欢迎登录材料期刊网

材料期刊网

高级检索

Effects of Ti-Ce refiners on the solidification structure and the hot ductility of Fe-36Ni invar alloy were investigated, the corresponding mechanisms were also discussed. The results showed that the solidification of the alloy was remarkably refined with the addition of 0.05%Ti-0.01%Ce refiners. Not only did the columnar grains become shorter and thinner, but the growth pattern of them changed into staggered growth from linear growth. The alloy had a bad hot ductility below 1050 °C, which was mainly attrib-uted to weaker boundaries and the presence of grain boundary sliding. However, the hot ductility of the alloy was highly enhanced at 850-1000 °C as the addition of 0.05%Ti-0.01%Ce refiners could refine grain sizes, thus hinder grain boundary sliding, strengthen the grain boundary and promote the grain boundary movement. The alloy had a good hot ductility over 1050 °C, dynamic recrys-tallization occurred and was found to be responsible for the better hot ductility. In addition, the average coefficient of thermal ex-pansion of the alloy decreased a little with the addition of 0.05%Ti-0.01%Ce refiners, which met the requirement of material prop-erties.

参考文献

[1] Zhao, Y.;Sato, Y.S.;Kokawa, H.;Wu, A. .Microstructure and properties of friction stir welded high strength Fe-36wt%Ni alloy[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2011(25/26):7768-7773.
[2] Bharat K. Jasthi;William J. Arbegast;Stanley M. Howard .Thermal Expansion Coefficient and Mechanical Properties of Friction Stir Welded Invar (Fe-36%Ni)[J].Journal of Materials Engineering and Performance,2009(7):925-934.
[3] Park N J;Oh M H;Kim S M .Effects of texture on the etching property of Fe-36%Ni invar sheets[J].Metals and Materials,2007,6(01):51.
[4] Mintz B;Yue S;Jonas J J .Hot ductility of steels and its relationship to the problem of transverse cracking during continuous casting[J].International Materials Reviews,1991,36(05):187.
[5] Vodopivec F;Torkar M;Debelak M;Kmeti?M, Haller F, Kau?i?F .Influence of aluminium on solidification struc-ture and initial deformability of continuously cast C-Mn-Si-N steel[J].Materials Science and Technology,1988,4(10):917.
[6] Maehara Y;Yasumoto K;Tomono H;Nagamichi T, Ohm-ori Y .Surface cracking mechanism of continuously cast low carbon low alloy steel slabs[J].Materials Science and Technology,1990,6(09):793.
[7] Ling Wang;Young Min Kim;Jehyun Lee;Bong Sun You .Effect of hafnium carbide on the grain refinement of Mg-3 wt.% Al alloy[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2010(1):L12-L15.
[8] Comineli O;Abushosha R;Mintz B .Influence of titanium and nitrogen on hot ductility of C-Mn-Nb-Al steels[J].Materials Science and Technology,1990,15(09):1058.
[9] Mintz B;Mohamed Z;Abushosha R .Influence of calcium on hot ductility of steels[J].Materials Science and Technology,1990,5(07):682.
[10] Ken-ichiro Suzuki;Shoji Miyagawa;Yoshiyuki Saito .Effect of Microalloyed Nitride Forming Elements on Precipitation of Carbonitride and High Temperature Ductility of Continuously Cast Low Carbon Nb Containing Steel Slab[J].ISIJ International,1995(1):34-41.
[11] Tsuda M;Wan K .The effect of alloying elements on the mechanical properties of the Fe-36% Ni alloys[J].Iron and Steel (in Chin ),1996,82(08):701.
[12] Tsuda M .Effect of minor alloying elements on the mean thermal expansion coefficient of Fe-36% Ni invar alloy[J].Iron and Steel (in Chin ),1994,80(02):944.
[13] Vinogradov A;Hashimoto S;Kopylov V I .Enhanced strength and fatigue life of ultra-fine grain Fe-36Ni invar alloy[J].Materials Science and Engineering A,2003,355(1-2):277.
[14] J.L.Corbacho;J.C.Suarez .Welding of invar Fe-36Ni alloy for tooling of composite materials[J].Welding International,1998(12):966-971.
[15] Mintz B;Abushosha R .Effectiveness of hot tensile test in simulating straightening in continuous casting[J].Materials Science and Technology,1992,8(02):171.
[16] Turnbull D;Vonnegut R .Grain refining of superalloy and its alloys using inoculants[J].Industrial and Engineering Chemistry,1952,44(06):1292.
[17] Branfitt L R .The effect of carbide and nitride additions on the heterogeneous nucleation behavior of liquid iron[J].Met-all Trans,1970,1(07):1987.
[18] Yu Y C;Chen W C;Zheng H G .Effect of Ce and misch-metal on the solidification structure of Fe-36Ni invar alloy[J].J Chin Soc Rare Earths (in Chin ),2012,30(02):175.
[19] Kohlhaas R;Dünner P;Schmitz-Pranghe N .The tempera-ture-dependence of the lattice parameters of iron, cobalt, and nickel in the high temperature range[J].Zeitschrift Fuer Angewandte Physik,1967,23(04):245.
[20] Rice C E;Robinson W R .High-temperature crystal chem-istry of Ti2O3:structural changes accompanying the semi-conductor-metal transition[J].Acta Crystallographica Section B:Structural Science,1977,33:1342.
[21] Faramarz ZARANDI;Steve YUE .The effect of boron on hot ductility of Nb-microalloyed steels[J].ISIJ International,2006(4):591-598.
[22] WANG Xiaofeng,CHEN Weiqing.Influence of cerium on hot workability of 00Cr25Ni7Mo4N super duplex stainless steel[J].稀土学报(英文版),2010(02):295-300.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%