Preparation of mullite whiskers and their enhancement effect on ceramic matrix composites

Jinhua Zhang , Hongdan Wu , Suxin Zhang , Jishun Yu , Shu’en Hou

Journal of Wuhan University of Technology Materials Science Edition ›› 2013, Vol. 28 ›› Issue (3) : 471 -475.

PDF
Journal of Wuhan University of Technology Materials Science Edition ›› 2013, Vol. 28 ›› Issue (3) : 471 -475. DOI: 10.1007/s11595-013-0715-4
Article

Preparation of mullite whiskers and their enhancement effect on ceramic matrix composites

Author information +
History +
PDF

Abstract

Mullite whiskers were facilely prepared by sintering kyanite at high temperature, with the addition of AlF3·3H2O. The as-prepared whiskers have been characterized systematically in terms of phase composition, morphology, and structure. Results showed that the morphology and size of mullite whiskers were strongly depended on the content of AlF3·3H2O and sintering temperature. At temperatures in the range of 1 100 to 1 500°C with 4 wt% addition of AlF3·3H2O, the well-shaped mullite whiskers were obtained. For an instance, the mullite whiskers with 5–10 μm in length and 0.1–0.2 μm in cross-section could be formed at 1 400°C, with 4 wt% addition of AlF3·3H2O. Moreover, results showed that the addition of mullite whiskers into ceramic matrix enhanced its fracture toughness significantly.

Keywords

mullite whiskers / kyanite / ceramics / SEM / nanocrystalline materials

Cite this article

Download citation ▾
Jinhua Zhang, Hongdan Wu, Suxin Zhang, Jishun Yu, Shu’en Hou. Preparation of mullite whiskers and their enhancement effect on ceramic matrix composites. Journal of Wuhan University of Technology Materials Science Edition, 2013, 28(3): 471-475 DOI:10.1007/s11595-013-0715-4

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Okada K, Otsuka N Synthesis of Mullite Whiskers by Vapor-Phase Reaction[J]. J. Mater. Sci. Lett., 1989, 8(9): 1 052-1 054.

[2]

Nie J, Zhang H, Xu M, . Synthesis of Mullite Whiskers Using Molten Salt Method[J]. Rare Metal Mat. Eng., 2009, 38: 1 154-1 157.

[3]

Zhang P, Liu J, Du H, . Influence of Silica Sources on Morphology of Mullite Whiskers in Na2SO4 Flux[J]. J. Alloy. Compd., 2009, 484(1–2): 580-584.

[4]

Zhang P, Liu J, Du H, . Molten Salt Synthesis of Mullite Whiskers from Various Alumina Precursors[J]. J. Alloy. Compd., 2010, 491(1–2): 447-451.

[5]

Peng P, Sorrell C Preparation of Mullite Whiskers from Topaz Decomposition[J]. Mater. Lett., 2004, 58(7–8): 1 288-1 291.

[6]

Kim B M, Cho Y K, Yoon S Y, . Mullite Whiskers Derived From Kaolin[J]. Ceram. Int., 2009, 35(2): 579-583.

[7]

Park Y M, Yang T Y, Yoon S Y, . Mullite Whiskers Derived from Coal Fly Ash[J]. Mat. Sci. Eng. A, 2007, 454: 518-522.

[8]

Jiang W H, Peng Y F, Liu J M, . Preparation of Mullite Whisker via Non-Hydrolytic Sol-Gel Route [J]. J. Inorg. Mater, 2010, 25(05): 532-536.

[9]

Niihara K, Morena R, Hasselman D P H Evaluation of K IC of Brittle Solids by the Indentation Method with Low Crack-to-Indent Ratios[J]. J. Mat. Sci. Lett., 1982, 1: 13-16.

[10]

Brunauer G, Frey F, Boysen H, . Neutron-diffraction Study up to 1 600 °C of 3:2 Mullite[J]. Appl. Phys. A, 2002, 74: 986-988.

[11]

Hong S, Messing G L Anisotropic Grain Growth in Diphasic-Gel-Derived Titania-Doped Mullite[J]. J. Am. Ceram. Soc., 1998, 81(5): 1 269-1 277.

[12]

Kong L B, Huang H, Zhang T S, . Effect of Transition Metal Oxides on Mullite Whisker Formation from Mechanochemically Activated Powders[J]. Mat. Sci. Eng. A, 2003, 359(1–2): 75-81.

[13]

Jiang Z Z, Zhang Z T, Huang Y Preparation and High-Temperature Strengthening of Tetragonal Zirconia Mullite Whisker Composites[J]. Br. Ceram. Tran., 1994, 93(4): 154-156.

[14]

Okada K, Ötuska N Synthesis of Mullite Whiskers and Their Application in Composites[J]. J. Am. Ceram. Soc., 1991, 74(10): 2 414-2 418.

AI Summary AI Mindmap
PDF

103

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/