Journal of Inorganic Materials ›› 2014, Vol. 29 ›› Issue (7): 673-680.DOI: 10.3724/SP.J.1077.2014.13507
• Orginal Article • Next Articles
WANG Yi, LIU Hai-Tao, CHENG Hai-Feng, WANG Jun
Received:2013-10-08
Revised:2014-01-11
Published:2014-07-20
Online:2014-06-20
About author:WANG Yi. E-mail:wycfcnudt@163.com
Supported by:CLC Number:
WANG Yi, LIU Hai-Tao, CHENG Hai-Feng, WANG Jun. Research Progress on Oxide/Oxide Ceramic Matrix Composites[J]. Journal of Inorganic Materials, 2014, 29(7): 673-680.
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Fig. 1 Application examples for Muf/Mullite CMCs[5] Products with complex shape (a), and segmented combustor tiles for the use as thermal protection systems (b)
Fig. 2 Several Oxide/Oxide CMCs with complex shapes prepared by ceramic slurry infiltration and winding process[9] (a) Rotation-symmetric WHIPOX component (protection tube); (b) Winding pattern with variable fiber orientation (computer simulation); (c) Combination of continuous fiber layers and grid-type structures as a result of special winding sequence
Fig. 3 Application examples for Oxide/Oxide CMCs[9-10] (a) Combustor inner and outer liners fabricated by ATK-COI ceramics; (b) A lightweight helicopter exhaust duct; (c) Nose cap of DLR’s SHEFEX space vehicle
| Samples | Interphases | Mechanical properties/MPa | Reference | |
|---|---|---|---|---|
| Composition | Fabrication | |||
| 2D-N480/M* | None BN | None CVD | 104 (FS, RT); 322 (FS, RT) | [48] |
| 2D-N550/M | BN/SiC | CVD | 182 (FS, RT) | [51] |
| 2D-N720/M | NdPO4 | EPD | 279 (FS, RT); 266 (FS, 1300 ℃); 142 (TS, RT) | [52] |
| 2D-N720/M | Porous AlPO4 | EPD | 175 (FS, RT); 160 (FS, 1300 ℃-100 h) | [40] |
| 2D-N720/CAS | None fugitive carbon | None CVD | 21 (FS, RT); 85 (FS, RT) | [53] |
Table 1 Applications of interphases in Oxide/Oxide CMCs
| Samples | Interphases | Mechanical properties/MPa | Reference | |
|---|---|---|---|---|
| Composition | Fabrication | |||
| 2D-N480/M* | None BN | None CVD | 104 (FS, RT); 322 (FS, RT) | [48] |
| 2D-N550/M | BN/SiC | CVD | 182 (FS, RT) | [51] |
| 2D-N720/M | NdPO4 | EPD | 279 (FS, RT); 266 (FS, 1300 ℃); 142 (TS, RT) | [52] |
| 2D-N720/M | Porous AlPO4 | EPD | 175 (FS, RT); 160 (FS, 1300 ℃-100 h) | [40] |
| 2D-N720/CAS | None fugitive carbon | None CVD | 21 (FS, RT); 85 (FS, RT) | [53] |
| Samples | Fabrication | Mechanical properties/MPa | Reference | |
|---|---|---|---|---|
| Original | After heat-treatment | |||
| 2D-N720/(M+A+PDA)* | SI-HP+PIP | 177(FS) | 189(FS )(1200 ℃-100 h) | [6] |
| 2D-N720/(M+A+PDA) | SI-HP+PIP | 148(TS) | 145(TS )(1200 ℃-1000 h) | [58-59] |
| 2D-N720/(A+S) | SI-HP+PIP | 175(TS) | 50(TS )(1200 ℃-1000 h) | [59] |
| 2D-N720/(M+PDA) | CR | 200(TS) | 220(TS )(1200 ℃-1000 h) | [60] |
| 2D-N720/AS | Sol-Gel | 204(FS) | 180(FS )(1000 ℃-100 h) | [61] |
| 1D-N720/M | SI-W | 165(FS) | 148(FS )(1250 ℃-400 h) | [7] |
Table 2 Mechanical properties of porous oxide CMCs
| Samples | Fabrication | Mechanical properties/MPa | Reference | |
|---|---|---|---|---|
| Original | After heat-treatment | |||
| 2D-N720/(M+A+PDA)* | SI-HP+PIP | 177(FS) | 189(FS )(1200 ℃-100 h) | [6] |
| 2D-N720/(M+A+PDA) | SI-HP+PIP | 148(TS) | 145(TS )(1200 ℃-1000 h) | [58-59] |
| 2D-N720/(A+S) | SI-HP+PIP | 175(TS) | 50(TS )(1200 ℃-1000 h) | [59] |
| 2D-N720/(M+PDA) | CR | 200(TS) | 220(TS )(1200 ℃-1000 h) | [60] |
| 2D-N720/AS | Sol-Gel | 204(FS) | 180(FS )(1000 ℃-100 h) | [61] |
