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Continuous drive friction welding of cast AlSi/SiC(p) metal matrix composites

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Continuous drive friction welding of cast AlSi/SiC(p) metal matrix composites in systems AlSi11-AlSi9/SiC/21(p), AlSi9/SiC/21(p)-AlSi9/SiC/21(p) AlSi11/SiC/15(p)-AlSi11/SiC/15(p) have been made. Examination of welds microstructure revealed that during friction welding process three different zones of size and distribution reinforced particles in the metal matrix appeared. Discernible effect of friction welding parameters on the microstructure matrix has been noticed. Subsequent hardness tests confirmed changes in matrix microstructure and influence particles redistribution on the weld mechanical properties.
Rocznik
Strony
47--52
Opis fizyczny
Bibliogr. 16 poz., rys.
Twórcy
autor
autor
  • Polish Marine Service
Bibliografia
  • [1] W.H. Hunt, Jr : Aluminium Metal Matrix Composites Today. Material Science Forum Vols. 331-337 pp. 71-84, 2000 Trans Tech Publication, Switzerland
  • [2] G.G. Chernyshov, S.A. Paniczenko, T.A. Chernyshova: Welding of Metal Composites. Welding International, Vol. 17, no. 6, pp. 487-492
  • [3] A. Ureña, M.D. Escalera, L. Gil: Influence o interface reactions on fracture mechanisms in TIG arc-welded aluminum matrix composites. Composites Science and Technology 60 (2000) 613-622
  • [4] P.P. Lean, L. Gil, A. Ureña: Dissimilar welds between unreinforced AA6082 and AA6092/SiC/25p composite by pulsed-MIG arc welding using unreinforced filler alloys (Al-5Mg and Al-5Si). Journal of Materials Processing Technology 143-144 (2003) 846-850
  • [5] T.J. Lienert, E.D. Brandon, J.C. Lippold: Laser and electron beam welding of SiCp reinforced aluminum A-356 metal matrix composites. Scripta Metallurgica et Materialia Vol. 28, pp. 1341-1346, 1993
  • [6] J.K. Park, J.P. Lucas: Moisture effect on SiCp/6061 AL MMC: dissolution of interfacial Al4C3. Scripta Materiala (37)1997, pp. 511-515
  • [7] O.T. Midling, O. Grong: A Process Model For Friction welding Of Al-Mg-Si And Al-SiC Metal Matrix Composites - II. HAZ Microstructure and Strength Evolution. Acta Metallurgica Materiala, Vol.42, No.5, pp. 1611-1622, 1994
  • [8] O.T. Midling, O. Grong: A process model or friction welding of Al-Mg-Si alloys and Al-SiC metal matrix composites - I. HAZ temperature and strain distribution. Acta Metallurgica Materiala, Vol. 42, No.5, pp. 1595-1609, 1994
  • [9] A. Dolata-Grosz, M. Dyzia, J. Śledziona, J. Myalski: Influence of ceramic reinforcement kind on the solidification process of aluminum matrix. Archives of Foundry. Year 2006, Volume 6, No 22, pp. 145-150 (in polish)
  • [10]K. Gawdzińska, J. Grabian, A. Dolata-Grosz. Selected usable proporties of AlSi11/1H18N9T suspension composites. Archives of Foundry. Year 2006, Volume 6, No 22, pp. 145-150 (in polish)
  • [11]M. Dudyk: Crystallization and thermal expansion of alloys and silumine composites. Archives of Foundry. Year 2006, Volume 6, No 22, pp. 164-169 (in polish)
  • [12]M. Chandrasekaren, A.W. Batchelor, S. Jana: Study of the interfacial phenomena during friction surfacing of aluminum with steels. Journal of Materials Science 32 (1997) 6055-6062
  • [13]L.Fu, L.Y. Duan, S.G. Du: Numerical Simulation of Inertia Friction Welding Process by Finite Element Method. Welding Journal, March 2003, s. 65-70
  • [14]C. Malonado, T.H. North: Particle fracture in metal-matrix composite friction joints. Journal of Material Science 32 (1997) 4739-4748
  • [15]B. Lin, C.K. Mu, W.W. Wu, C.H. Hung: The Effect of Joint Design and Volume Fraction on Friction Welding Properties of A360/SiC(p) Composites. Welding Journal, March 1999, s.100-108
  • [16]T.J. Lienert, P.B. Nagy, A. Baeslack III: Ultrasonic Characterysation of Microstructure in Inertia Friction Welds on SiC-Reinforced 8009 Aluminum. Welding Journal, January 1998, s. 14-28
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ3-0033-0026
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