Abstract
The dissolution kinetics of L12 ordered precipitations (δ′-Al3Li) in a disordered matrix during retrogression heat treatment was investigated on atomic scale using computer simulations based on microscopic diffusion equations (Langevin equation) with the discrete format. The evolutions of atomic pictures and order parameter profiles with time were analyzed, and the retrogression mechanisms of Al-Li alloys were further studied. In the course of retrogression, it is firstly proved that the evolutions of δ′ phase in a disordered matrix is in the order: stoicheometric δ′ phase → non-stoicheometric ordered phase → disordered matrix; and then the retrogression of alloys at metastable field tends to the anti-process of the phase precipitation of alloys at unstable field, while retrogression of alloys at unstable field tends to the anti-process of the phase precipitation of alloys at metastable field.
Original language | English |
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Pages (from-to) | 616-622 |
Number of pages | 7 |
Journal | Jinshu Xuebao/Acta Metallurgica Sinica |
Volume | 40 |
Issue number | 6 |
State | Published - Jun 2004 |
Keywords
- Al-Li alloy
- Microscopic diffusion equation
- Retrogression mechanism
- Simulation