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Volume 34 Issue 3
Jul.  2017
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ZHAO Weijuan, FANG Keke, WANG Dongyan, SUN Xinmin, GUO Musen, ZHAO Hong, ZHANG Bin. Study on Phase and Microstructure of the White Porcelain from Huangye Kiln[J]. Nuclear Physics Review, 2017, 34(3): 617-623. doi: 10.11804/NuclPhysRev.34.03.617
Citation: ZHAO Weijuan, FANG Keke, WANG Dongyan, SUN Xinmin, GUO Musen, ZHAO Hong, ZHANG Bin. Study on Phase and Microstructure of the White Porcelain from Huangye Kiln[J]. Nuclear Physics Review, 2017, 34(3): 617-623. doi: 10.11804/NuclPhysRev.34.03.617

Study on Phase and Microstructure of the White Porcelain from Huangye Kiln

doi: 10.11804/NuclPhysRev.34.03.617
Funds:  National Natural Science Foundation of China(11275173)
  • Received Date: 2016-12-20
  • Rev Recd Date: 2017-04-27
  • Publish Date: 2017-07-18
  • The white porcelain samples of the four periods of Huangye kiln were studied in this paper, and the samples were analyzed by X-ray diffraction (XRD) and scanning electron microscopy (SEM). The results show that the material phase is basically the same of the white porcelain bodies from Huangye kiln, and mainly mullite, alpha quartz and cristobalite, unmelted quartz and a small amount of clay phase; There are some round bubbles in HuangYe kiln white porcelain, glazes, so are some feldspathic crystals with micro-level needles or columnar. It is evident to observe phase separation structure, which is accompanied by the birth. Apart from some pores, unfused quartz particles, larger Ti particles, mullite crystals and quartz crystals can also be found in the embryo of Huangye kiln white porcelain.
  • [1] Beijing Art Museum. China Gongyi Kiln[M]. Beijing:The Chinese Overseas Publishing House, 2011:12. (in Chinese) (北京艺术博物馆编, 中国巩义窑[M]. 北京:中国华侨出版社, 2011:12.)
    [2] SUN Xinmin. Chinese Archaeological, 2007, 4:106. (in Chinese) (孙新民. 华夏考古, 2007, 4:106.)
    [3] SUN Xinmin, Tang Tricolor of Huangye Kiln in Gongyi[M]. Zhengzhou:Elephant Publishing House, 2002:3. (in Chinese) (孙新民. 巩义黄冶唐三彩[M]. 郑州:大象出版社, 2002:3.).
    [4] DONG Junling, ZHAO Weijuan, LIU Guodong, et al. Nuclear Physics Review, 2008, 25(4):380. doi:10.11804/NuclPhysRev.25.04.380. (in Chinese) (董军领, 赵维娟, 刘国栋, 等. 原子核物理评论, 2008, 25(4):380.)
    [5] YANG Ailing. Cultural Relics of Central China, 2002, 4:71. (in Chinese) (杨爱玲. 中原文物, 2002, 4:71.)
    [6] ZHOU Fugen, LI Zhonghe, Ye Hongming. The Microstructure of Porcelain in South Song Dynasty[C]//LI Jiazhi, Achievements of Ancient Chinese Ceramic Science and Technology,Shanghai:Shanghai Science and Technology Publishing House, 1989:359. (in Chinese) (周福根, 李中和, 叶宏明. 南宋瓷的显微结构[C]//李家治. 中国古代陶瓷科学技术成就, 上海:上海科学技术出版社, 1989:359.)
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Study on Phase and Microstructure of the White Porcelain from Huangye Kiln

doi: 10.11804/NuclPhysRev.34.03.617
Funds:  National Natural Science Foundation of China(11275173)

Abstract: The white porcelain samples of the four periods of Huangye kiln were studied in this paper, and the samples were analyzed by X-ray diffraction (XRD) and scanning electron microscopy (SEM). The results show that the material phase is basically the same of the white porcelain bodies from Huangye kiln, and mainly mullite, alpha quartz and cristobalite, unmelted quartz and a small amount of clay phase; There are some round bubbles in HuangYe kiln white porcelain, glazes, so are some feldspathic crystals with micro-level needles or columnar. It is evident to observe phase separation structure, which is accompanied by the birth. Apart from some pores, unfused quartz particles, larger Ti particles, mullite crystals and quartz crystals can also be found in the embryo of Huangye kiln white porcelain.

ZHAO Weijuan, FANG Keke, WANG Dongyan, SUN Xinmin, GUO Musen, ZHAO Hong, ZHANG Bin. Study on Phase and Microstructure of the White Porcelain from Huangye Kiln[J]. Nuclear Physics Review, 2017, 34(3): 617-623. doi: 10.11804/NuclPhysRev.34.03.617
Citation: ZHAO Weijuan, FANG Keke, WANG Dongyan, SUN Xinmin, GUO Musen, ZHAO Hong, ZHANG Bin. Study on Phase and Microstructure of the White Porcelain from Huangye Kiln[J]. Nuclear Physics Review, 2017, 34(3): 617-623. doi: 10.11804/NuclPhysRev.34.03.617
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