Browse > Article
http://dx.doi.org/10.6111/JKCGCT.2020.30.4.136

The study of recrystallization of willemite crystal in ceramic glaze  

Lee, Hyun-Soo (Depart. of Ceramic Art, Hanyang Women's University)
Abstract
Crystallization of zinc crystalline glaze requires demanding conditions such as the formation of a nucleating agent and the amount of nucleating agent, and growth of crystalline. Zinc crystalline glaze is hard to utilize in the industry because of its narrow range of the firing temperature, and the crystallization's dependency on the quality of zinc. Stimulation of zinc crystallization and formation of frit enable zinc crystalline glaze to be reconstituted in a various range of firing schedules, leading to the development of a competitive industrial glaze.
Keywords
Zinc crystal glaze; Zinc crystal nuclei formation; Willemite recrystallization; $Zn_2TiO_4$; $Zn_2SiO_4$; Willemite;
Citations & Related Records
연도 인용수 순위
  • Reference
1 D. Creber, "Crystalline glazes", Craftsman House, Australia (1997).
2 R.A. Eppler and D.R. Eppler, "Glazes and glass coatings", J. Am. Ceram. Soc., Westerville, OH, USA (1998).
3 F.H. Norton, "The control of crystalline glazes", J. Ceram. Soc. Jpn. 20 (1937) 217.   DOI
4 C.W. Parmelee, "Ceramic glaze", 3rd Ed., Cahners Publishing Co. Inc., York, PA, USA (1973).
5 E. Kato and H. Takashima, "Study on the structure of zinc opaque glazes", J. Ceram. Soc. Jpn. 15 (1965) 69.
6 C.Y. Lee, H.S. Lee and K. H. Shin, "The effect of $Zn_{2-}TiO_4$ on willemite crystalline glaze", J. Kor. Crystal Growth and Crystal Technology 24 (2014) 70.   DOI
7 C.Y. Lee, H.S. Lee and K.H. Shin, "Effects of $ZrO_2$ on zinc crystalline glaze", Advanced Materials Research 716 (2013) 228.   DOI
8 C.Y. Lee and B.H. Lee, "A study of nucleation and growth in zinc crystal glaze by firing conditions (in Korean)", J. Kor. Ceram. Soc. 46 (2009) 253.   DOI
9 A.W.A. El-Shennawi and A.A. Omar, "The roll of titania and titania mixtures in the nucleation and crystallization of spodumene-willemite-diopside glass," Thermochim. Acta 58 (1982) 125.   DOI
10 T. Santhaveesuk, D. Wongratanaphisan, N. Mangkorntong and S. Choopun, "$Zn_2TiO_4$ nanostructures prepared by thermal oxidation method", Adv. Mater. Res. 55-57 (2008) 641.   DOI
11 L. Hou, Y.-D. Hou, M.-K. Zhu, J. Tang, J.-B. Liu, H. Wang and H. Yan, "Formation and transformation of $ZnTiO_3$ prepared by sol-gel process", Mater. Lett., 59 (2005) 139.   DOI
12 B.C. Babu, B.V. Rao, M. Ravi and S. Babu, "Structural, microstructural, optical, and dielectric properties of $Mn^{2+}$: Willemite $Zn_2SiO_4$ nanocomposites obtained by a sol-gel method", J. Molecular Structure 1127 (2017) 6.   DOI
13 J. Wu, Y. Zhao, C.Z. Zhao, L. Yang, Q. Lu, Q. Zhang, J. Smith and Y. Zhao, "Effects of rapid thermal annealing on the structural, electrical, and optical properties of Zr-Doped ZnO thin films grown by atomic layer deposition", Materials 9 (2016) 695.   DOI
14 RRUFF / Department of Geosciences University of Arizona 1040 E 4th, Tucson, AZ, USA.
15 C.C. Lee, P. Shen and H.Y. Lu, "Formation of willemite from powder mixture with $TiO_2$ addition", J. Mater. Sci. 24 (1989) 3300.   DOI
16 N.V. Rudkovskaya, N. Yu. Mikhailenko, S. B. Lisinenkova and Yu. M. Levin, "Diffusion processes in firing willemite glaze on quartz glass ceramics," Glass and Ceramics 60 (2003) 226.   DOI
17 Z. Weng, C. Song, Z. Xiong, H. Xue, W. Sun, Y. Zhang, B. Yang, M.J. Reece and H. Yan, "Microstructure and broadband dielectric properties of $Zn_2SiO_4$ ceramics with nano-sized $TiO_2$ addition", Ceramics International 45 (2019) 13251.   DOI
18 M.H.M. Zaid, K.A. Matori, S. Hj. A. Aziz, H.M. Kamari, W.M.M. Yunus, Z.A. Wahab and N.F. Samsudin, "Fabrication and crystallization of ZnO-SLS glass derived willemite glass-ceramics asa potential material for optics applications", J. Spectroscopy 2016 (2016) 1.