| 1D-N720/M | SI-W | 165(FS) | 148(FS )(1250 ℃-400 h) | [7] |
| [1] | MA QING-SONG, LIU HAI-TAO, PAN YU, et al. Research progress on the application of C/SiC composites in scramjet. Journal of Inorganic Materials, 2013, 28(3): 247-255. |
| [2] | NASLAIN R. Design, preparation and properties of non-oxide CMCs for application in engines and nuclear reactors: an overview. Composites Science and Technology, 2004, 64(2): 155-170. |
| [3] | NASLAIN R, GUETTE A, REBILLAT F, et al. Oxidation mecha-n-isms and kinetics of SiC-matrix composites and their constituents. Journal of Materials Science, 2004, 39(24): 7303-7316. |
| [4] | MEDVEDOVSKI E. Alumina-mullite ceramics for structural applications. Ceramics International, 2006, 32(4): 369-375. |
| [5] | SCHNEIDER H, SCHREUER J, HILDMANN B. Structure and properties of mullite-a review. Journal of the European Ceramic Society, 2008, 28(2): 329-344. |
| [6] | HOLMQUIST M G, LANGE F F. Processing and properties of a porous oxide matrix composite reinforced with continuous oxide fibers. Journal of the American Ceramic Society, 2003, 86(10): 1733-1740. |
| [7] | KANKA B, SCHNEIDER H. Aluminosilicate fiber/mullite matrix composites with favorable high-temperature properties. Journal of the European Ceramic Society, 2000, 20(5): 619-623. |
| [8] | CARELLI E A V, FUJITA H, YANG J Y, et al. Effects of thermal aging on the mechanical properties of a porous-matrix ceramic composite. Journal of the American Ceramic Society, 2002, 85(3): 595-602. |
| [9] | KRENKEL W (Eds.). Ceramic Matrix Composites: Fiber Reinforced Ceramics and Their Applications. WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim, 2008: 205-229. |
| [10] | JURF R A, BUTNER S C. Advances in all-oxide CMC. Journal of Engineering for Gas Turbines and Power, 2000, 122(2): 202-205. |
| [11] | RUGGLES-WRENN M B, MUSIL S S, MALL S, et al. Creep behavior of NextelTM610/monazite/alumina composite at elevated temperatures. Composites Science and Technology, 2006, 66(13): 2089-2099. |
| [12] | CHEN Z F, ZHU X R, LIU Z L, et al. Microstructure and mullitization of aluminosilicate matrix in Nextel 720/aluminosi-licate composites prepared by LPCVI at 550℃. Ceramics International, 2006, 32(6): 687-690. |
| [13] | WANG Y, CHENG H F, LIU H T, et al. Effects of sintering temperature on mechanical properties of 3D mullite fiber (ALF FB3) reinforced mullite composites. Ceramics International, 2013, 39(8): 9229-9235. |
| [14] | 3M Nextel™ Ceramic Textiles Technical Notebook. 3M Center, 2004. |
| [15] | SCHNEIDER H, KOMARNENI S (EDS.). Mullite. WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim, 2005: 141-156. |
| [16] | CHAWLA K K. Interface Engineering in Oxide Fiber/Oxide Matrix Composites. Contract No. N0014-89-J1459, annual report for the period 1992 to 1993. |
| [17] | KAUFMANN H, MORTENSEN A. Wetting of Saffil alumina fiber preforms by aluminum at 973 K. Metallurgical Transactions A, 1992, 23A(7): 2071-2073. |
| [18] | SCHMÜCKER M, FLUCHT F, MECHNICH P. Degradation of oxide fibers by thermal overload and environmental effects. Materials Science and Engineering A, 2012, 557(15): 10-16. |
| [19] | WANG Y, CHENG H F, LIU H T, et al. Microstructure and room temperature mechanical properties of mullite fibers afterheat-treatment at elevated temperatures. Materials Science and Engineering A, 2013, 578(20): 287-293. |
