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Original Articles

Structural relaxation in metallic glasses

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Pages 715-725 | Published online: 20 Aug 2006

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M. Knobel, J.P. Sinnecker, J.F. Saenger & R. Sato Turtelli. (1993) Effect of as-cast topological disorder on the magnetic properties of nanocrystalline Fe73.5Cu1Nb3Si13.5.B9 . Philosophical Magazine B 68:6, pages 861-867.
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H. Stulens, G. Knuyt, W. de Ceuninck & L.M. Stals. (1992) A simple method for calculating an energy spectrum for defect annealing from a constant heating rate experiment. Philosophical Magazine B 66:5, pages 601-613.
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G. Knuyt, H. Stulens, W. De Ceuninck, G.J. Bex & L.M. Stals. (1992) A simple method of calculating an energy spectrum from isothermal measurements, using Fourier techniques. Philosophical Magazine B 65:5, pages 1053-1065.
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Articles from other publishers (15)

Ignacio García, Nuria Iturriza, Juan José del Val, Hans Grande, José A. Pomposo & Julián González. (2010) Magnetic force microscopy characterization of heat and current treated Fe40Ni38Mo4B18 amorphous ribbons. Journal of Magnetism and Magnetic Materials 322:13, pages 1822-1827.
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Shamshad A. Khan, F.S. Al-Hazmi, A.S. Faidah, S.J. Yaghmour, Ali M. Al-Sanosi & A.A. Al-Ghamdi. (2009) Kinetics of Se75S25−xCdx glassy system using differential scanning calorimeter. Journal of Alloys and Compounds 484:1-2, pages 649-653.
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Shamshad A. Khan, F.S. Al-Hazmi, A.S. Faidah & A.A. Al-Ghamdi. (2009) Calorimetric studies of the crystallization process in a-Se75S25−xAgx chalcogenide glasses. Current Applied Physics 9:3, pages 567-572.
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Shamshad A Khan, M Zulfequar & M Husain. (2003) The activation energy and the Avrami exponent for crystallization in a-Bi0.5Se99.5−xZnx glasses. Current Applied Physics 3:4, pages 337-343.
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Bozena Todorow, Othmar von Bogen & Steve Kanellis. (2000) Apparatus for real-time observations of the annealing process of metallic glasses. Journal of Magnetism and Magnetic Materials 215-216, pages 499-502.
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O.P. Bobrov, V.A. Khonik & V.S. Zhelezny. (1998) Determination of activation energy spectra of irreversible structural relaxation of metallic glasses using non-isothermal stress relaxation data. Journal of Non-Crystalline Solids 223:3, pages 241-249.
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G. Ruitenberg, Paul De Hey, F. Sommer & Jilt Sietsma. (1997) Pressure-Induced Structural Relaxation in Amorphous : The Formation Volume for Diffusion Defects . Physical Review Letters 79:24, pages 4830-4833.
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E. Jakubczyk, Z. Mandecki & J. Filipecki. (1995) Crystallization process for the metallic glass Fe18Co60Si9B13. Journal of Non-Crystalline Solids 192-193, pages 509-512.
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P. Allia, M. Baricco, M. Knobel, P. Tiberto & F. Vinai. (1994) An exact model of d.c. joule heating in amorphous metallic ribbons. Materials Science and Engineering: A 179-180, pages 361-365.
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Y. Takahara & H. Matsuda. (1994) Reversible structural relaxation in FeBSi amorphous alloys. Materials Science and Engineering: A 179-180, pages 279-282.
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Yoshihiro Takahara & Hidehiko Matsuda. (1994) Change in Magnetic Properties with Annealing of a Cold-Rolled Amorphous Fe<SUB>79</SUB>B<SUB>16</SUB>Si<SUB>5</SUB> Alloy. Materials Transactions, JIM 35:7, pages 435-438.
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G Knuyt, H Stulens, W De Ceuninck & L M Stals. (1993) Derivation of an activation energy spectrum for defect processes from isothermal measurements, using a minimization principle and Fourier analysis. Modelling and Simulation in Materials Science and Engineering 1:4, pages 437-448.
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Brian J. Bartholomeusz, Peter M. Kopalidis & Douglas G. Stinson. (1992) Thermally induced structural relaxation in amorphous rare-earth–transition metal thin films. Journal of Applied Physics 71:10, pages 4959-4965.
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? Kubi??r, J. Spi?iak & P. Duhaj. (1991) Structural relaxation of Pd82Si18 and Cu53.5Zr44.3Nb2.2 glassy systems. Materials Science and Engineering: A 133, pages 523-525.
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L. Kubi??r, J. Spi?iak & P. Duhaj. 1991. Rapidly Quenched Materials. Rapidly Quenched Materials 523 525 .

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