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Behavior of Zr-Rich Phase in a Cast NiAl-33.5Cr-0.5Zr Alloy during Heat Treatment

Behavior of Zr-Rich Phase in a Cast NiAl-33.5Cr-0.5Zr Alloy during Heat Treatment
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摘要 There are many Zr particles in as-cast NiAl-33.5Cr-0.5Zr (at. pct) alloy, which usually exist at the edge of eutectic of beta -NiAl and cx-Cr. After air and furnace cooling solution treatments, far 1400 degreesC, 2 h and 1450 degreesC, 1 h, pure Zr phase remains in the furnace cooling (F.C.) state alloys and Ni2AlZr phase forms in the air cooling (A.C.) state alloys. During solution treatment at 1450 degreesC, bulk and 'fish bone' shape Zr-rich phases form respectively in F.C. and A.C. state alloys. A 'river' shape Ni2AlZr phase forms after 1450 C for 1h F.C. and 850 degreesC for 12 h, F.C.. The alloy has less pure Zr and Ni2AlZr phase after 1400 degreesC with both air and furnace cooling followed by 850 C and 950 C for 12 h, F.C. aging treatments, respectively. Additionally, there is a ternary eutectic of NiAlZr and a phase enriched Zr and Cr forms at the edge of the eutectic of beta -NiAl and alpha -Cr in the alloy treated at 1400 degreesC, 2 h, F.C. and 950 degreesC, 12 h, F.C. There are many Zr particles in as-cast NiAl-33.5Cr-0.5Zr (at. pct) alloy, which usually exist at the edge of eutectic of beta -NiAl and cx-Cr. After air and furnace cooling solution treatments, far 1400 degreesC, 2 h and 1450 degreesC, 1 h, pure Zr phase remains in the furnace cooling (F.C.) state alloys and Ni2AlZr phase forms in the air cooling (A.C.) state alloys. During solution treatment at 1450 degreesC, bulk and 'fish bone' shape Zr-rich phases form respectively in F.C. and A.C. state alloys. A 'river' shape Ni2AlZr phase forms after 1450 C for 1h F.C. and 850 degreesC for 12 h, F.C.. The alloy has less pure Zr and Ni2AlZr phase after 1400 degreesC with both air and furnace cooling followed by 850 C and 950 C for 12 h, F.C. aging treatments, respectively. Additionally, there is a ternary eutectic of NiAlZr and a phase enriched Zr and Cr forms at the edge of the eutectic of beta -NiAl and alpha -Cr in the alloy treated at 1400 degreesC, 2 h, F.C. and 950 degreesC, 12 h, F.C.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2001年第6期629-632,共4页 材料科学技术(英文版)
基金 The work was supported by the National Advanced Materials Connittee of China(Grant No.970321016) the National Natural Science Foundation of Chind(No.59895152).
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参考文献4

  • 1[1]J.M.Yang, S.M.Jeng, K.Bain and R.A.Amato: Acta Mater., 1997, 45(1), 295.
  • 2[2]D.R.Johnson, X.F.Chen, B.F.Oliver, R.D.Noede and J.D.Whittenberger: Intermetallic, 1995, 3, 99.
  • 3[3]P. Villars, A.Prince and H.Okamoto: Handbook of Ternary Alloy Phase Diagrams, ASM, The Materials Information Society, 1997, 3, 3149 and 4, 3791, 4240.
  • 4[4]T.B.Massalski: Binary AHoy Phase Diagram, ASM,The Materials Information Society, 1990, 2, 1359.

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