Crystallization kinetics of Al±La±Ni amorphous alloy
نویسندگان
چکیده
The crystallization kinetics of an Al89La6Ni5 amorphous alloy were studied by thermal analysis. Both continuous heating and isothermal DSC traces showed that the Al89La6Ni5 amorphous alloy undergoes a two-stage crystallization process upon heating. The ®rst transformation, in which fcc-Al precipitates from the amorphous matrix, is a nucleation and three-dimensional diusion-controlled growth process with an activation energy of 302 kJ/mol. The second transformation, in which the residual amorphous phase transforms into several intermetallic compounds, is a threedimensional process with an activation energy of 300 kJ/mol. From the Kissinger method, dierent activation energies are obtained for the two transitions, 169 and 200 kJ/mol, respectively. The origin of this dierence is discussed. It is supposed that the Kissinger activation energy includes the contribution of both the nucleation and growth activation energies and the activation energy derived from isothermal analysis comes mainly from growth. Ó 2000 Elsevier Science B.V. All rights reserved.
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