Hypereutectic Al 2 O 3 /YAG/ZrO 2 In Situ Composite Prepared by Horizontal Laser Zone Melting
Al 2 O 3 /YAG/ZrO 2 eutectic in situ composite has now been considered as the new generation of high-temperature structural material due to its excellent performance even close to its melting point. In this work, hypereutectic Al 2 O 3 /YAG/ZrO 2 in situ composite is manufactured by the horizontal l...
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Veröffentlicht in: | High temperature materials and processes 2017-01, Vol.36 (1), p.23-28 |
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Hauptverfasser: | , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Al
2
O
3
/YAG/ZrO
2
eutectic in situ composite has now been considered as the new generation of high-temperature structural material due to its excellent performance even close to its melting point. In this work, hypereutectic Al
2
O
3
/YAG/ZrO
2
in situ composite is manufactured by the horizontal laser zone melting technique. The relationship between the solidification microstructure and the solidification parameters is studied. The minimum lamellar spacing is as finer as 0.20 μm when the laser scanning rate is 800 μm/s. Compared with eutectic Al
2
O
3
/YAG/ZrO
2
, hypereutectic exhibits more regular and finer microstructure at the similar conditions. Meanwhile, it is found that the lamellar spacing remains almost as constant at a certain high solidification velocity. The maximum hardness and fracture toughness are 15.9 GPa and 4.2 MPa · m
1/2
, respectively. |
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ISSN: | 0334-6455 2191-0324 |
DOI: | 10.1515/htmp-2015-0147 |