Effects of convective fluid motion upon oxide crystal growth in high temperature solution

被引:0
|
作者
Qing, JW [1 ]
Xia, CL [1 ]
An, LX [1 ]
Lei, PZ [1 ]
机构
[1] Shanghai Inst Ceram, CAS, Shanghai 200050, Peoples R China
关键词
D O I
暂无
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
For understanding of the influence of convective flow on crystal growth, space high temperature in situ observation instrument (SHITISOI) is dedicated to visualize and record the whole growth process of oxide crystals in high temperature tip to 1,000degreesC. Model experiments using transparent liquids such as KNbO3 and a mixture of Li2B4O7+KNbO3 were chosen to investigate effects on ground and in space. On the earth, an investigation of growth kinetics of KNbO3 crystal related to two different states of convection: diffusive-advective flow and diffusive-convective flow, has been performed The per unit length of a step e is calculated from the experimental data for two different states of convection. Analyses of these data show the effect of buoyancy convection is to enhance the sharpness of the interface. The growth of KNbO3 crystals from solution of KNbO3+Li2B4O7 was investigated in space. The streamlines of the steady thermocapillary convection in Li2B4O7 solvent was observed Due to thermocapillary convection, KNbO3 crystal grains grew and filled the whole solution homogeneously Earth-based quenching experiments are designed in order to study polyhedral instability of KNbO3 crystal, which is controlled by diffusion mechanism limitation. In all cases, when the crystal was nucleated near air/solution surface, it lost its polyhedral stability and varied from polyhedrons to dendrites. The thickness of diffusion mechanism limitation layer is about 60 mum.
引用
收藏
页码:12 / 15
页数:4
相关论文
共 50 条
  • [1] Effects of convective fluid motion upon oxide crystal growth in high temperature solution
    Jin Wei Qing
    Li Xia Cai
    Xin An Liang
    Zhi Lei Pan
    Microgravity Science and Technology, 2002, 13 (2)
  • [2] Effects of convective fluid motion upon oxide crystal growth in high temperature solution
    Jin, Wei Qing
    Cai, Li Xia
    Liang, Xin An
    Pan, Zhi Lei
    2001, ZARM Tec Publishing (13)
  • [3] Comparison on the convective effects in high temperature solution in space and on ground
    Hua, LZ
    Qing, JW
    Lei, PZ
    An, LX
    MICROGRAVITY SCIENCE AND TECHNOLOGY, 2003, 14 (01) : 3 - 8
  • [4] Comparison on the convective effects in high temperature solution in space and on ground
    Zhao Hua Liu
    Wei Qing Jin
    Zhi Lei Pan
    Xin An Liang
    Microgravity - Science and Technology, 2003, 14 (1) : 3 - 8
  • [5] THE MECHANISM OF CUPROUS OXIDE CRYSTAL GROWTH AT HIGH TEMPERATURE
    ANDRIEVSKY, AI
    MISHCHENKO, MT
    DOKLADY AKADEMII NAUK SSSR, 1956, 107 (01): : 81 - &
  • [6] High temperature solution growth of oxide single crystals
    Majchrowski, A
    SINGLE CRYSTAL GROWTH, CHARACTERIZATION, AND APPLICATIONS, 1999, 3724 : 18 - 21
  • [7] STABILITY OF STEADY CONVECTIVE MOTION OF A FLUID WITH A LONGITUDINAL TEMPERATURE GRADIENT
    BIRIKH, RV
    GERSHUNI, GZ
    ZHUKHOVI.EM
    RUDAKOV, RN
    JOURNAL OF APPLIED MATHEMATICS AND MECHANICS-USSR, 1969, 33 (06): : 937 - &
  • [8] Bulk PPKTP by crystal growth from high temperature solution
    Pena, A.
    Menaert, B.
    Boulanger, B.
    Laurell, F.
    Canalias, C.
    Pasiskevicius, V.
    Ortega, L.
    Segonds, P.
    Debray, J.
    Felix, C.
    JOURNAL OF CRYSTAL GROWTH, 2012, 360 : 52 - 55
  • [9] The Effects of ACRT on the Growth of ZnTe Crystal by the Temperature Gradient Solution Growth Technique
    Yin, Liying
    Jie, Wanqi
    Wang, Tao
    Zhou, Boru
    Yang, Fan
    Nan, Ruihua
    CRYSTALS, 2017, 7 (03):
  • [10] Hydrodynamic instability in the convective motion of a conducting fluid with a viscosity that depends on temperature
    Gorlei, V.V.
    Magnetohydrodynamics New York, N.Y., 1991, 26 (03): : 375 - 378