Growth characteristics of directionally solidified Al2O3/YAG/ZrO2 ternary hypereutectic in situ composites under ultra-high temperature gradient

Hai-jun Su , Jun Zhang , Lin Liu , Heng-zhi Fu

International Journal of Minerals, Metallurgy, and Materials ›› 2011, Vol. 18 ›› Issue (1) : 121 -125.

PDF
International Journal of Minerals, Metallurgy, and Materials ›› 2011, Vol. 18 ›› Issue (1) : 121 -125. DOI: 10.1007/s12613-011-0410-4
Article

Growth characteristics of directionally solidified Al2O3/YAG/ZrO2 ternary hypereutectic in situ composites under ultra-high temperature gradient

Author information +
History +
PDF

Abstract

Oxide eutectic ceramic in situ composites have attracted significant interest in the application of high-temperature structural materials because of their excellent high-temperature strength, oxidation and creep resistance, as well as outstanding microstructural stability. The directionally solidified ternary Al2O3/YAG/ZrO2 hypereutectic in situ composite was successfully prepared by a laser zone remelting method, aiming to investigate the growth characteristic under ultra-high temperature gradient. The microstructures and phase composition of the as-solidified hypereutectic were characterized by using scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS), and X-ray diffraction (XRD). The results show that the composite presents a typical hypereutectic lamellar microstructure consisting of fine Al2O3 and YAG phases, and the enriched ZrO2 phases with smaller sizes are randomly distributed at the Al2O3/YAG interface and in Al2O3 phases. Laser power and scanning rate strongly affect the sample quality and microstructure characteristic. Additionally, coarse colony microstructures were also observed, and their formation and the effect of temperature gradient on the microstructure were discussed.

Keywords

eutectics / ceramic materials / microstructure / thermal gradients / remelting / solidification

Cite this article

Download citation ▾
Hai-jun Su, Jun Zhang, Lin Liu, Heng-zhi Fu. Growth characteristics of directionally solidified Al2O3/YAG/ZrO2 ternary hypereutectic in situ composites under ultra-high temperature gradient. International Journal of Minerals, Metallurgy, and Materials, 2011, 18(1): 121-125 DOI:10.1007/s12613-011-0410-4

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Hirano K. Application of eutectic composites to gas turbine system and fundamental fracture properties up to 1700-C. J. Eur. Ceram. Soc., 2005, 25(8): 1191.

[2]

Shen Z.J., Ekstrand A., Nygren M. Oxide/oxide composites in the system Cr2O3-Y2O3-Al2O3. J. Eur. Ceram. Soc., 2000, 20(5): 625.

[3]

Orera V.M., Merino R.I., Pardo J.A., Larrea A., Peňa J.I., González C., Poza P., Pastor J.Y., Llorca J. Microstructure and physical properties of some oxide eutectic composites processed by directional solidification. Acta Mater., 2000, 48(18–19): 4683.

[4]

Llorca J., Orera V.M. Directionally solidified eutectic ceramic oxides. Prog. Mater. Sci., 2006, 51(6): 711.

[5]

Waku Y., Nakagawa N., Wakamoto T., Ohtsubo H., Shimizu K., Kohtoku Y. A ductile ceramic eutectic composite with high strength at 1873 K. Nature, 1997, 389(6646): 49.

[6]

Waku Y., Nakagawa N., Wakamoto T., Ohtsubo H., Shimizu K., Kohtoku Y. High-temperature strength and thermal stability of a unidirectionally solidified Al2O3/YAG eutectic composite. J. Mater. Sci., 1998, 33(5): 1217.

[7]

Waku Y., Nakagawa N., Wakamoto T., Ohtsubo H., Shimizu K., Kohtoku Y. The creep and thermal stability characteristics of a unidirectionally solidified eutectic composite. J. Mater. Sci., 1998, 33(20): 4943.

[8]

Calderon-Moreno J.M., Yoshimura M. Al2O3-Y3Al5O12(YAG)-ZrO2 ternary composite rapidly solidified from the eutectic melt. J. Eur. Ceram. Soc., 2005, 25(8): 1365.

[9]

Su H.J., Zhang J., Cui C.J., Liu L., Fu H.Z. Rapid solidification of Al2O3/Y3Al5O12/ZrO2 eutectic in situ composites by laser zone remelting. J. Cryst. Growth, 2007, 307(2): 448.

[10]

Oliete P.B., Peňa J.I., Larrea A., Orera V.M., Llorca J., Pastor J.Y., Martín A., Segurado J. Ultra-high-strength nanofibrillar Al2O3-YAG-YSZ eutectics. Adv. Mater., 2007, 19(17): 2313.

[11]

Su H.J., Zhang J., Cui C.J., Liu L., Fu H.Z. Rapid solidification behavior of Al2O3/Y3Al5O12(YAG) binary eutectic ceramic in situ composites. Mater. Sci. Eng. A, 2008, 479(1–2): 380.

[12]

Lakiza S.M., Lopato L.M. Stable and metastable phase relations in the system alumina-zirconia-yttria. J. Am. Ceram. Soc., 1997, 80(4): 893.

[13]

Waku Y., Sakata S., Mitani A., Shimizu K., Hasebe M. Temperature dependence of flexural strength and microstructure of Al2O3-Y3Al5O12-ZrO2 ternary melt growth composites. J. Mater. Sci., 2002, 37(14): 2975.

[14]

Lee J.H., Yoshikawa A., Kaiden H., Lebbou K., Fukuda T., Yoon D. H., Waku Y. Microstructure of Y2O3 doped Al2O3/ZrO2 eutectic fibers grown by the micro-pulling-down method. J. Cryst. Growth, 2001, 231(1–2): 179.

[15]

Peňa J.I., Larsson M., Merino R.I., de Francisco I., Orera V.M., Llorca J., Pastor J.Y., Martín A., Segurado J. Processing, microstructure and mechanical properties of directionally-solidified Al2O3-Y3Al5O12-ZrO2 ternary eutectics. J. Eur. Ceram. Soc., 2006, 26(15): 3113.

[16]

Çadırlı E., Kaya H., Gnduz M. Effect of growth rates and temperature gradients on the lamellar spacing and the undercooling in the directionally solidified Pb-Cd eutectic alloy. Mater. Res. Bull., 2003, 38(9–10): 1457.

[17]

Calderon-Moreno J.M., Yoshimura M. Stabilization of zirconia lamellae in rapidly solidified alumina-zirconia eutectic composites. J. Eur. Ceram. Soc., 2005, 25(8): 1369.

[18]

Larrea A., Orera V.M., Merino R.I., Peňa J.I. Microstructure and mechanical properties of Al2O3-YSZ and Al2O3-YAG directionally solidified eutectic plates. J. Eur. Ceram. Soc., 2005, 25(8): 1419.

[19]

H.J. Su, J. Zhang, J.J. Tian, L. Liu, and H.Z. Fu, Preparation and characterization of Al2O3/Y3Al5O12/ZrO2 ternary hypoeutectic in situ composite by laser rapid solidification, J. Appl. Phys., 104(2008), No.2, art. No.023511.

AI Summary AI Mindmap
PDF

105

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/