| [20] | DASSIOS K G, STEEN M, FILIOU C. Mechanical properties of alumina NextelTM 720 fibres at room and elevated temperatures: tensile bundle testing. Materials Science and Engineering A, 2003, 349(12): 63-72. |
| [21] | SCHMÜCKER M, SCHNEIDER H, MAUER T, et al. Kinetics of mullite grain growth in alumino silicate fibers. Journal of the American Ceramic Society, 2005, 88(2): 488-490. |
| [22] | DELÉGLISE F, BERGER M H, JEULIN D, et al. Microstructural stability and room temperature mechanical properties of the Nextel 720 fibre. Journal of the European Ceramic Society, 2001, 21(5): 569-580. |
| [23] | TOWATA A, HWANG H J, YASUOKA M, et al. Fabrication of fine YAG-particulate-dispersed alumina fiber. Journal of the American Ceramic Society, 1998, 81(9): 2469-2472. |
| [24] | TOWATA A, HWANG H J, YASUOKA M, et al. Preparation of polycrystalline YAG/alumina composite fibers and YAG fiber by Sol-Gel method. Composites PartA, 2001, 32(8): 1127-1131. |
| [25] | QUISPE-CANCAPA J J, DE ARELLANO-LÓPEZ A R, Martínez- Fernández J. Tensile strength of directionally solidified chromia- doped sapphire. Journal of the European Ceramic Society, 2005, 25(8): 1259-1268. |
| [26] | CLAUSS B, GRÜB A, OPPERMANN W. Continuous yttria-stab-ilized zirconia fibers. Advanced Materials, 1996, 8(2): 142-146. |
| [27] | MARSHALL D B, LANGE F F, MORGAN P D. High-strength zirconia fibers. Journal of the American Ceramic Society, 1987, 70(8): C-187-C-188. |
| [28] | EL-BUAISHI N M, JANKOVIC-CASTVAN I, JOKIC B, et al. Crystallization behavior and sintering of cordierite synthesized by an aqueous Sol-Gel route. Ceramics International, 2012, 38(3): 1835-1841. |
| [29] | OCHIAI S, UEDA T, SATO K, et al. Deformation and fracture behavior of an Al2O3/YAG composite from room temperature to 2023 K. Composites Science and Technology, 2001, 61(14): 2117-2128. |
| [30] | ARVIND A, KUMAR R, DEO M N, et al. Preparation, structural and thermo-mechanical properties of lithium aluminum silicate glass-ceramics. Ceramics International, 2009, 35(4): 1661-1666. |
| [31] | EICHLER K, SOLOW G, OTSCHIK P, et al. BAS (BaO·Al2O3·SiO2)- glasses for high temperature applications. Journal of the European Ceramic Society, 1999, 19(67): 1101-1104. |
| [32] | MA W M, WEN L, GUAN R G, et al. Sintering densification, microstructure and transformation behavior of Al2O3/ZrO2(Y2O3) composites. Materials Science and Engineering A, 2008, 477(12): 100-106. |
| [33] | JIMÉNEZ-MELENDO M, HANEDA H, NOZAWA H. Ytterbium cation diffusion in yttrium aluminum garnet (YAG)-implications for creep mechanisms. Journal of the American Ceramic Society, 2001, 84(10): 2356-2360. |
| [34] | MARTIN E, PETERS P W M, LEGUILLON D, et al. Conditions for matrix crack deflection at an interface in ceramic matrix composites. Materials Science and Engineering A, 1998, 250(2): 291-302. |
| [35] | NASLAIN R. The design of the fibre-matrix interfacial zone in ceramic matrix composites. Composites Part A, 1998, 29(9/10): 1145-1155. |
| [36] | ZOK F W. Developments in oxide fiber composites. Journal of the American Ceramic Society, 2006, 89(11): 3309-3324. |
| [37] | KUO D H, KRIVEN W M, MACKIN T J. Control of interfacial properties through fiber coatings: monazite coatings in oxide-oxide composites. Journal of the American Ceramic Society, 1997, 80(12): 2987-2996. |
