화학공학소재연구정보센터
Korean Journal of Materials Research, Vol.24, No.7, 363-369, July, 2014
도자기 소지구성 산화철, 산화마그네슘이 유약과의 반응
Reaction Iron Oxide and Magnesium Oxide in Ceramics Body with Glaze
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This is the study on diffusion of ceramic body oxide compounds to glaze. For ceramic bodies, no ferrous oxides contain white ware, celadon, and 3 wt% iron oxides contained white ware was used in this experiment. These ceramic bodies were glazed by transparency glaze, iron oxides contained glaze, and glaze made by pine tree ash that treated in 1240 degree, under reduction condition for an hour. An electron probe microanalyzer(EPMA) was used to study diffusion of oxides and to calculate distance of ceramics bodies. As a result, only iron oxide and magnesium oxide from the body diffused to glaze, and also made a band which shown very thin layer of iron oxide and magnesium oxide between the body and glaze. The densest band of iron oxide formed 100 to 150 μm in the glaze, and the densest band of magnesium oxide was found 50 to 100 μm in the glaze. Therefore, it could be concluded that iron oxide in the body is diffused to the glaze and it affects the color of glaze, even though iron oxide exists in the glaze. Furthermore, the thickness of the glaze has an effect on the color of celadon.
  1. Y. M. Jung, Pottery of Korea (in Korean), Moonye Pulishing Co., Seoul, Korea (1991).
  2. Y. I. Yoon, History of Korea Pottery (in Korean), Moonye Pulishing Co., Seoul, Korea (1993).
  3. J. Y. Do, M.S. Thesis (in Korean), Microstructural study of Koryo Celadon, Chung-Ang University, Seoul, (1993).
  4. J. S. Kim, M. S. Thesis (in Korean), The compositional analysis and microstructural study of Choson white ware, Chung-Ang University, Seoul, (1994).
  5. Kohchoo CK, Archaeometry, 37(1), 53 (1995)
  6. Kohchoo CK, Kim S, Kang HT, Do JY, Lee YE, Kim GH, Archaeometry, 41(1), 51 (1999)
  7. C. K. Koh, Physics & High Technology, No. 5, p.10-15, The Korean Physical Society, Korea, (1999).
  8. Kim JY, No H, Jeon AY, Kim U, Cho WS, Kim KJ, Kim CM, Kim CS, J. Kor. Ceram. Soc., 48(1), 34 (2011)