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Crystallization kinetics of (Ni_(0.75)Fe_(0.25)_(78-x)Nb_xSi_(10)B_(12)(x=0,5)amorphous alloys

Crystallization kinetics of (Ni_(0.75)Fe_(0.25)_(78-x)Nb_xSi_(10)B_(12) (x=0, 5) amorphous alloys
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摘要 Amorphous ribbons of (Ni0.75Fe0.25)78-xNbxSi10B12 (x = 0, 5) were prepared by a single roller melt-spinning technique in air atmosphere. The crystallization kinetics of the alloys were investigated by means of continuous heating, and the activation energies of the alloys were calculated using Kissinger plot method and Ozawa plot method on the basis of differential thermal analysis data. The crystallization products were analyzed by X-ray diffraction. After the (Ni0.75Fe0.25)78Si10B12 amorphous alloy was annealed at the temperatures 715 and 745 K, a single phase of γ-(Fe, Ni) solid solution with grain sizes of about 10.3 and 18.5 nm, respectively, precipitates in the amorphous matrix. The crystallized phases are γ-(Fe, Ni) solid solution, Fe2Si, Ni2Si, and Fe3B after annealing at 765 K. The (Ni0.75Fe0.25)73NbsSi10 B12 amorphous alloy was annealed at 720, 750, and 800 K; and the crystallization phases, γ(Fe, Ni) solid solution, (Fe, Ni)23B6. Ni31Si12 and Nb2NiB0.16 form simultaneously. Amorphous ribbons of (Ni0.75Fe0.25)78-xNbxSi10B12 (x = 0, 5) were prepared by a single roller melt-spinning technique in air atmosphere. The crystallization kinetics of the alloys were investigated by means of continuous heating, and the activation energies of the alloys were calculated using Kissinger plot method and Ozawa plot method on the basis of differential thermal analysis data. The crystallization products were analyzed by X-ray diffraction. After the (Ni0.75Fe0.25)78Si10B12 amorphous alloy was annealed at the temperatures 715 and 745 K, a single phase of γ-(Fe, Ni) solid solution with grain sizes of about 10.3 and 18.5 nm, respectively, precipitates in the amorphous matrix. The crystallized phases are γ-(Fe, Ni) solid solution, Fe2Si, Ni2Si, and Fe3B after annealing at 765 K. The (Ni0.75Fe0.25)73NbsSi10 B12 amorphous alloy was annealed at 720, 750, and 800 K; and the crystallization phases, γ(Fe, Ni) solid solution, (Fe, Ni)23B6. Ni31Si12 and Nb2NiB0.16 form simultaneously.
出处 《Rare Metals》 SCIE EI CAS CSCD 2006年第4期342-348,共7页 稀有金属(英文版)
基金 This work was financially supported by the National "863" Program (No. 2003AA32X150) and the State Key Laboratory of Advanced New Non-ferrous Materials, China.
关键词 amorphous materials thermal analysis crystallization kinetics activation energy amorphous materials thermal analysis crystallization kinetics activation energy
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参考文献20

  • 1Lement W.K.,Willens R.H.,and DuwezP.,Non-crystalline structure in solidified gold-silion alloys,Nature,1960,187:860.
  • 2Ma L.and Inoue A.,On glass-forming ability of Fe-based amorphousalloys,Mater.Lett.,1999,38:58.
  • 3Makino A.,Inoue A.,and Mizushima T.,Soft magnetic properties of Fe-based bulk amorphousalloys,Mater.Trans.JIM,2000,41:1471.
  • 4Zhang W.and Inoue A.,Formation and magnetic properties of bulk glassy Fe-Co-Nd-Dy-Balloys with high boron concentrations,Mater.Trans.JIM,2000,41:1679.
  • 5Inoue A.,Nishiyama N.,Amiya K.,Zhang T.,and Masumoto T.,Ti-based amorphous alloys witha wide supercooled liquid region,Mater.Lett.,1994,19:131.
  • 6Shen B.,Kimura H.,Inoue A.,and Mizushima T.,Bulk glassy Fe-Co-Ga-P-C-B alloys with highglass-forming ability,high saturation magnetization and good soft magneticproperties,Mater.Trans.JIM,2000,41:1675.
  • 7Inoue A.and Takeuchi A.,Recent progress in bulk glassy,nanoquasicrystalline andnanocrystalline alloys,Mater.Sci.Eng.A,2004,375:16.
  • 8Wang X.M.,Yoshii I.,and Inoue A.,Bulk amorphous Co-Ni-based alloys with a largesupercooled liquid region,Mater.Trans.JIM,2000,41:539.
  • 9Surinach S.,Baro M.D.,Clavaguera-Mora M.T.,and Clavaguera N.,Kinetic study ofisothermal and continuous heating crystallization in GeSe2-GeTe-Sb2Te3alloy glasses,J.NonCryst.Solids,1983,58:209.
  • 10Jain R.,Saxena N.S.,Bhandari D.,Sharma S.K.,and Rao K.V.R.,Crystallization kinetics ofCuxTi100-x (x=43,50 and 53) glasses,Phys.B,2001,301:341.

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