| [38] | CINIBULK M K. Hexaluminates as a cleavable fiber-matrix interphase: synthesis, texture development, and phase compatibility. Journal of the European Ceramic Society, 2000, 20(5): 569-582. |
| [39] | CHAWLA K K. Interface engineering in mullite fiber/mullite matrix composites. Journal of the European Ceramic Society, 2008, 28(2): 447-453. |
| [40] | BAO Y H, NICHOLSON P S. AlPO4-coated mullite/alumina fiber reinforced reaction-bonded mullite composites. Journal of the European Ceramic Society, 2008, 28(16): 3041-3048. |
| [41] | DAVIS J B, MARSHALL D B, MORGAN P E D. Monazite- containing oxide/oxide composites. Journal of the European Ceramic Society, 2000, 20(5): 583-587. |
| [42] | CHAWLA K K, LIU H, JANCZAK-RUSCHC J, et al. Microstr-ucture and properties of monazite (LaPO4) coated saphikon fiber/alumina matrix composites. Journal of the European Ceramic Society, 2000, 20(5): 551-559. |
| [43] | REIG P, DEMAZEAU G, NASLAIN R. KMg2AlSi4O12 phyllosi-loxide as a potential interphase material for ceramic-matrix comp-osites. Journal of Materials Science, 1997, 32(16): 4195-4200. |
| [44] | CHEN Z C, TAMACHI T, KULKARNI R, et al. Interfacial reaction behavior and thermal stability of barium zirconate-coated alumina fiber/alumina matrix composites. Journal of the European Ceramic Society, 2008, 28(6): 1149-1160. |
| [45] | BERTRAND S, DROILLARD C, PAILLER R, et al. TEM structure of (PyC/SiC)n multilayered interphases in SiC/SiC composites. Journal of the European Ceramic Society, 2000, 20(1): 1-13. |
| [46] | YU H J, ZHOU X G, ZHANG W, et al. Mechanical properties of 3D KD-I SiCf/SiC composites with engineered fibre-matrix interfaces. Composites Science and Technology, 2011, 71(5): 699-704. |
| [47] | BHATT R T, CHEN Y L, MORSCHER G N. Microstructure and tensile properties of BN/SiC coated Hi-Nicalon, and Sylramic SiC fiber preforms. Journal of Materials Science, 2002, 37(18): 3991-3998. |
| [48] | SCHMÜCKER M, SCHNEIDER H, CHAWLA K K. Thermal degradation of fiber coatings in mullite-fiber-reinforced mullite composites. Journal of the American Ceramic Society, 1997, 80(8): 2136-2140. |
| [49] | CINIBULK M K, PARTHASARATHY T A, KELLER K A, et al. Porous yttrium aluminum garnet fiber coatings for oxide composites. Journal of the American Ceramic Society, 2002, 85(11): 2703-2710. |
| [50] | KERANS R J, HAY R S, PARTHASARATHY T A, et al. Interface design for oxidation-resistant ceramic composites. Journal of the American Ceramic Society, 2002, 85(11): 2599-2632. |
| [51] | CHAWLA K K, XU Z R, HA J S. Processing, structure, and properties of mullite fiber/mullite matrix composites. Journal of the European Ceramic Society, 1996, 16(2): 293-299. |
| [52] | KAYA C, KAYA F, BUTLER E G, et al. Development and characterisation of high-density oxide fibre-reinforced oxide ceramic matrix composites with improved mechanical properties. Journal of the European Ceramic Society, 2009, 29(9): 1631-1639. |
| [53] | KELLER K A, MAH T, PARTHASARATHY T A, et al. Fugitive interfacial carbon coatings for oxide/oxide composites. Journal of the American Ceramic Society, 2000, 83(2): 329-336. |
| [54] | BOCCACCINI A R, KAYA C, CHAWLA K K. Use of electrophoretic deposition in the processing of fibre reinforced ceramic and glass matrix composites: a review. Composites Part A, 2001, 32(8): 997-1006. |
| [55] | STOLL E, MAHR P, KRÜGER H G, et al. Progress in the characterisation of structural oxide/oxide ceramic matrix compo-sites fabricated by electrophoretic deposition (EPD). Advanced Engine-ering Materials, 2006, 8(4): 282-285. |
