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Research of influence of the perforation form in metal products on their thermal conductivity

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The porosity in metals has been perceived only as a negative factor for a long time, which reduces the mechanical properties and tightness of the material. For preventing and blocking the negative effects of porosity in metals were dedicated a lot of scientific works, some of them are used in present time [1-3]. However, due to numerous experiments the positive factors of porosity in metals were opened. These factors are the combination of physical and mechanical properties such as high stiffness in combination with a very low density (low specific gravity) and/or high gas permeability combined with a high/low thermal conductivity [4]. Thanks to this, porous metals have received a new stage of evolution. Now porosity is being regarded not only as a negative effect of imperfection technology of making metal products, but also as a way to produce a material with unique properties. Globally porous metal materials can be divided into three categories: cellular metals [5]; metallic foams [6] and porous metals [7]. Products from such materials are used in the automotive industry as structural elements; in the aerospace industry as titanium and aluminum sandwich panels; in shipbuilding as a body for passenger vessels; in medicine as implants in humans [8-11]. From the field of use such products must conform to the following parameters: porosity, gas permeability, thermal conductivity, electrical conductivity, density, sound absorption, etc. There are a lot of methods of creation of porous metallic materials today. But complete method of controlling thermal properties of materials by changing parameters of porosity is still no. For creating such method we need to know what factors, under what conditions and with what degree are influence on the required material's parameters. The aim of this work is to investigate the influence of a combination of factors (form, size and position of pores) in the porous metal material on the thermal conductivity.
Rocznik
Strony
108--112
Opis fizyczny
Bibliogr. 11 poz., rys., tab., wykr.
Twórcy
autor
  • Kielce University of Technology, Poland
autor
  • Ivano-Frankivsk National Technical University of Oil and Gas, Ukraine
autor
  • Zaporozhye Engineering Academy, Ukraine
Bibliografia
  • [1] Gunasegaram D.R., Farnsworth D.J., Nguyen T.T., Identification of critical factors affecting shrinkage porosity in permanent mold casting using numerical simulations based on design of experiments. Materials Processing Technology, 2009, Vol. 209, pp. 1209-1219.
  • [2] Spasskij A.G., Osnovy litejnogo proizvodstva. M.: Metallurgizdat, 1950, 318 p.
  • [3] Impregnation improves casting quality. Vacuum. 1953. Vol. 3. Issue 1. P. 94.
  • [4] Krushenko G.G., Poluchenie i primenenie poristyh metallicheskih materialov v tehnike. Vestnik Sibirskogo gosudarstvennogo ajerokosmicheskogo universiteta imeni akademika M.F. Reshetneva. Tehnologicheskie processy i materialy, 2012, pp. 181-184.
  • [5] Saenz E., Baranda P.S., Bonhomme J., Porous and cellular materials for structural applications. Materials of Symp. Proc., 1998, Vol. 521, p. 83.
  • [6] Banhart J., Manufacturing routes for metallic foams. Journal of metals, 2000, Vol. 52, pp. 22-27.
  • [7] Tang H.P. et al., Fractal dimension of pore-structure of porous metal materials made by stainless steel powder. Powder Technology, 2012, Vol. 217, pp. 383-387.
  • [8] Reglero J.A., Rodriguez-Perez M.A., Solorzano E., de Saia J.A., Aluminium foams as a filler for leading edges: Improvements in the mechanical behavior under bird strike impact tests. Materials and design, 2011, Vol. 32. No 2, pp. 907-910.
  • [9] Lepeshkin I.A., Ershov M.Ju., Vspenennyj aljuminij v avtomobilestroenii. Avtomobil'naja promyshlennost', 2010, No 10, pp. 36-39.
  • [10] Krupin Ju.A., Avdeenko A.M., Sil'noporistye struktury - novyj klass konstrukcionnyh materialov. Tjazheloe mashinostroenie, 2008, No 7, pp. 18-21.
  • [11] Van Grunsven W., Porous metal implants for enhanced bone in growth and stability. Thesis submitted to the University of Sheffield for the degree of Doctor of Philosophy, Department of Materials Science and Engineering, September 2014.
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-70601003-c9d7-4e53-97de-6abbfc159aa0
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