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The selected properties of fusion of Fe foam and sheet metal with use of the Nd:YAG laser

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Purpose: In the paper there were presented possibilities of combining metal sheet with metallic foams using a Nd:YAG laser. Design/methodology/approach: The research were carried out over the properties of laser welded joint of micro-welds iron foam with superalloy HYNESH230®. Findings: The results indicated that there is a possibility of obtaining the satisfying quality joint between the Fe foam and superalloy Hynes H230®. Research limitations/implications: The studies mainly focused on the microstructural and some mechanical properties. Example of structural applications for metallic foams, utilizing benefits in weight, stiffness, energy dissipation, mechanical damping, and vibration frequency were summarized already by many authors. The authors chose to study selected properties of fusion of Fe foam and sheet metal with new approach. Originality/value: The studies used to determine basic quality parameters of the welded joint. Using EDS analysis, there were identified a types of alloying elements and the extent of diffusion from superalloy H 230® in the course of Fe foam. Also, there was investigated shear strength of obtained micro-welds.
Rocznik
Strony
68--72
Opis fizyczny
Bibliogr. 13 poz., rys.
Twórcy
  • Kielce University of Technology, Al. Tysiąclecia PP 7, 25-314 Kielce, Poland
  • Kielce University of Technology, Al. Tysiąclecia PP 7, 25-314 Kielce, Poland
Bibliografia
  • [1] M.F. Ashby, A.G. Evans, N.A. Fleck, L.J. Gibson, J.W. Hutchinson, H.N.G. Wadley, Metal Foams: A Design Guide; Buterworth-Heineman, 2000.
  • [2] G.J., Davies S. Zehn, Review Metallic foams: their production, properties and applications, Journal of Materials Science 18 (1983) 1899-1911.
  • [3] M.A., Suarez I.A. Figueroa, G. Gonzales, G.A. Lara-Rodriguez, O. Novelo-Perlata, I. Alfonso, I.J. Calvo, Production of Al-Cu-Fe metallic foams without foaming agent or space holders, Journal of Alloys and Compounds 585 (2014) 318-324.
  • [4] T.M. Wójcik, Experimental investigations of boiling heat transfer hysteresis on sintered, metal-fibrous porous structures, Experimental Thermal and Fluid Science 33 (2009) 397-404.
  • [5] T. Murakami, K. Nakata, T. Ikeda, H. Nakajima, M. Ushio, Weld fusion property of lotus-type copper by laser beam irradiation, Material Science and Engineering A357 (2003) 134-140.
  • [6] G. Campana, A. Ascari, A. Fortunato, Laser forming for joining aluminum foam cores inside a hollow profile, Optics & Laser Technology 48 (2013) 331-336.
  • [7] C.A. Biffi, D. Colombo, A. Tuissi, Laser beam welding of CuZn open-cell foams, Optics and Lasers in Engineering (in print).
  • [8] L.E.G. Cambronero, I. Cañdas, J.M. Ruiz-Román, M. Cisneros, F.A. Corpas Iglesias, Weld structure of joined aluminium foams with concentrated solar energy, Journal of Materials Processing Technology (in print).
  • [9] A.A. Shirzadi, Y. Zhu, H.K.D.H. Bhadesshia, Joining ceramics to metals using metallic foam, Materials Science and Engineering A 496 (2008) 501-506.
  • [10] Y. Hangai, S. Koyama, M. Hasegawa, T. Utsonomiya, Fabrication of Aluminum Foam/Dense Steel Composite by Friction Stir Welding, Metalurgical and Materials Transactions 41A (2010) 2184-2186.
  • [11] M. Piasecka, Laser texturing, spark erosion and sanding of the surfaces and their practical applications in heat exchange devices, Advanced Material Research 874 (2014) 95-100.
  • [12] M. Piasecka, Heat transfer mechanism, pressure drop and flow patterns during FC-72 flow boiling in horizontal and vertical minichannels with enhanced walls, International Journal of Heat and Mass Transfer 66 (2013) 472-488.
  • [13] M. Piasecka, Flow boiling heat transfer in a mini-channel with enhanced heating surface, Heat Transfer Engineering 35/10 (2014) 903-912.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-d4b16071-2873-4352-b4f2-01a271e7cf36
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