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作 者:董琳玲[1] 祖恩东[1] 贺晓[1] 唐雪莲[1]
机构地区:[1]昆明理工大学材料科学与工程学院,昆明650093
出 处:《硅酸盐通报》2013年第10期2169-2171,共3页Bulletin of the Chinese Ceramic Society
摘 要:根据色度学原理,利用USB2000+光纤光谱仪,量化红宝石颜色的主波长或补色波长、色调角以及颜色描述的分析可知:色调角屹在(0°,18°),补色波长A。为490—496nm时,红宝石色调为红色;色调角hab在(342°,360°),补色波长A。为497~509nm时,红宝石色调为粉红色;色调角^二在(324°,342°),补色波长λe为509—542nm时,红宝石色调为紫红色;色调角坛在(306。,324。),补色波长A。为542—570nm时,红宝石色调为紫色。因此,利用光纤光谱仪、适当的照明方式及光谱采集方法,应用色度学原理,可以客观、定量地描述红宝石的颜色,可作为评价红宝石颜色的适用技术。According to the principle of colorimetry, the color parameter indexes of ruby are quantitated by the USB2000 + fiber spectrometer. The color of ruby can be distinguished by means of the complementary wavelength and hue angle:When the hue angle in 0°-18° and the complementary wavelength is 490-496 nm, rubyg hue is red ;when the hue angle in 342°-360° and the complementary wavelength is 497-509 nm, mby hue is pink ;when the hue angle in 324°-342° and the complementary wavelength is 509-542 nm, rubyg hue is purple red; when the hue angle in 306°-324° and the complementary wavelength is 542-570 nm, ruby hue is purple. Therefore, it can objectively and quantitatively describe the color of ruby by using the fiber-optic spectrometer and the appropriate method of lighting and spectrum collection, and it also can be used as the adaptable technique of evaluating the color of ruby.
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