Acta Metallurgica Sinica (English Letters) ›› 2024, Vol. 37 ›› Issue (6): 982-998.DOI: 10.1007/s40195-024-01663-7
Special Issue: 2024年镁合金专辑
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Qian-Long Ren1, Shuai Yuan1, Shi-Yu Luan2, Jin-Hui Wang1(
), Xiao-Wei Li1, Xiao-Yu Liu1
Received:2023-09-06
Revised:2023-11-08
Accepted:2023-11-22
Online:2024-06-10
Published:2024-02-17
Contact:
Jin-Hui Wang, Qian-Long Ren, Shuai Yuan, Shi-Yu Luan, Jin-Hui Wang, Xiao-Wei Li, Xiao-Yu Liu. High-Temperature Stability of Mg-1Al-12Y Alloy Containing LPSO Phase and Mechanism of Its Portevin-Le Chatelier (PLC) Effect[J]. Acta Metallurgica Sinica (English Letters), 2024, 37(6): 982-998.
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| Sample No | Heat-treatment processes | |
|---|---|---|
| W530-x (x = 8, 16, 24) | 530 °C/x h (x = 8, 16, 24) | Quenched in water |
| W560-x (x = 8, 16, 24) | 560 °C/x h (x = 8, 16, 24) | Quenched in water |
| F530-x (x = 8, 16, 24) | 530 °C/x h (x = 8, 16, 24) | Cooled in furnace |
| F560-x (x = 8, 16, 24) | 560 °C/x h (x = 8, 16, 24) | Cooled in furnace |
Table 1 Different alloys with different heat-treatment processes
| Sample No | Heat-treatment processes | |
|---|---|---|
| W530-x (x = 8, 16, 24) | 530 °C/x h (x = 8, 16, 24) | Quenched in water |
| W560-x (x = 8, 16, 24) | 560 °C/x h (x = 8, 16, 24) | Quenched in water |
| F530-x (x = 8, 16, 24) | 530 °C/x h (x = 8, 16, 24) | Cooled in furnace |
| F560-x (x = 8, 16, 24) | 560 °C/x h (x = 8, 16, 24) | Cooled in furnace |
Fig. 2 a OM, b SEM images showing the microstructures of WA121 alloy in the as-cast condition. EDS mapping of WA121 alloy in the as-cast condition: c, f point scan, d area scan, e line scan
Fig. 8 Corresponding mechanical properties of WA121 alloy under high temperature for different solution processing methods: a F530-16 alloy, b F530-24 alloy
Fig. 9 SEM images of fracture surface morphology: a F530-16 alloy under tension at 250 °C; b F530-24 alloy under tension at 250 °C; c F530-16 alloy under tension at 300 °C; d F530-24 alloy under tension at 300 °C
Fig. 10 EBSD orientation map and GND diagrams near the fracture area of WA121 alloy: a, e F530-16-250, b, f F530-24-250, c, g F530-16-300, d, h F530-24-300
| Sample | F530-16-250 | F530-24-250 | F530-16-300 | F530-24-300 |
|---|---|---|---|---|
| GNDs | 0.6 × 1014 | 0.52 × 1014 | 0.75 × 1014 | 0.54 × 1014 |
Table 2 Different samples exhibit distinct values of the dislocation density related to grain boundary slip
| Sample | F530-16-250 | F530-24-250 | F530-16-300 | F530-24-300 |
|---|---|---|---|---|
| GNDs | 0.6 × 1014 | 0.52 × 1014 | 0.75 × 1014 | 0.54 × 1014 |
Fig. 11 IGMA diagrams of grain size in different alloys; a, b F530-16-250 alloy, c, d F530-24-250 alloy, e, f F530-16-300 alloy, g, h F530-24-300 alloy
Fig. 13 SEM images near the fracture surface after deformation for a F530-16 alloy and b F530-24 alloy at a tensile temperature of 250 °C, and for c F530-16 alloy and d F530-24 alloy at a tensile temperature of 300 °C
| Alloy | F530-16-250 | F530-16-300 | F530-24-250 | F530-24-300 |
|---|---|---|---|---|
| 0.3279 | 0.2876 | 0.3663 | 0.3396 | |
| f | 0.1176 | 0.1032 | 0.0437 | 0.0418 |
| 69.5401 | 70.3910 | 31.6197 | 28.7465 |
Table 3 Parameter values and calculation results used to calculate the Orowan mechanism
| Alloy | F530-16-250 | F530-16-300 | F530-24-250 | F530-24-300 |
|---|---|---|---|---|
| 0.3279 | 0.2876 | 0.3663 | 0.3396 | |
| f | 0.1176 | 0.1032 | 0.0437 | 0.0418 |
| 69.5401 | 70.3910 | 31.6197 | 28.7465 |
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