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Articles

Special features of diffusion welding of EP975 creep-resisting alloy and VKNA-4U cast single-crystal intermetallic alloy for blisk structures

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References

  • KablovEN, GolubovskiiER. Creep strength of nickel alloys. Moscow: Mashinostroenie; 1998.
  • Kablov EN, et al. Single crystal creep resisting alloys for gas turbine engines. Vestnik MGTU NE Baumana Perspekt Konstr Mater Technol. 2011. p. 38–52.
  • SimsCh, HagelW. Creep resisting alloys. Moscow: Metallurgiya; 1976.
  • KablovEN, et al. Development of the process of directional solidification of gas turbine engine blades produce from creep-resisting alloys with single crystal and composite structures. Aviats Mater Tekhnol. 2012;1:3–8.
  • ShalinRE, et al., Single crystals of nickel creep resisting alloys. Moscow: Mashinostroenie; 1997.
  • KablovEN. Cast blades of gas turbine engines. Moscow: Moscow Institute of Steel and Alloys; 2001.
  • BuntushkinVP, et al. High-temperature structural alloys based on Ni3Al intermetallic compounds. Aviation Materials at the Turn of XX and XXI Centuries. Moscow: VIAM; 1994. p. 278–284.
  • LombergBS, et al., Creep resisting deformable alloys for the hot circuit of gas turbine engines. Moscow: VIAM; 1994. p. 59–69.
  • KablovEN, et al. Materials for heavily loaded components of gas turbine engines. Vestnik MGTU NE Baumana Perspekt Konstr Mater Tekhnol. 2011 :111–121.
  • Lomberg BS, et al. High creep strength deformable nickel alloys for advanced gas turbine engines and gas turbine systems. Vestnik MGTU NE Baumana Perspekt Konstr Mater Tekhnol. 2011. p. 98–103.
  • LombergBS, et al. Relationship of the structure and properties of high creep resistant nickel alloys for the discs of gas turbine engines. Aviats Mater. 2011;2:25–31.
  • KurochkoRS, LukinVI. Problems of welding in the solid phase. Aviation Materials at the Turn of XX and XXI Centuries. Moscow: VIAM; 1994. p. 485–491.
  • SorokinLI. Weldability of creep-resisting alloys used in aviation gas turbine engines. Svar Proiz. 1997;4:4–11.
  • LukinVI, et al. Weldability of cast creep resisting nickel alloys of the type ZhS6. Svar Proiz. 1997;6:12–17.
  • LukinVI, et al. Formation of hot cracks in welding of creep resisting alloys. Metalloved Term Obrab Met. 2007;12:7–14.
  • KarakozovES. Solid-phase bonding of metals. Moscow: Metallurgiya; 1976.
  • LashkoNF, LashkoSV. Problems of theory and technology of brazing. Moscow: Saratov University; 1974.
  • LashkoNF, LashkoSV. Brazing of metals. Moscow: Mashinostroenie; 1967.
  • LukinVI, et al. Special features of production of brazed joints in ZS-36 alloy. Tekhnol Mashinostr. 2010;5:21–25.
  • FrolovVA, et al., Technological fundamentals of welding and brazing in aircraft construction. Moscow: Interment Engineering; 2002.
  • KhorunovVF, MasimovaSV. Brazing of creep resisting alloys in the current stage. Svar Proiz. 2010;10:24–27.
  • ChaturvediMC. Diffusion brazing of cast Inconel 73 super alloy. Adv Technol Mater Mater Process. 2004;6:206–213.
  • KenyonN, HrubecRY. Brazing of a dispersion-strengthened and nickel base alloys made by mechanical alloying. Weld Res Suppl. 1974 (April):145s–152s.

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