• Journal of Inorganic Materials
  • Vol. 35, Issue 7, 759 (2020)
Xiaoxu ZHANG1、2, Dongbin ZHU1、2、3、*, and Jinsheng LIANG1、2
Author Affiliations
  • 1Key Laboratory of Special Functional Materials for Ecological Environment and Information of Ministry of Education, Hebei University of Technology, Tianjin 300130, China
  • 2Institute of Power Source and Ecomaterials Science, Hebei University of Technology, Tianjin 300130, China
  • 3School of Mechanical Engineering, Hebei University of Technology, Tianjin 300130, China
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    DOI: 10.15541/jim20190401 Cite this Article
    Xiaoxu ZHANG, Dongbin ZHU, Jinsheng LIANG. Progress on Hydrothermal Stability of Dental Zirconia Ceramics[J]. Journal of Inorganic Materials, 2020, 35(7): 759 Copy Citation Text show less
    SEM images of zirconia microstructure (a) without and (b) with LTD, and AFM images of zirconia (c) without and (d) with LTD[17]
    1. SEM images of zirconia microstructure (a) without and (b) with LTD, and AFM images of zirconia (c) without and (d) with LTD[17]
    (a) Schematic views of zirconia LTD process, and (b) oxygen vacancies of LTD mechanism[23]
    2. (a) Schematic views of zirconia LTD process, and (b) oxygen vacancies of LTD mechanism[23]
    Theoretical model of initial dimensions and growth rate of m-ZrO2 nuclei[32]
    3. Theoretical model of initial dimensions and growth rate of m-ZrO2 nuclei[32]
    Ageing kinetics analysis with 3Y-TZP by μ-Raman spectroscopy[33]
    4. Ageing kinetics analysis with 3Y-TZP by μ-Raman spectroscopy[33]
    XRD profiles for different incidence angles ω in the surface of the 3Y-TZP specimen after LTD test[37]
    5. XRD profiles for different incidence angles ω in the surface of the 3Y-TZP specimen after LTD test[37]
    SEM images of the Y-TZP ceramic[45]
    6. SEM images of the Y-TZP ceramic[45]
    2Y-TZP ceramic[50]
    7. 2Y-TZP ceramic[50]
    Morphologies of samples treated with surface nitrogen after aging[60]
    8. Morphologies of samples treated with surface nitrogen after aging[60]
    3Y-0.25Al ceramic[69]
    9. 3Y-0.25Al ceramic[69]
    0.05A-TZ/SiO2 specimen images of fractured surface[74]
    10. 0.05A-TZ/SiO2 specimen images of fractured surface[74]
    SEM images of the SWNT distribution within the 3Y-TZP/SWNT ceramic[76]
    11. SEM images of the SWNT distribution within the 3Y-TZP/SWNT ceramic[76]
    Equation
    Linear${{V}_{\text{m}}}=\frac{I_{\text{m}}^{181}+I_{\text{m}}^{190}}{k(I_{\text{t}}^{147}+\delta I_{\text{t}}^{265})+I_{\text{m}}^{181}+I_{\text{m}}^{190}}$Clarke and Adar[38] δ=1; k=0.97Katagiri, et al.[39]δ=0; k=2.2±0.2Lim, et al.[40]δ=1; k=0.33±0.33
    Power law[41]${{V}_{\text{m}}}=\sqrt{0.19-\frac{0.13}{\frac{I_{\text{m}}^{181}+I_{\text{m}}^{190}}{I_{\text{t}}^{147}+I_{\text{m}}^{181}+I_{\text{m}}^{190}}-1.01}}-0.56$
    Logarithmic[42]${{V}_{\text{m}}}=0.65+0.39\lg \left( \frac{I_{\text{m}}^{181}+I_{\text{m}}^{190}}{I_{\text{t}}^{147}+I_{\text{t}}^{265}+I_{\text{m}}^{181}+I_{\text{m}}^{190}} \right)$
    Table 1. Proposed models for monoclinic phase quantification by Raman spectroscopy
    Xiaoxu ZHANG, Dongbin ZHU, Jinsheng LIANG. Progress on Hydrothermal Stability of Dental Zirconia Ceramics[J]. Journal of Inorganic Materials, 2020, 35(7): 759
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