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Characteristic of Sintering of Mullite-Cordierite Composite by a Solution-Polymerization Route Employing PVA

PVA를 이용한 Solution-Polymerization 합성법에 의하여 제조된 Mullite-Cordierite 복합체의 소결특성

  • Lee, Yong-Seok (Department of Ceramic Engineering, Myoungji University) ;
  • Lee, Byung-Ha (Department of Ceramic Engineering, Myoungji University)
  • 이용석 (명지대학교 세라믹공학과) ;
  • 이병하 (명지대학교 세라믹공학과)
  • Published : 2005.03.01

Abstract

The characteristics of sintering for Mullite-Cordierite (MC) composites and the effect of $TiO_2$ addition were studied. The MC composites were manufactured by a solution-polymerization method using PVA as a polymer carrier, and $TiO_2$ was used as a sintering agent. They were calcined at $1300^{\circ}C$, planetary milled for 4 h and sintered at $1450^{\circ}C$. As cordierite content increased, relative density of materials was increased up to $98\%$ and sinterability was improved. In case of $50\;wt\%$ mullite/$5\;wt\%$ cordierite composition sintered for 16 h, the flexural strength and thermal expansion coefficient were 190 MPa and $3.07{\times}0^{-6}/^{\circ}C$, respectively. However, mechanical properties were decreased with the cordierite contents higher than $50\;wt\%$ because of the excess liquid-phase amount. As the addition of $TiO_2$ is increased, columnar crystal of mullite and liquid-phase contents were increased. In particular, the flexural strength and thermal expansion coefficient decreased in case of $5\;wt\%\;TiO_2$ addition.

PVA론 이용한 solution-polymerization법에 의해 mullite싸 cordierite 및 mullite-cordierite 복합분말을 합성한 실험 결과를 바탕으펀, 소결조제로서 $TiO_2$를 액상 첨가한 후 mullite-cordierite 합성분말을 제조하고 그때의 소결특성을 조사하였다. 각 조성에 대해 $1300^{\circ}C$에서 하소한 후 planetary mill로 4시간 분쇄를 행하여 합성분말을 준비하였다. 이 합성분말을 사용하여 cordierite의 분해가 일어나지 않는 $1450^{\circ}C$로 소결을 행하였다. 그 결과, mullite $100\%$인 조성에서는 소결시간에 관계없이 원활한 소결이 이루어지지 않았으나, cordierite의 양이 증가함에 따라 상대밀도가 $98\%$ 이상으로 증가하며 소결성이 향상되어졌다 또한 소결시간이 증가함에 따라 mullite와 cordierite의 비율이 50 : 50인 조성의 경우, 16시간 소결하였을 때 복합체치 치밀화로 인해 190MPa의 강도값과 $3.07{\times}10^{-6}/^{\circ}C$의 열팽창계수값을 나타내었다. 하지만 그 이상의 조성에In-1는 cordierite로 인한 액상의 과다생성으로 인해 소결특성은 좋지 않았다. 소결조제로서의 $TiO_2$ 첨가 영향에 대한 조사에서도 $TiO_2$의 함량이 증가함에 따라 mullite의 주상으로의 성장자 cordierite의 액상 증가가 더 빠르게 일어남이 확인되었지만, 이 때문에 $5wt\%$에서는 오히려 특성값이 저하됨이 확인되었다.

