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Effect of boron on microstructure and mechanical properties of cast Ti-44Al6-Nb ingots 被引量:1

Effect of boron on microstructure and mechanical properties of cast Ti-44Al6-Nb ingots
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摘要 In order to improve the mechanical properties of Ti Al alloys, especially the ductility at room temperature, and to study the effect of boron(B) on Ti Al alloys, different contents(0, 0.1, 0.3, 0.6, 0.9, 1.2, at.%) of B were added into Ti-44Al-6Nb alloys to prepare ingots. The surface quality, macrostructure, microstructure, compressive properties and fracture surface of the ingots were studied. The results show that B has little influence on the surface quality except that there are some dark spots on the surface when the content of B is 0.9%. B can refine the grains. The average grain size decrease from about 0.8 mm to 0.088 mm with increasing B content. Meanwhile, the grain morphology of these ingots changes from big equiaxed grains with lamellars to fine equiaxed grains. When the content of B is 1.2%, the primary Ti B2 phase forms in the liquid phase and increases the nucleation rate, leading to further refinement of the grains. The compressive testing results show that B can increase the strength and the ductility, the compressive strength and compressibility can reach 2,037.8 MPa and 26.7% from 1,156.2 MPa and 10.2% when the boron content is 0.6%, which is resulted from grain refining and grain boundary strengthening. It is found that the compressive strength and the compressibility are relatively stable when the B content is more than 0.3%. In order to improve the mechanical properties of Ti Al alloys, especially the ductility at room temperature, and to study the effect of boron(B) on Ti Al alloys, different contents(0, 0.1, 0.3, 0.6, 0.9, 1.2, at.%) of B were added into Ti-44Al-6Nb alloys to prepare ingots. The surface quality, macrostructure, microstructure, compressive properties and fracture surface of the ingots were studied. The results show that B has little influence on the surface quality except that there are some dark spots on the surface when the content of B is 0.9%. B can refine the grains. The average grain size decrease from about 0.8 mm to 0.088 mm with increasing B content. Meanwhile, the grain morphology of these ingots changes from big equiaxed grains with lamellars to fine equiaxed grains. When the content of B is 1.2%, the primary Ti B2 phase forms in the liquid phase and increases the nucleation rate, leading to further refinement of the grains. The compressive testing results show that B can increase the strength and the ductility, the compressive strength and compressibility can reach 2,037.8 MPa and 26.7% from 1,156.2 MPa and 10.2% when the boron content is 0.6%, which is resulted from grain refining and grain boundary strengthening. It is found that the compressive strength and the compressibility are relatively stable when the B content is more than 0.3%.
出处 《China Foundry》 SCIE CAS 2015年第1期9-14,共6页 中国铸造(英文版)
基金 supported by the Program of New Century Excellent Talents in University(NCET-12-0153) National Natural Science of Foundation of China(51274076) National Basic Research Program of China(2011CB605504)
关键词 BORON TiAl alloy compressive property grain refining boron TiAl alloy compressive property grain refining
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  • 1Loria EA. Gamma titanium aluminides as prospective structural materials. Intermetallics, 2000, 8: 1339-1345.
  • 2Djanarthany S, Viala J C, Bouix J. An overview of monolithic titanium alum in ides based on Ti3AI and TiAI. Materials Chemistry and Physics, 2001, 72: 301-319.
  • 3Yang R, Cui Y Y, Dong L M, Jia Q. Alloy development and shell mould casting of gamma TiAI. Journal of Materials Processing Technology, 2003, 135: 179-188.
  • 4Wu Xinhua. Review of alloy and process development of TiAI alloys. Intermetallics, 2006, 14: 1114-1122.
  • 5Kuang J P, Harding R A, Campbell J. Investigation into refractories as crucible and mould materials for melting and casting r- TiAI alloys. Mater. Sci. Technol., 2000, 16: 1007- 1016.
  • 6Choudhury A, Blum M. Economical production of titaniumaluminide automotive valves using cold wall induction melting and centrifugal casting in a permanent mold. Vacuum, 1996, 471: 829-831.
  • 7Barbosa J, Ribeiro C S, Monteiro A C. Influence of superheating on casting of y- TiAI. Intermetallics, 2007, 15: 945-955.
  • 8Gomes F, Barbosa J, Ribeiro C S. Induction melting of y-TiAI in CaO crucibles. Intermetallics, 2008,16: 1292-1297.
  • 9Wang Shouren, Guo Peiquan, Yang Liying. Centrifugal precision cast TiAI turbocharger wheel using ceramic mold. Journal of Materials Processing Technology, 2008, 204: 492- 497.
  • 10Lapin J, Ondrus L, Bajana O. Effect of AI203 particles on mechanical properties of directionally solidified intermetallic Ti-46AI-2W-0.5Si alloy. Materials Science and Engineering A, 2003, 36: 85-95.

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