Abstract
The effects of laser-directed energy deposition (LDED) and casting on the microstructure evolution of an Al-10Ce alloy were studied. The results showed that the high cooling rate and the strong temperature gradient of the LDED inhibited the formation of the primary Al11Ce3 phase and promoted the refinement of the eutectic Al11Ce3 phase. At 300 °C, the LDED sample still exhibited excellent mechanical properties with the tensile strength, the yield strength and the elongation of 103 MPa, 79 MPa and 29.1%, which were better than those of the cast sample of 75 MPa, 46 MPa and 24.6%, respectively. Further, the high-temperature strengthening-toughening mechanism of the Al-10Ce alloy produced by LDED were mainly attributed to: (1) The refinement of the Al11Ce3 phase was conducive to the formation of high-density dislocations during deformation; (2) The elimination of the primary phase and the passivation of the phase interface reduced the stress concentration; (3) At high temperature, the dislocation recovery and the decomposition into stacking faults coexisted, which promoted the plasticity improvement and the strength maintenance.
| Original language | English |
|---|---|
| Article number | 149960 |
| Journal | Materials Science and Engineering: A |
| Volume | 957 |
| DOIs | |
| State | Published - Apr 2026 |
Keywords
- Al-Ce alloy
- High-temperature properties
- Laser-directed energy deposition
- Strengthening-toughening mechanism
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