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Reflectivity of optical glasses in the mid-infrared spectral range in a humid atmosphere

机译:光学玻璃在潮湿大气中中红外光谱范围内的反射率

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摘要

Variations in the reflection coefficients of mid-infrared radiation from the surfaces of silicate, borosilicate, and lead-borate optical glasses after their contact with a humid atmosphere were investigated. Aim of study. The study was aimed at analyzing and interpreting infrared spectra of optical glasses after their prolonged exposure to a humid atmosphere.Method. Glasses with a surface polish quality of grade II were stored in hermetically sealed containers at a temperature of 23°C and relative atmospheric humidity of 25 and 65 for 20 to 42 days and then stored in an atmosphere with a humidity of 95 at a temperature of 50°C. A part of the samples was processed in a hexamethyldisilazane vapor to forma hydrophobic coating. Infrared spectra of the sampleswere recorded in the wavenumber range of 400-4000 cm~(-1) using a Nicolet iS10 Fourier spectrometer. Main results. The changes in the reflection coefficients are attributed to variation in the chemical composition of the surface layer of the optical glasses after their interaction with a humid atmosphere. Practical significance. The obtained results can be applied for the development of technology to increase the chemical resistances of optical glasses in a humid atmosphere.
机译:研究了硅酸盐、硼硅酸盐和硼酸铅光学玻璃与潮湿大气接触后表面中红外辐射反射系数的变化。研究目的。该研究旨在分析和解释光学玻璃长时间暴露在潮湿环境中后的红外光谱。方法。表面抛光质量为II级的玻璃在温度为23°C,相对大气湿度为25%和65%的密封容器中储存20至42天,然后在湿度为95%,温度为50°C的环境中储存。 一部分样品在六甲基二硅氮烷蒸气中处理,形成疏水涂层。使用Nicolet iS10傅里叶光谱仪在400-4000 cm~(-1)的波数范围内记录了样品的红外光谱。主要结果。反射系数的变化归因于光学玻璃表面层与潮湿大气相互作用后化学成分的变化。现实意义。所获得的结果可用于开发技术,以提高光学玻璃在潮湿气氛中的耐化学性。

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