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Optical glass

An optical glass and glass technology, applied in optics, optical components, instruments, etc., can solve the problems of poor devitrification resistance, poor devitrification resistance of glass, and large content of rare earth elements, and achieve excellent devitrification resistance. Effect

Inactive Publication Date: 2017-03-15
CDGM OPTICAL GLASS
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Problems solved by technology

[0003] The content of rare earth element components in the glass components satisfying the above optical properties is large, while the content of components used to form glass network formers is relatively small. easy to crystallize
Japanese Patent Laid-Open No. 2008-1551 discloses a high-refraction and low-dispersion optical glass, but its resistance to devitrification is poor, and complex cooling methods are required to suppress devitrification when the glass is formed.

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Embodiment Construction

[0029] Ⅰ. Optical glass

[0030] The composition of the optical glass of the present invention will be described in detail below. Unless otherwise specified, the content and total content of each glass component are expressed in % by weight, and the ratio of the content of the glass component to the total content is expressed in weight ratio.

[0031] B 2 o 3 It is a glass network generator, especially in the lanthanide glass with high refraction and low dispersion, B 2 o 3 It is an essential component to obtain crystallization stable glass. When B 2 o 3 When the content is less than 5%, the crystallization stability of the glass is not ideal; but when B 2 o 3 When the content is higher than 25%, the chemical stability of the glass will decrease. Therefore, B 2 o 3 The content is limited to 5-25%, preferably 7-22%, more preferably 10-20%.

[0032] SiO 2 It is also a glass network generator and the skeleton of optical glass, which can improve the chemical stability ...

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Abstract

The invention provides high-refraction low-dispersion optical glass with excellent devitrification resistance. The high-refraction low-dispersion optical glass is prepared from, by weight, 5-25% of B2O3, 1-15% of SiO2, 30-45% of La2O3, 4-20% of Gd2O3, 2-15% of Y2O3, 4-15% of Ta2O5, 0-8% of ZrO2 and 0.07-0.3% of Y2O3 / (La2O3+Gd2O3+Y2O3). An appropriate amount of La2O3, Gd2O3, Y2O3 and other rare earth oxide components having high refractive indexes and low dispersion effects are introduced, an appropriate proportion of one or more of Nb2O5, ZrO2 or Ta2O5 is introduced, by optimizing the matching ratio of all components, the high-refraction low-dispersion optical glass with excellent devitrification resistance and glass prefabricated members and optical elements are obtained, and the requirement of modern novel photoelectric products can be met.

Description

technical field [0001] The invention relates to an optical glass with high refractive index and low dispersion characteristics, as well as a glass preform and an optical element formed from the optical glass. Background technique [0002] Combining lenses made of high refractive index and low dispersion optical glass with lenses made of high refractive index and high dispersion optical glass can correct chromatic aberration and miniaturize the optical system, especially when the refractive index nd is 1.82-1.86 and the Abbe number νd is 40-46 high refractive index and low dispersion optical glass, the market demand is increasing day by day. [0003] The content of rare earth element components in the glass components satisfying the above optical properties is large, while the content of components used to form glass network formers is relatively small. easy to crystallize. Japanese Patent Application Laid-Open No. 2008-1551 discloses a high-refraction and low-dispersion op...

Claims

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Application Information

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IPC IPC(8): C03C3/068C03C4/00G02B1/00
CPCG02B1/00C03C3/068C03C4/00
Inventor 郝良振匡波毛露路
Owner CDGM OPTICAL GLASS
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