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Chin J Mater Res  2008, Vol. 22 Issue (4): 394-398    DOI:
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High-pressure Sintering and Microstructure Development of Aluminum Nitride Ceramics with Y2O3 as a Aintering Aid
LI Xiao-Lei;;;;;;
吉林大学超硬材料国家重点实验室
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LI Xiao-Lei. High-pressure Sintering and Microstructure Development of Aluminum Nitride Ceramics with Y2O3 as a Aintering Aid. Chin J Mater Res, 2008, 22(4): 394-398.

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Abstract  High-density AlN ceramics were prepared without sintering additives by high-pressure sintering at 5.0 GPa and differente temperatures. The characterization of the sintered bodies was determined by XRD, SEM and micro-Raman spectroscopy (MRS). Compared conventional liquid-phase sintering, the sintering temperature was effectively lowered and the sitering time was shortened under high pressure. Controlling fracture mode was intraguanular when the sintering temperature was as low as 1400 °C under 5.0 GPa. The microstructure of single-phase equiaxed polycrystal in AlN body materials formed at 1800°C and 5.0 GPa for 50 min. There are Residual compression stress in AlN bodies prepared by high-pressure and residual compression stress of the AlN ceramics sintered at 5.0 GPa and 1700 °C for 125 min is -2.0 GPa.
Key words:  Aluminium nitride      High pressure sintering      microstructure      residual stress      
Received:  14 September 2007     
ZTFLH:  TB321  
  TQ174  

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https://www.cjmr.org/EN/     OR     https://www.cjmr.org/EN/Y2008/V22/I4/394

1 G.A.Slack,R.A.Tanzilli,R.O.Pohl,J.W.VanderSande, The intrinsic thermal conductivity of AlN,J.Phys.Chem. Solids,48,641(1987)
2 L.M.Sheppard,Aluminum nitride:a versatile but chal- lenging material,Am.Ceram.Soc.Bull.,69(11), 1801(1990)
3 A.V.Virkar,T.B.Jackson,R.A.Cutler,Thermodynamic and kinetic effects of oxygen removal on the thermal con- ductivity of aluminum nitride,J.Am.Ceram.Soc., 72(11),2031(1989)
4 T.B.Jackson,A.V.Virkar,K.L.More,R.B.Dinwiddie, R.A.Cutler,High-thermal-conductivity aluminum nitride ceramics:the effect of thermodynamic,kinetic,and mi- crostructural factors,J.Am.Ceram.Soc.,80(6), 1421(1997)
5 K.Watari,M.C.Valecillos,M.E.Brito,M.Toriyama, S.Kanzaki,Densification and thermal conductivity of AlN doped with Y_2O_3,CaO and Li_2O,J.Am.Ceram.Soc., 79(12),3103(1996)
6 Shoichi Kume,Masaki Yasuoka,Naoki Omura,Koji Watari,Effect of zirconia addition on dielectric loss and microstructure of aluminum nitride ceramics,Ceram.Int., 33(2),269(2007)
7 XIONG Yah,FU Zhengyi,WANG Yucheng,Fabrication of transparent A1N ceramics by spark plasma sintering, Chin.J.Mater.Res.,19(5),555(2005) (熊焰,傅正义,王玉成,放电等离子烧结制备透明AlN陶瓷,材料研究学报,19(5),555(2005))
8 A.Witek,M.Bockowski,A.Presz,M.Wroblewski, S.Krukowski,W.Wlosinski,K.Jablonski,Synthesis of oxygen-free aluminium nitride ceramics,J.Mater.Sci., 33(13),3321(1998)
9 Z.Y.Lu,Y.C.Teng,Q.L.Liao,D.Li,The study of AIN ceramics sintered at superhigh pressure with belt-type press technology,J.Mater.Sci.:Mater.Elect.,16(8), 483(2005)
10 Hiroyuki Ichimaru,Giuseppe Pezzotti,Raman microprobe mapping of residual and bridging stress fields in AlN ce- ramics,Mater.Sci.Eng.A,326(2),261(2002)
11 H.A.Ma,X.P.Jia,L.X.Chen,P.W.Zhu,G.Z.Ren, W.L.Guo,X.Q.Fu,G.T.Zou,Z.A.Ren,G.C.Che, Z.X.Zhao,Superhard MgB_2 bulk material prepared by high-pressure sintering,J.Phys.:Condens.Matter, 14(44),11181(2002)
12 LEI Zhen Kun,KANG Yi Lan,HU Ming,QIU Yu,XU Han,NIU Hong-Pan,An experimental analysis of residual stress measurements in porous silicon using micro-raman spectroscopy,Chin.Phys.Lett.,21(2),403(2004)
13 M.Hirano,K.Kato,T.Isobe,T.Hirano,Sintering and char- acterization of fully dense aluminium nitride ceramics,J. Mater.Sci.,28(17),4725(1993)
14 Y.W.Kim,H.C.Park,Y.B.Lee,K.D.Oh,R.Stevens,Reac- tion sintering and microstructural development in the sys- tem Al_2O_3-AlN,J.Eur.Ceram.Soc.,21(13),2383(2001)
15 T.Prokofyeva,M.Seon,J.Vanbuskirk,M.Holtz, S.A.Nikishin,N.N.Faleev,H.Temkin,S.Zollner,Vi- brational properties of A1N grown on(111)-oriented silicon,Phys.Rev.B.,63(12),125313(2001)
16 L.Grabner,Spectroscopic technique for the measurement of residual stress in sintered A1203,J.Appl.Phys.,49(2), 580(1978)
17 I.Gorczyca,N.E.Christensen,P.Perlin,I.Grzegory,J.Jun, M.Bockowski,High pressure phase transition in alu- minium nitride,Solid State Comun.,79(12),1033(1991)
18 M.Ueno,A.Onodera,O.Shimomura,K.Takemura,X-ray observation of the structural phase transition of aluminum nitride under high pressure,Phys.Rev.B.,45(17), 10123(1992)
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