Microstructure, Mechanical Properties and Fracture Behavior of Micron-Sized TiB 2 /AlZnMgCu(Sc,Zr) Composites Fabricated by Selective Laser Melting
In this paper, micron-sized TiB /AlZnMgCu(Sc,Zr) composites were fabricated by selective laser melting (SLM) using directly mixed powder. Nearly fully dense (over 99.5%) and crack-free SLM-fabricated TiB /AlZnMgCu(Sc,Zr) composite samples were obtained and its microstructure and mechanical propertie...
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Veröffentlicht in: | Materials 2023-03, Vol.16 (5) |
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Hauptverfasser: | , , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | In this paper, micron-sized TiB
/AlZnMgCu(Sc,Zr) composites were fabricated by selective laser melting (SLM) using directly mixed powder. Nearly fully dense (over 99.5%) and crack-free SLM-fabricated TiB
/AlZnMgCu(Sc,Zr) composite samples were obtained and its microstructure and mechanical properties were investigated. It is found that the laser absorption rate of powder is improved by introducing micron-sizedTiB
particles, then the energy density required for SLM forming can be reduced, and the densification can finally be improved. Some crystalline TiB
formed a coherent relationship with the matrix, while some broken TiB
particles did not, however, MgZn
and Al
(Sc,Zr) can perform as intermediate phases to connect these non-coherent surfaces to aluminum matrix. All these factors lead to an increase in strength of the composite. The SLM-fabricated micron-sized TiB
/AlZnMgCu(Sc,Zr) composite finally shows a very high ultimate tensile strength of ~646 MPa and yield strength of ~623 MPa, which are higher than many other aluminum composites fabricated by SLM, while maintaining a relatively good ductility of ~4.5%. The fracture of TiB
/AlZnMgCu(Sc,Zr) composite is occurred along the TiB
particles and the bottom of the molten pool. This is due to the concentration of stress from the sharp tip of TiB
particles and the coarse precipitated phase at the bottom of the molten pool. The results show that TiB
plays a positive role in AlZnMgCu alloys fabricated by SLM, but finer TiB
particles should be studied. |
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ISSN: | 1996-1944 1996-1944 |