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Differences in the optical properties of photochromic lenses between cold and warm temperatures

机译:冷热温度之间光致变色镜片光学性质的差异

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The aim of our study was to quantitatively evaluate the optical properties of photochromic lenses available on the market under cold and warm temperatures corresponding to the winter and summer seasons. The transmittance of 12 photochromic lenses from five manufacturers was measured using an UV/VIS spectrophotometer at cold (6 ± 2°C) and at warm (21 ± 2°C) temperatures. Transmittances were recorded from 380 to 780 nm and at the wavelength with maximum absorbance, which was calculated from the transmittance. The characteristics of the lenses were evaluated by examining changes in the optical properties at colorless and colored states and in the fading rate depending on temperature. The wavelength with maximum absorbance for photochromic lenses at the cold temperature showed a shorter shift than that at the warm temperature. The photochromic properties at the cold temperature were 11.5% lower for transmittance, 1.4 times higher for the change in optical density, and 1.2 times higher for the change in transmittance in the colored and colorless states, optical blocking % ratio, and change in luminous transmittance as compared to those at the warm temperature in the colored state. The fading rates based on the half-life time at the cold temperature were from 2.7 to 5.4 times lower than those at the warm temperature. The fading time until 80% transmittance was 6.4 times longer at the cold as compared to that at the warm temperature. There were significant differences in the optical properties of the photochromic lenses in terms of an absorbance at a shorter wavelength, a lower transmittance, a higher optical density, optical blocking % ratio, and luminous transmittance at the cold as compared to the warm temperature. Hence, it is necessary to provide consumers with information on photochromic optical properties, including the transmittance in colored and colorless states, and the fading rates at temperatures corresponding to the summer and winter seasons for each product.
机译:我们的研究目的是定量评估光致变色镜片的光学变色镜片的光学性质,在与冬季和夏季相对应的寒冷和温暖的温度下。在冷(6±2°C)和温热(21±2°C)温度下,使用UV / Vis分光光度计测量来自五种制造商的12个光致变色镜片的透射率。透射率从380到780nm记录,并且在具有最大吸光度的波长处,从透射率计算。通过根据温度检查无色和着色状态的光学性质的变化以及褪色速率来评估镜片的特性。在寒冷温度下光致变色透镜的最大吸光度的波长显示出比温温在温度下的速度较短。透射率下冷温度下的光致变色性能降低11.5%,光度变化的1.4倍,透射率变化的透射率变化越高,光堵塞%比率和发光透射率的变化越高。与有色状态温热的那些相比。基于寒冷温度的半衰期的衰落率为低于温度下的2.7至5.4倍。与暖温度相比,褪色时间直到寒冷的80%透射率为6.4倍。与暖温度相比,在较短波长的吸光度,较低的透射率,较高的光密度,光学阻断%的比率和光透射率下,光致变色镜片的光学性质存在显着差异。因此,有必要提供关于光致变色光学性质的信息的消费者,包括着色和无色状态的透射率,以及对应于每种产品的夏季和冬季季节的温度下的衰落速率。

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