Deakin University
Browse

The kinetics of two-stage formation of TiAl3 in multilayered Ti/Al foils prepared by accumulative roll bonding

Version 2 2024-06-03, 10:56
Version 1 2014-10-28, 08:57
journal contribution
posted on 2024-06-03, 10:56 authored by D Yang, Peter HodgsonPeter Hodgson, C Wen
The solid-state reactions of Ti/Al multilayered samples produced by Accumulative Roll Bonding (ARB) have been investigated using differential scanning calorimetry, X-ray diffraction and scanning electron microscopy. The kinetics of the formation of the intermetallic compound TiAl3 was highlighted. Experimental evidence and analysis of the data shows that, there was a two-stage process in the formation of TiAl3 in the ARB Ti/Al reactive multilayered samples. Calorimetric and microstructural analyses also suggest that the interdiffusion of Al and Ti which led to solid solutions preceded the formation of intermetallic compounds. Despite the apparent chaos in the thickness of the ARB multilayered samples, the distribution of layer spacing did not become broad enough to lose the main features of the double exothermal behaviour. Isothermal DSC shows a larger Avarami constant in ARB Ti/Al multilayered structures than was found in Ti/Al thin films. A modified model based on thin films was set up to describe the kinetic characteristics of the formation of the intermetallic compound TiAl3 in ARB samples.

History

Alternative title

The kinetics of two-stage formation of TiAl3 in multilayered Ti/Al foils prepared by accumulative roll bonding

Journal

Intermetallics

Volume

17

Pagination

727-732

Location

Oxford, England

ISSN

0966-9795

eISSN

1879-0216

Language

eng

Publication classification

C1 Refereed article in a scholarly journal

Copyright notice

2009, Elsevier Ltd.

Issue

9

Publisher

Elsevier Ltd