz, L.A. Dobrzański, J.C. Viana, Morphological aspect of multilaminar PP composite, Journal of Achievements in Materials and Manufacturing Engineering 37/2 (2009) 598-606.
  • [5] L.A. Dobrzański, M. Bilewicz, J.C. Viana, A.M. Cunha, Non-conventionally obtained polymer nanocomposites with different nano-clay ratios, Journal of Achievements in Materials and Manufacturing Engineering 31/2 (2008) 212-217.
  • [6] M. Drak, L.A. Dobrzański, Hard magnetic materials Nd-Fe- B/Fe with epoxy resin matrix, Journal of Achievements in Materials and Manufacturing Engineering 24/2 (2007) 63-66.
  • [7] J. Stabik, A. Dybowska, J. Pluszyński, M. Szczepanik, Ł. Suchoń, Magnetic induction of polymer composites filled with ferrite powders, Archives of Materials Science and Engineering 41/1 (2010) 13-20.
  • [8] R. Nowosielski, R. Babilas, G. Dercz, L. Pająk, Microstructure of polymer composite with barium ferrite powder, Journal of Achievements in Materials and Manufacturing Engineering 31/2 (2008) 269-274.
  • [9] W. Hufenbach, L.A. Dobrzański, M. Gude, J. Konieczny, A. Czulak, Optimization of the rivet joints of the CFRP composite material and aluminium alloy, Journal of Achievements in Materials and Manufacturing Engineering 20 (2007) 119-122.
  • [10] A. Katunin, W. Hufenbach, P. Kostka, K. Holeczek, Frequency dependence of the self-heating effect in polymer-based composites, Journal of Achievements in Materials and Manufacturing Engineering 41/1 (2010) 9-15.
  • [11] K. Jamroziak, M. Bocian, Identification of composite materials at high speed deformation with the use of degenerated model, Journal of Achievements in Materials and Manufacturing Engineering 28/1 (2008) 171-174.
  • [12] W.N. dos Santos, P. Mummery, A. Wallwork, Thermal diffusivity of polymers by the laser flash technique, Polymer Testing 24 (2005) 628-634.
  • [13] D.P.H. Hasselman, K.Y. Donaldson, Effects of detector nonlinearity and specimen size on the apparent thermal diffusivity of NIST 8425 graphite, International Journal of Thermophysics 11/3 (1990) 573-585.
  • [14] G. Wróbel, Z. Rdzawski, G. Muzia, S. Pawlak, The application of transient thermography for the thermal characterisation of carbon fibre/epoxy composites, Journal of Achievements in Materials and Manufacturing Engineering 36/1 (2009) 49-56.
  • [15] G. Wróbel, Z. Rdzawski, G. Muzia, S. Pawlak, Quantitative analysis of the fibre content distribution in CFRP composites using thermal non-destructive testing, Archives of Materials Science and Engineering 41/1 (2010) 28-36.
  • [16] G. Wróbel, Z. Rdzawski, G. Muzia, S. Pawlak, Determination of thermal diffusivity of carbon/epoxy composites with different fibre content using transient thermography, Journal of Achievements in Materials and Manufacturing Engineering 37/2 (2009) 518-525.
  • [17] W.J. Parker, R.J. Jenkins, C.P. Butter, G.L. Abbot, Flash method of determining thermal diffusivity, heat capacity and thermal conductivity, Journal of Applied Physics 32 (1961) 1679-1684.
  • [18] J.C. Krapez, L. Spagnolo, M. Frieß, H.P. Maier, G. Neuer, Measurement of in-plane diffusivity in non-homogeneous slabs by applying flash thermography, International Journal of Thermal Sciences 43 (2004) 967-977.
  • [19] R.P. Brady, M.R. Kulkarni, Determination of thermal diffusivity distribution for three types of materials by transient thermography, NDT&E International 29 (1996) 205-211.
  • [20] B. Weidenfeller, M. Hofer, F.R. Schilling, Thermal conductivity, thermal diffusivity, and specific heat capacity of particle filled polypropylene, Composites: Part A 35 (2004) 423-429.
  • [21] Standard: PN-EN 821-2:2002, Advanced technical ceramics - Monolithic ceramics - Thermo-physical properties - Part 2: Determination of thermal diffusivity by the laser flash (or heat pulse) method.
  • [22] D. Bates, G. Smith, D. Lu, J. Hewitt, Rapid thermal non-destructive testing of aircraft components, Composites: Part B 31 (2000) 175-185.
  • [23] N.P. Avdelidis, B.C. Hawtin, D.P. Almond, Transient thermography in the assessment of defects of aircraftcomposites, NDT&E International 36 (2003) 433-439.
  • [24] C. Meola, G.M. Carlomagno, A. Squillance, A. Vitiello, Non-destructive evaluation of aerospace materials with lock-in thermography, Engineering Failure Analysis 13 (2006) 380-388.
  • [25] G. Muzia, Z. Rdzawski, M. Rojek, J. Stabik, G. Wróbel, Thermographic diagnosis of fatigue degradation of epoxy-glass composites, Journal of Achievements in Materials and Manufacturing Engineering 24/2 (2007) 123-126.
  • [26] J. Kaczmarczyk, M. Rojek, G. Wróbel, J. Stabik, A model of heat transfer taking place in thermographic test stand, Journal of Achievements in Materials and Manufacturing Engineering 27/1 (2008) 7-14.
  • [27] H.D. Benitez, C. Ibarra-Castanedo, A.H. Bendada, X. Maldague, H. Loaiza, E. Caicedo, Definition of new thermal contrast and pulse correction for defect quantification in pulsed thermography, Infrared Physics and Technology 51 (2008) 160-167.
  • [28] N.P. Avdelidis, D.P. Almond, A. Dobbinson, B.C. Hawtin, C. Ibarra-Castanedo, X. Maldague, Aircraft composites assessment by means of transient thermal NDT, Progress in Aerospace Sciences 40 (2004) 143-162.
  • [29] M. Navarrete, F. Serrania, M. Villagran, Application of the flash method for the thermal characterization of woven carbon fibre laminates, Materials and Design 22 (2001) 93-97.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSL9-0047-0004
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