A preparation of hexacelsian powder by solution-polymerization route and its phase transformation behavior

Solution- polymerization 방법에 의한 hexacelsian 분말의 합성 및 상전이 공정에 의한 celsian 소결체의 제조

  • Sang-Jin Lee (Department of Materials Science and Engineering, University of Illinois at Urbana-Champaign) ;
  • Young-Soo Yoon (Ceramics Dvision, Korea Institute of Science and Technology)
  • Published : 1997.08.01

Abstract

Hexacelsian ($BaO{\cdot}Al_2O_3{\cdot}2SiO_2$) powder was prepared by a solution-polymerization route employing PVA solution as a polymeric carrier. A fine amorphous-type hexacelsian powder with an average particle size of 0.8 $\mu \textrm{m}$ and a BET specific surface area of $63 \textrm{m}^2$/g was made by a ball-milling the powder precursor for 12 h after calcination at $800^{\circ}C$ for :1 h. A densified hexacelsian was obtained through sintering at $1550^{\circ}C$ for 2 h under an air atmosphere. The $\alpha\longleftrightarrow\beta$ and $\beta\longleftrightarrow\gamma$ displacive phase transformation in polycrystalline hexacelsia,n was examined by using dilatometry and differential scanning calorimtry. The reconstructive transformation between hexacelsian and celsian was obtained by annealing at $1600^{\circ}C$ for 72h. Volume contraction of 5.6% was accompanied by the reconstructive transformation.

0.8$\mu$의 평균입자크기와 63$m^2/g$의 비표면적을 갖는 소질성이 뛰어난 hexacelsian분말이 so;ution-polymerization 방법에 의해 제조되어졌다. polymerization 경정을 통한 분말합성을 위하여 PVA 용액이 사용되었다. 소결후 치밀화된 hexacelsian은 $\alpha$,$\beta$,$\gamma$ 간의 상전이 거동을 보였고, 상대밀도 98.5% 의 치밀화ㄱ된 celsian 소결체가 $1600^{\circ}C$에서 72시간의 서냉공정을 거쳐hexacelsian의 상전이에 의하여 얻어졌다.

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