Keywords

References

  1. S. J. Lee, E. A. Benson, and W. M. Kriven, 'Preparation of Potrant Cement Components by Poly(vinyl alcohol) Solution Polymerization,' J. Am. Ceram, Soc., 82 [8] 249-55 (1999) https://doi.org/10.1111/j.1151-2916.1999.tb01755.x
  2. S. Kansaki, 'High-Purity Mullite Ceramics,' Bull. Ceram. Soc. Jpn., 23 [11] 1060-63 (1988)
  3. D. W. Hoffman, R. Roy, and S. Komarneni, 'Diphasic Xerogels, a New Class of Materials : Phases in the System $Al_2O_3-SiO_2$,' J. Am. Ceram. Soc., 67 [7] 468-71 (1984) https://doi.org/10.1111/j.1151-2916.1984.tb19636.x
  4. Y. Hirata, H. Minamizono, and K. Shimada, 'Property of $SiO_2-Al_2O_3$ Powders Prepared from Metal Oxide,' Yogyo-Kyokai-Shi, 93 [1] 36-44 (1985)
  5. H. Saito and H. Suzuki, 'Processing of the Fine Mullite Powder form Metal-Alkoxides and Its Sintering,' Yogyo-Kyokai-Shi, 95 [7] 697-702 (1987) https://doi.org/10.2109/jcersj1950.95.1103_697
  6. K. H. Lee, B. H. Lee, Y. H. Kim, K. O. Oh, and Y. H. Baik, 'Synthesis of Pure Fine Mullite Powders by Sol-Gel Process,' J. Kor. Ceram. Soc., 28 [7] 503-08 (1991)
  7. H. Suzuki, K. Ota, and H. Saito, 'Preparation of Cordierite Ceramics from Metal Alkoxides (Part 1),' J. Ceram. Soc. Jpn., 95 [2] 163-69 (1987)
  8. H. Suzuki, K. Ota, and H. Saito, 'Preparation of Cordierite Ceramics from Metal Alkoxides (Part 2),' J, Ceram. Soc. Jpn., 95 [2] 170-75 (1987)
  9. F. Singer and W. M. Chon, 'New Ceramic Bodies Composition and Expansion on Behavior I, II,' Ber. Deut. Keram. Ges., 10 [6] 269-84 (1929)
  10. R. F. Geller and H. Insley, 'Thermal Expansion of Some Silicate of Elements in Group II and Periodic System,' Bur. Standards. J. Res., 9 [1] 35-46 (1932) https://doi.org/10.6028/jres.009.006
  11. R. J. Beal and R. L. Cooke, 'Low Expansion Cordierite Porcelian,' J. Am. Ceram. Soc., 35 [2] 53-7 (1952) https://doi.org/10.1111/j.1151-2916.1952.tb13066.x
  12. M. H. Han and K. C. Park, 'Synthesis and Sintering of Cordierite from Metal Alkoxides (I),' J. Kor. Ceram. Soc., 27 [5] 625-30 (1990)
  13. M. H. Han and K. C. Park, 'Synthesis and Sintering of Cordierite from Metal Alkoxides (II),' J. Kor. Ceram. Soc., 27 [6) 777-82 (1990)
  14. M. F. Hocella, G. E. Brown, F. K. Ross, and G. V. Gibbs, 'High Temperature Chemistry of Hydrous Mg- and Fe-Cordierite,' Am Mineral., 64 377-81 (1979)
  15. C. E. Kim, H. L. Lee, Y. J. Ahn, and B. Y. Kim, 'Fabrication and Sintering Characteristic of MgO-$Al_2O_3-SiO_2$ System Ceramic Raw Materials (Mullite, Spinel and Cordierite),' J. Kor. Ceram. Soc., 26 [5] 593-600 (1989)
  16. Y. S. Lee and B. H. Lee, 'A Synthesis of Mullite and Cordierite Ceramics by Solution-Polymerization Route Based on PVA,' J. Kor. Ceram. Soc., 41 [2] 151-57 (2004) https://doi.org/10.4191/KCERS.2004.41.2.151
  17. J. Takahashi, M. Natsuisaka, and S. Shimada, 'Fabrication of Cordierite-Mullite Ceramic Composites with Differently Shaped Mullite Grains,' J. Euro. Ceram. Soc., 22 479-85 (2002) https://doi.org/10.1016/S0955-2219(01)00312-0
  18. B. H. Musseler and M. W. Shafer, 'Preparation and Properties of Mullite Cordierite Composites,' Presented at the 85th Annual Meeting of the Am. Ceram. Soc., Chicago (1983)
  19. H. K. Kim, R. H. Kim, H. J. Jeong, S. S. Kim, and B. H. Kim, 'Studies of the Mullite-Cordierite Composites as a Substrate Material,' J. Kor. Ceram. Soc., 27 [3] 394-400 (1990)
  20. Y. S. Lee and B. H. Lee, 'A Synthesis of MuIIite-Cordierite Composite Powders by Solution-Polymerization Route Based on Polyvinyl Alcohol,' J. Kor. Ceram. Soc., 41 [9] 663-69 (2004) https://doi.org/10.4191/KCERS.2004.41.9.663
  21. J. D. Hodge, 'Microstructure Development in Mullite Cordierite Ceramics,' U.S. Patent 45282275 (1985)
  22. H. H. Shin and C.-S. Kim, C. W. Kim, S.-N. Chang, W. Sung, D.-H. Chang, S.-W. Kang, and S.-H. Choi, 'Quantitative Analysis of High-Temperature Mullitization from a Multicomponent Oxide System,' J. Kor. Ceram. Soc., 35 [1] 5-10 (1998)