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Preparation of sol-gel derived microcrystalline corundum abrasives with hexagonal platelets 被引量:2

Preparation of sol-gel derived microcrystalline corundum abrasives with hexagonal platelets
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摘要 The effects of different additives on the mechanical properties, microstructures, and wear behavior of corundum abra- sives were investigated. When the number of additive phases increases, the sintering temperature and wear rate decrease, while the densification and mechanical properties increase. The additive SiO2 is responsible for the development of equiaxed grains, whereas both CaO and MgO promote the development of platelike grains. By controlling the molar ratio of additives, it is pos- sible to obtain different microstructures. With SiO2-MgO-CaO (molar ratio, 2:1:1) as the additives and nano a-Al203 powders as the seed, microcrystalline corundum abrasives with hexagonal platelets were obtained using sol-gel process by sintering at 1300℃ for 0.5 h. The average diameter and thickness of hexagonal platelets are 1.38 μm and 360 nm respectively, the sin- gle-particle compressive strength is 26.44 N, and the wear rate is (3.06±=0.21)× 10^-7 mm^3/(N.m). The effects of different additives on the mechanical properties, microstructures, and wear behavior of corundum abra- sives were investigated. When the number of additive phases increases, the sintering temperature and wear rate decrease, while the densification and mechanical properties increase. The additive SiO2 is responsible for the development of equiaxed grains, whereas both CaO and MgO promote the development of platelike grains. By controlling the molar ratio of additives, it is pos- sible to obtain different microstructures. With SiO2-MgO-CaO (molar ratio, 2:1:1) as the additives and nano a-Al203 powders as the seed, microcrystalline corundum abrasives with hexagonal platelets were obtained using sol-gel process by sintering at 1300℃ for 0.5 h. The average diameter and thickness of hexagonal platelets are 1.38 μm and 360 nm respectively, the sin- gle-particle compressive strength is 26.44 N, and the wear rate is (3.06±=0.21)× 10^-7 mm^3/(N.m).
出处 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2013年第1期71-75,共5页 矿物冶金与材料学报(英文版)
关键词 additives CORUNDUM MICROCRYSTALS sol-gel process PLATELETS compressive strength wear additives corundum microcrystals sol-gel process platelets compressive strength wear
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  • 1A. Muchtax and L.C. Lim, Indentation fracture tough-ness of high purity submicron alumina, Acta Mater.,46(1998), No. 5, p. 1683.
  • 2Z.C. Li, Z.H. Li, A.J. Zhang, and Y.M. Zhu, Synthesisand two-step sintering behavior of sol-gel derivednanocrystalline corundum abrasives, J. Eur. Ceram.Soc” 29(2009), No. 8,p. 1337.
  • 3R.S. Roy, H. Guchhait, A. Chanda, D. Basu, and M.K.Mitra, Improved sliding weax-resistance of alumina withsub-micron grain size: a comparison with coarsergrained material, J. Eur. Ceram. Soc., 27(2007), No. 16,p. 4737.
  • 4A. Krell and P. Blank, The influence of shaping methodon the grain size: dependence of strength in dense sub-micrometre alumina, J. Eur. Ceram. Soc” 16(1996), No.11, p. 1189.
  • 5T. Ohji, Y.K. Jeong,Y.H. Choa, and K. Niihara,Strengthening and toughening mechanisms of ceramicnanocomposites, J. Am. Ceram. Soc., 81(1998), No. 6,p. 1453.
  • 6Y.Q. Wu, Y.F. Zhang, X.X. Huang, and J.K. Guo,Preparation of platelike nano alpha alumina particles,Ceram. Int.,27(2001), No. 3, p. 265.
  • 7H.X. Lu, H.W. Sun, G.X. Li, C.P. Chen, D.L. Yang,and X. Hu, Microstructure and mechanical properties ofAl203-MgB2 composites, Ceram. Int., 31(2005), No. 1,p.105.
  • 8C.A. Handwerker, P.A. Morris, and R.L. Coble, Effectsof chemical inhomogeneities on grain growth and mi-crostructure in A1203, J. Am. Ceram. Soc., 72(1989),No. 1, p. 130.
  • 9C.W. Park and D.Y. Yoon, Effects of Si02, CaO, andMgO additions on the grain growth of alumina, J. Am.Ceram. Soc., 83(2000), No. 10, p. 2605.
  • 10D.H. Riu, Y.M. Kong, and H.E. Kim, Effect of Cr203addition on microstructural evolution and mechanicalproperties of A1203, J. Eur. Ceram. Soc., 20(2000), No.10,p. 1475.

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