长沙理工大学学报(自然科学版)
Li2O对盖板玻璃离子交换深度和力学性能影响
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(彩虹集团(邵阳)特种玻璃有限公司,湖南 邵阳 422000)

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通讯作者:

张晓辉(1977—)(ORCID:0009-0008-7546-9758),男,高级工程师,主要从事硅酸盐超薄盖板玻璃生产工艺方面的研究。E-mail:zxh6121160@126.com

中图分类号:

U465;TQ171.73

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Effect of Li2O on ion exchange depth and mechanical properties of cover glass
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(Caihong Group (Shaoyang) Special Glass Co., Ltd., Shaoyang 422000, China)

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    摘要:

    【目的】以KNO3/NaNO3混合熔盐增强盖板玻璃的离子交换深度及力学性能。【方法】采用低温离子交换法对铝硅盖板玻璃进行化学强化,并在玻璃料方中添加Li2O,对玻璃进行二次强化。【结果】在玻璃料方中添加Li2O后进行的二次强化工艺能够显著提高玻璃的离子交换深度,同时保持其优良的力学性能。相比于传统的低温离子交换法,二次强化工艺在提高玻璃性能的同时,避免了可能导致玻璃变形和表面缺陷的高温处理过程。【结论】通过在玻璃料方中添加Li2O的二次强化工艺制备的锂铝硅盖板玻璃具有较大的离子交换深度,同时该玻璃的抗冲击强度等力学性能得到了显著增强。该玻璃在航空航天领域、交通领域、电子产品及清洁能源等领域具有广泛的应用前景。

    Abstract:

    [Purposes] This paper aims to enhance the ion exchange depth and mechanical properties of the cover glass by selecting KNO3/NaNO3 as molten salt. [Methods] Aluminum-silicon cover glass was chemically strengthened by a low-temperature ion exchange method. Li2O was added to the glass formula for secondary strengthening of the glass. [Findings] The ion exchange depth of the glass can be significantly improved by adding Li2O to the glass formula while maintaining its excellent mechanical properties. Compared with the traditional low-temperature ion exchange method, secondary strengthening method not only improves glass performance but also avoids the high-temperature processes that may cause glass deformation and surface defects. [Conclusions] The lithium-aluminum-silicon cover glass prepared by adding Li2O for secondary strengthening demonstrates high impact resistance and other mechanical properties, showing a wide range of application prospects in the fields of aerospace, transportation, electronic products, and clean energy.

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引用本文

张晓辉. Li2O对盖板玻璃离子交换深度和力学性能影响[J].长沙理工大学学报(自然科学版),2024,21(6):104-110.
ZHANG Xiaohui. Effect of Li2O on ion exchange depth and mechanical properties of cover glass[J]. Journal of Changsha University of Science & Technology (Natural Science),2024,21(6):104-110.

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  • 收稿日期:2024-08-05
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  • 在线发布日期: 2025-01-15
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