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Mechanism and kinetics of eutectoid reaction in CuAl system

✍ Scribed by S.D Kulkarni


Publisher
Elsevier Science
Year
1973
Weight
885 KB
Volume
21
Category
Article
ISSN
0001-6160

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✦ Synopsis


The probable mechanism of pearlite growth in the Cu-Al system has been deduced on the basis of theoretioally calculated diffusivities in the ordered parent phase B,. Sundquist's theory of pearlite growth baaed on the interface diffusion and local equilibrium across the interface haa been employed. The criterion of "upper catastropic limit" suggested by Sundquist for fixing the growth velocity and interlamellar spacing satisfactorily explains the anomalous growth rate and interlamellar spacing variation with temperature observed in this system. The calculated results agree well with the experimental observations. The calculated activation energy for the pearlite growth also indicates that the reaction is interface diffusion controlled.

MECANISME ET CINETIQUE

DE LA REACTION EUTECTOIDE DANS LE SYSTEME Cu-Al Le m&anisme probable pour la croissanoe de la perlite dans le systBme Cu-Al a BtB deduit des diffusivitis dans la phase ordonnb initiale pl, dif%sivitb qui avaient 6tB thboriquement. L'auteur a utilisb la thborie de Sundquist pour la croissance de la perlite, bassQ sur la diffusion aux interfaces et 1'6quilibre local B travers un interface. La vitesse de croissance anormale et la variation avec la tempbrature de l'especement interlamellaire qui ont BtB observCs dans ce systeme sont expliqu&s de fagon satisfaisante B l'aide du crititre de la "limite supbrieure catastrophique" sugg& par Sundquist pour fixer la vitesse de aroissance et l'espaoement interlamellaire. Lea r&mltats calcult% sont en bon accord avec lea r&ultats expbrimentaux. L'hnergie d'activetion calculb pour la croissanoe de la perlite montre Bgalement que la r&&ion est contr61Be par la diffusion aux interfaces. MECHANISMUS UND KINETIK DER EUTEKTOID-REAKTION IM SYSTEM Cu-Al Auf der Grundlage theoretisch berechneter Diflusivitiiten in der geordnet,en Mutterphase /-$ wurde der wahrscheinliche Mechanismus des Perlitwachstums im System Cu-Al abgeleitet. Es wurde die von Grenzflilahendiffusion und lokalem Gleichgewicht an der Grenzflitche ausgehende Sundquist-Theorie fti das Perlitwachstum angewandt. Des von Sundquist fiir die Bestimmung der Wachstumsgeschwindigkeit und des interlamellaren Abstandes vorgeschlagene Kriterium ('upper catastrophic limit') e&l&t befriedigend die anomale Wachstumsgeschwindigkeit und die Variation des interlamellaren Abstandes mit der Temperatur. Die berechneten Werte etimmen mit den experimentellen Beobachtungen gut i&rein. Die fiir das Perlitwachstum berechnete Aktivierungsenergie deutet ebenfalls auf ine durch GrenzflBchendiffusion kontrollierte Reaktion hin.


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