The Study on Fabrication of LAS System Ceramics for Thermal Shock Resistance from Silicate Minerals: (II) Preparation of Spodumene Powders with Sillimanite, Kaolin and Pyrophyllite Group Minerals

실리케이트 광물을 이용한 내열충격성 LAS계 세라믹스의 제조에 관한 연구: (II) Sillimanite, Kaolin 및 Pyrophyllite족 광물을 이용한 Spodumene 분말합성

  • 박한수 (경남대학교 무기재료공학과) ;
  • 조경식 (연세대학교 세라믹공학과) ;
  • 문종수 (경남대학교 무기재료공학과)
  • Published : 1994.07.01

Abstract

Though spodumene have a law theraml expension and good thermal shock resistance, its sintering temperature is too close to its melting point in the application for industral purpose. Solving the problems, impurities within the silicate minerals act as a frit during firing, so its densification is expected through enlargement of sintering temperature range. By the heat treatment of starting materials, mixtures of silicate mineral, lithium carbonate, if necessary SiO2 or Al2O3 were added for stoichiometric correction, in the range of 1000~125$0^{\circ}C$ for 10 hrs, $\beta$-spodumene single phase was synthesized. Mixtures with sillimanite group minerals, $\beta$-spodumene was formed at 120$0^{\circ}C$ or 125$0^{\circ}C$ via intermediate phases of petalite, Li2SiO3 and LiAlO2. For the case of kaolin group minerals, synthesis were completed at 110$0^{\circ}C$ for Hadon pink kaolin, 120$0^{\circ}C$ for New Zealand white kaolin, When pyrophyllite group minerals were used, those were at the range of 1000~125$0^{\circ}C$. Spodumene was completed at lowest temperature, 100$0^{\circ}C$ from the mixture of Wando pyrophyllite among them. Microstructure of synthesized powders showed the inrregular lump shape such as densed crystallines.

Keywords

References

  1. J. Am Ceram. Soc. v.33 no.5 Compositional and Stability Relationship Among the Lithium Aluminosilicates: Eucryptile, Spodumence and Petalite R. Roy;D.M. Roy;E.F. Osborn
  2. ファトンセラミソクス事典 ファトンセラミシクス 編集委 技報堂
  3. セラミンクス v.14 no.11 低膨脹 セラミツクス 熱膨脹と 結晶構造 宇田川重和;井川博行
  4. Am. Mineral. v.28 Phase Equilibrium in the System Li₂O·Al₂O₃·SiO₂ R.A. Hatch
  5. J. Am. Ceram. Soc. v.51 no.11 Thermal Expansion of Synthetic β-Spodumene and β-Spodumene-Silica Solid Solutions W. Ostrtag;G.R. Fisher;J.P. Williams
  6. J. Am. Ceram. Soc. v.72 no.10 Sinterable β-Spodumene Glasses-Ceramics S. Knickerboker;M.R. Tuzzolo;S. Lawhorn
  7. J. Am. Ceram. Soc. v.59 no.9-10 Strengh and Microstructure in Lithium Disilicate Glass-Ceramics M.P. Borom;A.M. Turkalo;R.H. Doremus
  8. Am. Ceram. Soc. Bull. v.68 no.11 Li₂O₃-Al₂O₃-SiO₂ Glass-Ceramics H. Scheidler;E. Rodek
  9. Ceram. Eng. Sci. Proc. v.10 no.7;8 Processing and Sintering of Sol-Gel Derived Lithium Aluminosilicate Powders R.R. Haghighat;D. Treacy;C.G. Pantano;L.C. Klein
  10. J. Master. Sci. v.25 Preparetion of Lithium Aluminosilicate Glass-Ceramic Monolith from Metal-Alkoxide Solution J.S. Yang;S. Sakka;T. Yoko;H. Kozuka
  11. J. Chem. Soc. Jpn. v.10 Preparation and Crystallization of Precursor Powders in Li₂O-Al₂O₃-SiO₂ System H. Suzuki;J. Takahashi;H. Saito
  12. J. Kor. Ceram. Soc. v.28 no.5 A Study on the Microstructural Control of LAS Ceramics (Ⅰ): Influence of Li₂O·4B₂O₃ Frit Addition on the Microstructure and Thermal Expansion of β-Eucryptite Ceramics J.H. Park;H.M. Kim;H.S. Lee
  13. J. Kor. Ceram. Soc. v.29 no.7 A Study on the Microstructural Control of LAS Ceramics (Ⅱ): Influence of Li₂O·4B₂O₃ Frit Addition on the Microstructure and Thermal Expansion of β-Spodumene J.H. Park;H.M. Kim;H.S. Lee
  14. J. Kor Ceram. Soc. v.29 no.8 A Study on the Microstructural Control of LAS Ceramics (Ⅲ): Influence of Li₂O·4B₂O₃ Frit Addition on the Microstructure and Thermal Expansion of β-Spodumene made from Kaolinite J.H. Park;H.M. Kim;H.S. Lee
  15. J. Kor. Ceram. Soc. The Study on Fabrication of LAS System Ceramics for Thermal Shock Resistance from Silicate Minerals: (Ⅰ) Preparation of Eucryptite Powders with Silmanite Group, Kaolin Group Minerals H.S. Park;K.S. Cho;C.S. Mun
  16. J. Am Ceram. Soc. v.72 no.1 Formation of Mullite from Pyrophyllite by Mechanical and Thermal Treatments P.J. Sanchez-Soto;J.L. Perez-Rodriguez
  17. 한국의 요업원료 현달원;김준학;박종훈;안남순
  18. J. Am. Ceram. Soc. v.68 no.5 Thermal Reactions to Pyrophylite Studies by High-Resolution Solid-State $^27Al$ and $^29Si$ Nuclear Magnetic Resonance Spectroscopy K.J.D. Mackenzie;I.W.M. Brown;R.H. Meinhold;M.E. Brown
  19. The Crystalline State Ⅳ. Crystal Structures of Minerals L. Bragg
  20. J. Am. Ceram. Soc. v.8 no.8 Formation of Mulite from Kyanite, Andalusite and Sillimanite J.W. Greig