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A novel method for stress evaluation in chemically strengthened glass based on micro-Raman spectroscopy

机译:基于微拉曼光谱法的化学强化玻璃应力评价的一种新方法

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Chemically strengthened glass is widely used for screen protection in mobile devices, and its strengthening processes and application fields have rapidly diversified. The origin of the strength is residual compressive stress induced by ion exchange, and the stress evaluation has been performed via the photoelastic effect. However, for a deep understanding of the nature of the strength and development of stronger glasses, we need a method directly connected to atomic-scale glass structures. Here, we propose a method based on the “stuffing” effect, where we can determine the residual stress non-contactively and non-destructively with a high spatial resolution using Boson, D1, D2, and A1 peaks in micro-Raman spectra. Finally, we show a plausible depth dependence of the residual stress. The strength of glass can be increased post-production by treatment with chemical processes, and such materials are used in everyday devices such as mobile phones. Here, the authors report a non-invasive method based on micro-Raman spectroscopy to analyse the compressive stress responsible for the increased strength of the treated glass.
机译:化学加强的玻璃广泛用于移动设备中的屏幕保护,其强化过程和应用领域具有迅速多样化。强度的起源是由离子交换引起的残余压缩应力,并且通过光弹性效应进行了应力评估。然而,为了深入了解强度和更强大的眼镜的性质,我们需要一种直接连接到原子尺度玻璃结构的方法。在这里,我们提出了一种基于“填充”效应的方法,在那里我们可以使用微拉曼光谱中的玻色子,D1,D2和A1峰值具有高空间分辨率来确定残留应力和非破坏性。最后,我们展示了残余压力的合理深度依赖性。通过用化学过程处理可以增加玻璃的强度,并且这些材料用于每天使用的移动电话。在这里,作者报告了基于微型拉曼光谱的非侵入性方法,以分析负责对处理玻璃的强度增加的压缩应力。

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