Recovery and recrystallization of the deformed, orderable alloy (Co78Fe22)3V
- 31 January 1991
- journal article
- Published by Springer Nature in Journal of Materials Research
- Vol. 6 (1) , 57-70
- https://doi.org/10.1557/jmr.1991.0057
Abstract
An alloy of composition (Co78Fe22)3V, which orders to an L12 superlattice below a critical temperature (Tc) of 910 °C, was rolled to 25–50% reduction in the initially ordered condition and annealed at various temperatures above and below Tc and examined by hardness, tensile testing, optical and electron microscopy and dilatometry, in order to study the progress of recovery and recrystallization. Recrystallization was severely retarded on annealing below Tc; close to Tc, recrystallization was ≈ 300 × slower in the ordered than the disordered range. Although recrystallization started promptly, predominantly at grain boundaries, very rapid recovery-softening of the unrecrystallized regions progressively reduced the driving force for recrystallization and slowed it down drastically. However, at 770°and 500 °C, recovery-softening was replaced by some recovery-hardening (i.e., strain-age hardening). Above Tc, recrystallization was complete in a few seconds and a special annealing method was needed to measure such times accurately. Dilatometric measurements showed that most of the order destroyed by rolling was restored long before recrystallization began, but the restoration was never complete unless the alloy was heated up through Tc and then slow cooled. Electron microscopy showed no sign of any antiphase domains in recrystallized grains except for a few isolated domain boundaries on annealing at 770 °C. A model is proposed to rationalize the incidence of recovery-softening or strain-age hardening at different annealing temperatures.Keywords
This publication has 16 references indexed in Scilit:
- Recrystallization and texture in boron-doped Ni3AlMaterials Science and Engineering: A, 1989
- Brillouin scattering and transmission electron microscopy studies of radiation-induced elastic softening, disordering and amorphization of intermetallic compoundsJournal of the Less Common Metals, 1988
- Dislocation creep in the ordered intermetallic (Fe, Ni)Al phaseMaterials Science and Engineering, 1986
- The Fracture of Ordered (Fe, Co)3VMetallurgical Transactions A, 1984
- The microstructure of ordered (Co0.78Fe0.22)3V alloyActa Metallurgica, 1982
- Development of iron-base long-range ordered (LRO) alloys for fusion reactor first wall and blanket applicationsJournal of Nuclear Materials, 1981
- The annealing behaviour of cold ′orked copper-25 at.% goldActa Metallurgica, 1973
- The Effects of Short‐Range Order and Long‐Range Order on the Equilibrium Configuration of Superdislocations in Fe-Co : 2 at% V — Consequences on Flow StressPhysica Status Solidi (b), 1971
- Ordering kinetics in long-range ordered Cu3AuActa Metallurgica, 1958
- Diffusion in Ordered and Disordered Copper-ZincPhysical Review B, 1956