TY - JOUR
T1 - Parameter determination of an analytical model for phase transformation kinetics
T2 - Application to crystallization of amorphous Mg-Ni alloys
AU - Liu, F.
AU - Sommer, F.
AU - Mittemeijer, E. J.
PY - 2004/9
Y1 - 2004/9
N2 - This study used an analytical model for phase-transformation kinetics. We used different combinations of various nucleation mechanisms [mixed nucleation (site saturation plus continuous nucleation), Avrami nucleation, and site saturation plus Avrami nucleation] and growth mechanisms (volume diffusion-controlled growth and interface-controlled growth) for a single transformation. Our work incorporated the effect of impingement of the growing particles. These factors have been applied to the same experimental results to find out the prevailing mechanisms. We made a detailed analysis for the determination of the parameters of the analytical phase-transformation model, in order to determine the most reasonable nucleation and growth modes, and the values for the activation energies of nucleation and growth. We used the model to study the crystallization kinetics of Mg82Ni18 and Mg 88.7Ni11.3, as measured by means of both isothermal and isochronal differential scanning calorimetry.
AB - This study used an analytical model for phase-transformation kinetics. We used different combinations of various nucleation mechanisms [mixed nucleation (site saturation plus continuous nucleation), Avrami nucleation, and site saturation plus Avrami nucleation] and growth mechanisms (volume diffusion-controlled growth and interface-controlled growth) for a single transformation. Our work incorporated the effect of impingement of the growing particles. These factors have been applied to the same experimental results to find out the prevailing mechanisms. We made a detailed analysis for the determination of the parameters of the analytical phase-transformation model, in order to determine the most reasonable nucleation and growth modes, and the values for the activation energies of nucleation and growth. We used the model to study the crystallization kinetics of Mg82Ni18 and Mg 88.7Ni11.3, as measured by means of both isothermal and isochronal differential scanning calorimetry.
UR - http://www.scopus.com/inward/record.url?scp=6044253797&partnerID=8YFLogxK
U2 - 10.1557/JMR.2004.0341
DO - 10.1557/JMR.2004.0341
M3 - 文章
AN - SCOPUS:6044253797
SN - 0884-2914
VL - 19
SP - 2586
EP - 2596
JO - Journal of Materials Research
JF - Journal of Materials Research
IS - 9
ER -