| [56] | GOUSHEGIR S M, GUGLIELMI P O, SILVA J G P D, et al. Fiber-matrix compatibility in an all-oxide ceramic composite with RBAO matrix. Journal of the American Ceramic Society, 2012, 95(1): 159-164. |
| [57] | SCHMÜCKER M, MECHNICH P. Improving the microstructural stability of NextelTM 610 alumina fibers embedded in a porous alumina matrix. Journal of the American Ceramic Society, 2010, 93(7): 1888-1890. |
| [58] | CARELLI E V A, FUJITA H, YANG J Y, et al. Effects of thermal aging on the mechanical properties of a porous-matrix ceramic composite. Journal of the American Ceramic Society, 2002, 85(3): 595-602. |
| [59] | ZOK F W, LEVI C G. Mechanical properties of porous-matrix ceramic composites. Advanced Engineering Materials, 2001, 3(1/2): 15-23. |
| [60] | SIMON R A. Progress in processing and performance of porous-matrix oxide/oxide composites. International Journal of Applied Ceramic Technology, 2005, 2(2): 141-149. |
| [61] | ANTTI M L, CURZIO E L, WARREN R. Thermal degradation of an oxide fibre (Nextel 720)/aluminosilicates composite. Journal of the European Ceramic Society, 2004, 24(3): 565-578. |
| [62] | KRAMB V A, JOHN R, ZAWADA L P. Notched fracture behavior of an oxide/oxide ceramic-matrix composite. Journal of the American Ceramic Society, 1999, 82(11): 3087-3096. |
| [63] | RUGGLES-WRENN M B, MALL S, EBER C A, et al. Effects of steam environment on high-temperature mechanical behavior of NextelTM 720/alumina (N720/A) continuous fiber ceramic composite. Composites Part A, 2006, 37(11): 2029-2040. |
| [64] | RUGGLES-WRENN M B, BRAUN J C. Effects of steam environment on creep behavior of NextelTM 720/alumina ceramic composite at elevated temperature. Materials Science and Engineering A, 2008, 497(12): 101-110. |
| [65] | RUGGLES-WRENN M B, LAFFEY P D. Creep behavior in interlaminar shear of NextelTM 720/alumina ceramic composite at elevated temperature in air and in steam. Composites Science and Technology, 2008, 68(1011): 2260-2266. |
| [66] | RUGGLES-WRENN M B, KOUTSOUKOS P, BAEK S S. Effects of environment on creep behavior of two oxide/oxide ceramic- matrix composites at 1200℃. Journal of Materials Science, 2008, 43(20): 6734-6746. |
| [67] | RUGGLES-WRENN M B, GENELIN C L. Creep of NextelTM 720/alum-ina-mullite ceramic composite at 1200℃ in air, argon, and steam. Composites Science and Technology, 2009, 69(5): 663-669. |
| [68] | MATTONI M A, YANG J Y, LEVI C G, et al. Effects of combustor rig exposure on a porous-matrix oxide composite. International Journal of Applied Ceramic Technology, 2005, 2(2): 133-140. |
| [69] | OPILA E J, MYERS D L. Alumina volatility in water vapor at elevated temperatures. Journal of the American Ceramic Society, 2004, 87(9): 1701-1705. |
| [70] | CAO X Q, VASSEN R, STOEVER D. Ceramic materials for thermal barrier coatings. Journal of the European Ceramic Society, 2004, 24(1): 1-10. |
| [71] | HUA JIA-JIE, ZHANG LI-PENG, LIU ZI-WEI. Progress of research on the failure mechanism of thermal barrier coatings. Journal of Inorganic Materials, 2012, 27(7): 680-686. |
| [72] | MECHNICH P, BRAUE W. Air plasma-sprayed Y2O3 coatings for Al2O3/Al2O3 ceramic matrix composites. Journal of the European Ceramic Society, 2013, 33(13/14): 2645-2653. |
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