• Bulletin of the Chinese Ceramic Society
  • Vol. 41, Issue 11, 3945 (2022)
TIAN Haodong*, XU Chi, WU Zhiyuan, ZHOU Shaojun, and ZU Chengkui
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    TIAN Haodong, XU Chi, WU Zhiyuan, ZHOU Shaojun, ZU Chengkui. Effect of Na+ Concentration on Properties of Chemical Strengthened Sodium Aluminosilicate Glass[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(11): 3945 Copy Citation Text show less
    References

    [1] MACRELLI G, VARSHNEYA A K, MAURO J C. Simulation of glass network evolution during chemical strengthening: resolution of the subsurface compression maximum anomaly[J]. Journal of NonCrystalline Solids, 2019, 522: 119457.

    [2] SVENSON M N, THIRION L M, YOUNGMAN R E, et al. Effects of thermal and pressure histories on the chemical strengthening of sodium aluminosilicate glass[J]. Frontiers in Materials, 2016, 3: 14.

    [3] KARLSSON S, JONSON B, STLHANDSKE C. The technology of chemical glass strengthening: a review[J]. Glass Technology: European Journal of Glass Science and Technology Part A, 2010, 51(2): 4154.

    [6] MACRELLI G. Chemically strengthened glass by ion exchange: strength evaluation[J]. International Journal of Applied Glass Science, 2018, 9(2): 156166.

    [7] CUI J D, CAO X, SHI L F, et al. The effect of substitution of Al2O3 and B2O3 for SiO2 on the properties of cover glass for liquid crystal display: structure, thermal, viscoelastic, and physical properties[J]. International Journal of Applied Glass Science, 2021, 12(3): 443456.

    [9] BERNESCHI S, RIGHINI G C, PELLI S. Towards a glass new world: the role of ionexchange in modern technology[J]. Applied Sciences, 2021, 11(10): 4610.

    [10] SGLAVO V M, TALIMIAN A, OCSKO N. Influence of salt bath calcium contamination on soda lime silicate glass chemical strengthening[J]. Journal of NonCrystalline Solids, 2017, 458: 121128.

    [12] HASSANI H, SGLAVO V M. Effect of Na contamination on the chemical strengthening of sodalime silicate float glass by ionexchange in molten potassium nitrate[J]. Journal of NonCrystalline Solids, 2019, 515: 143148.

    [16] PRIETOBLANCO X, MONTEROORILLE C. Theoretical modelling of ion exchange processes in glass: advances and challenges[J]. Applied Sciences, 2021, 11(11): 5070.

    [17] TALIMIAN A, SGLAVO V M. Glass: chemical and thermal strengthening[M]//Encyclopedia of Materials: Technical Ceramics and Glasses. Amsterdam: Elsevier, 2021: 632646.

    [20] MAASS P. Towards a theory for the mixed alkali effect in glasses[J]. Journal of NonCrystalline Solids, 1999, 255(1): 3546.

    [21] LIU S M, ZHAO G L, YING H, et al. Effects of mixed alkaline earth oxides additive on crystallization and structural changes in borosilicate glasses[J]. Journal of NonCrystalline Solids, 2008, 354(10/11): 956961.

    [22] CRANK J. The mathematics of diffusion[M]. 2nd ed. Oxford: Clarendon Press, 1979.

    [23] TAGANTSEV D K. Ionexchange processing of glasses under nonisothermal conditions[J]. Journal of NonCrystalline Solids, 1999, 243(2/3): 185191.

    [24] WANG M T, CHENG J S. Viscosity and thermal expansion of rare earth containing sodalimesilicate glass[J]. Journal of Alloys and Compounds, 2010, 504(1): 273276.

    TIAN Haodong, XU Chi, WU Zhiyuan, ZHOU Shaojun, ZU Chengkui. Effect of Na+ Concentration on Properties of Chemical Strengthened Sodium Aluminosilicate Glass[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(11): 3945
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