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TRANSLUCENT CELADON COMPOSITION AND MANUFACTURING METHOD OF THE SAME
The present invention is formed by mixing ceramics in which a tricalcium phosphate (TCP) crystal phase is a main crystal phase and an anorthite crystal phase is a sub-crystal phase. A crystal structure of conventional porcelain is mostly composed of mullite and quartz, and thus does not have translucent properties. Crystallization of the mullite and quartz is suppressed, TCP (Ca_3(PO_4)_2) main crystal is generated, and anorthite sub-crystal is generated, thereby manufacturing ceramics having excellent translucent properties, moldability, and whiteness and deducing an optimal component content ratio.
본 발명은 TCP(Tricalcium Phosphate) 결정상이 주 결정상이고, Anorthite 결정상이 부 결정상인 소지를 배합하여 형성하였다. 즉, 일반 도자기의 결정구조는 대부분이 Mullite와 Quartz로 이루어져 투광성을 갖지못하나, Mullite 와 Quartz의 결정생성을 억제하고 TCP(Tricalcium phosphate, Ca3(PO4)2) 주결정 생성 및 Anorthite 부결정을 생성시켜 투광성, 성형성, 및 백색도가 우수한 소지를 제조하였고, 최적의 성분 함량비를 도출하였다.
TRANSLUCENT CELADON COMPOSITION AND MANUFACTURING METHOD OF THE SAME
The present invention is formed by mixing ceramics in which a tricalcium phosphate (TCP) crystal phase is a main crystal phase and an anorthite crystal phase is a sub-crystal phase. A crystal structure of conventional porcelain is mostly composed of mullite and quartz, and thus does not have translucent properties. Crystallization of the mullite and quartz is suppressed, TCP (Ca_3(PO_4)_2) main crystal is generated, and anorthite sub-crystal is generated, thereby manufacturing ceramics having excellent translucent properties, moldability, and whiteness and deducing an optimal component content ratio.
본 발명은 TCP(Tricalcium Phosphate) 결정상이 주 결정상이고, Anorthite 결정상이 부 결정상인 소지를 배합하여 형성하였다. 즉, 일반 도자기의 결정구조는 대부분이 Mullite와 Quartz로 이루어져 투광성을 갖지못하나, Mullite 와 Quartz의 결정생성을 억제하고 TCP(Tricalcium phosphate, Ca3(PO4)2) 주결정 생성 및 Anorthite 부결정을 생성시켜 투광성, 성형성, 및 백색도가 우수한 소지를 제조하였고, 최적의 성분 함량비를 도출하였다.
TRANSLUCENT CELADON COMPOSITION AND MANUFACTURING METHOD OF THE SAME
투광성 도자기 조성물 및 이의 제조방법
KIM GYOU SEOL (author) / SHIN KEE SIK (author)
2020-05-19
Patent
Electronic Resource
Korean
IPC:
C04B
Kalk
,
LIME
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