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Vacuum brazing of TiAl48Cr2Nb2 casting alloys based on TiAl (γ) intermetallic compound

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
A growing interest in modern engineering materials characterised by increasingly better operational parameters combined with a necessity to obtain joints of such materials representing good operation properties create important research and technological problems of today. These issues include also titanium joints or joints of titanium alloys based on intermetallic compounds. Brazing is one of the basic and sometimes even the only available welding method used for joining the aforesaid materials in production of various systems, heat exchangers and, in case of titanium alloys based on intermetallic compounds, turbine elements and space shuttle plating etc. This article presents the basic physical and chemical properties as well as the brazability of alloys based on intermetallic compounds. The work also describes the principle and mechanisms of diffusion-brazed joint formation as well as reveals the results of metallographic and strength tests involving diffusion-welded joints of TiAl48Cr3Nb2 casting alloy based on TiAl (γ) phase with the use of sandwich-type layers of silver-based parent metal (grade B- Ag72Cu-780 (AG 401)) and copper (grade CF032A). Structural examination was performed by means of light microscopy, scanning electron microscope (SEM) and energy dispersion spectrometer (EDS). Furthermore, the article reveals the results of shear strength tests involving the aforementioned joints.
Rocznik
Strony
371--376
Opis fizyczny
Bibliogr. 14 poz., rys., tab., wykr.
Twórcy
autor
  • Instytut Technologii Maszyn i Automatyzacji, Politechnika Wrocławska, ul. Ignacego Łukasiewicza 5, 50-371 Wrocław
  • Instytut Spawalnictwa, ul. Bł. Czesława 16/18, 44-100 Gliwice
Bibliografia
  • [1] Szkliniarz W.: Stopy na osnowie faz międzymetalicznych z układu Ti-Al. Wydawnictwo Politechniki Śląskiej, Gliwice 2007.
  • [2] Lütjering G., Williams J.: Titanium, Springer, Heidelberg 2003.
  • [3] Praca zbiorowa: Principles of brazing. Diffusion brazing. ASM International, 2005.
  • [4] Wallis I.C., Ubki H.S., Bacos M.-P. Brazed joints in TiAl sheet: microstructure and properties. Intermetallics nr 3/2004.
  • [5] Shine R.K., Wu S.K., Chen S.Y.: Infrared brazing of TiAl intermetallic using B-Ag8 braze alloy. Acta Materialia nr 51/2003.
  • [6] Shine R.K., Wu S.K., Chen S.Y.: Infrared brazing of TiAl intermetallic using B-Ag8 braze alloy. Acta Materialia 51/2003.
  • [7] He P., Feng J.C., Zhou H.: Microstructure and strength of brazed joints of Ti3Al – base alloy with NiCrSiB. Materials Characterization nr 4-5/2004.
  • [8] He P., Feng J.C., Zhou H.: Microstructure and strength of brazed joints of Ti3Al – base alloy with TiZrNiCu. Materials Science and Engineering A392, 1-2/2005.
  • [9] Gale W.F., Butts D.A., Ruscio M.D., Zhou T.: Microstructure and mechanical properties of titanium aluminide wide-gap, TLP bonds prepared using a slurry–deposited composition interlayer. Metallurgical and Materials Transactions 33A, nr 10, 2002.
  • [10] Gale W.F.: Applying TLP bonding to the joining of structural intermetallic compounds. Journal of Metals nr 2/1999.
  • [11] Winiowski A.: Application of diffusion brazing to the bonding of metals and alloys. Welding International nr 11/1999.
  • [12] Winiowski A., Różański M.: Badanie procesów lutowania dyfuzyjnego tytanu i jego stopów. Praca badawcza IS nr Cc-50.2/ST-247.2, Gliwice 2007.
  • [13] Winiowski A.: Impact of conditions and parameters of brazing of stainless steel and titanium on mechanical and structural properties of joints. Archives of Metallurgy and Materials. Nr 4/2007.
  • [14] Wojewoda J., Zięba P.: Lutowanie dyfuzyjne niskotemperaturowe. I: Aspekty strukturalne. Inżynieria Materiałowa nr 1/2004.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-04d91402-8f8c-4602-8899-2a7a223f636f
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