CN107686237B - High-refractive and high-dispersive optical glass, optical element and optical instrument - Google Patents

High-refractive and high-dispersive optical glass, optical element and optical instrument Download PDF

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Publication number
CN107686237B
CN107686237B CN201710879580.XA CN201710879580A CN107686237B CN 107686237 B CN107686237 B CN 107686237B CN 201710879580 A CN201710879580 A CN 201710879580A CN 107686237 B CN107686237 B CN 107686237B
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glass
refractive
optical glass
tio
dispersive optical
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CN107686237A (en
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孙伟
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Chengdu Guangming Optoelectronics Co Ltd
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Chengdu Guangming Optoelectronics Co Ltd
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    • CCHEMISTRY; METALLURGY
    • C03GLASS; MINERAL OR SLAG WOOL
    • C03CCHEMICAL COMPOSITION OF GLASSES, GLAZES OR VITREOUS ENAMELS; SURFACE TREATMENT OF GLASS; SURFACE TREATMENT OF FIBRES OR FILAMENTS MADE FROM GLASS, MINERALS OR SLAGS; JOINING GLASS TO GLASS OR OTHER MATERIALS
    • C03C3/00Glass compositions
    • C03C3/04Glass compositions containing silica
    • C03C3/062Glass compositions containing silica with less than 40% silica by weight
    • C03C3/064Glass compositions containing silica with less than 40% silica by weight containing boron
    • C03C3/068Glass compositions containing silica with less than 40% silica by weight containing boron containing rare earths
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B1/00Optical elements characterised by the material of which they are made; Optical coatings for optical elements
    • CCHEMISTRY; METALLURGY
    • C03GLASS; MINERAL OR SLAG WOOL
    • C03CCHEMICAL COMPOSITION OF GLASSES, GLAZES OR VITREOUS ENAMELS; SURFACE TREATMENT OF GLASS; SURFACE TREATMENT OF FIBRES OR FILAMENTS MADE FROM GLASS, MINERALS OR SLAGS; JOINING GLASS TO GLASS OR OTHER MATERIALS
    • C03C2201/00Glass compositions
    • C03C2201/06Doped silica-based glasses
    • C03C2201/08Doped silica-based glasses containing boron or halide
    • C03C2201/10Doped silica-based glasses containing boron or halide containing boron

Abstract

The present invention provides a kind of high-refractive and high-dispersive optical glass that light transmission rate is excellent.High-refractive and high-dispersive optical glass, component include by weight percentage: SiO2: 1~10%, B2O3: 8~20%, La2O3: 35~50%, Y2O3: 0.1~5%, Gd2O3: 7~20%, ZrO2: 0~10%, TiO2: 1~9%, Nb2O5: 3~12%, ZnO:1~8%.The present invention is by reasonable component proportion, the W without containing easy coloring6+And Bi2O3, the degree of staining and light transmission rate of glass are excellent, and stability is preferable, have obtained the high-refractive and high-dispersive optical glass that refractive index is 1.93~2.0, Abbe number is 30~35.

Description

High-refractive and high-dispersive optical glass, optical element and optical instrument
The application is for application No. is 201310336770.9, and the applying date is on August 5th, 2013, entitled " height refraction The divisional application of the application for a patent for invention of high-dispersive optical glass, optical element and optical instrument ".
Technical field
The present invention relates to a kind of high-refractive and high-dispersive optical glass, more particularly to a kind of refractive index (nd) be 1.93~ 2.0, Abbe number (νd) be 30~35 high-refractive and high-dispersive optical glass, and the prefabricated component, the light that are made of the optical glass Learn element and optical instrument.
Background technique
Today of scientific and technological high speed development, the equipment such as digital camera, DV and camera mobile phone are more and more general And.By taking traditional slr camera as an example, several pieces spherical lenses are just needed inside a camera lens, and by using high-refraction high-dispersion Optical glass producing at non-spherical lens, can with it is a piece of replace several pieces spherical lenses, significantly reduce the weight of camera lens.Cause This, demand of the market to high-refractive and high-dispersive optical glass is just more and more big.
CN102161568 disclose a kind of refractive index be 1.945~1.97, the optical glass that Abbe number is 33~36, Contain a large amount of W in component6+, this makes glass be easy coloring, and Glass optical transmitance deteriorates.CN102459106 discloses one kind High-refractive and high-dispersive optical glass contains a considerable amount of Bi in component2O3, a large amount of Bi2O3Glass coloration can not only be made, And the stability of glass can be significantly reduced.
Summary of the invention
Technical problem to be solved by the invention is to provide a kind of high-refractive and high-dispersive optical glass that light transmission rate is excellent.
The technical proposal for solving the technical problem of the invention is: high-refractive and high-dispersive optical glass, component is by weight Percentage includes: SiO2: 1~10%, B2O3: 8~20%, La2O3: 35~50%, Y2O3: 0.1~5%, Gd2O3: 7~20%, ZrO2: 0~10%, TiO2: 1~9%, Nb2O5: 3~12%, ZnO:1~8%.
Further, also contain: Sb2O3: 0~1%, R2O:0~3%, wherein one or more of R Li, Na, K, It is measured by GB/T7962.12-2010 prescriptive procedure, interior transmitance is 80% or more at 10mm thickness sample 400nm.
Further, it forms by weight percentage are as follows: SiO2: 1~10%, B2O3: 8~20%, La2O3: 35~50%, Y2O3: 0.1~5%, Gd2O3: 7~20%, ZrO2: 0~10%, TiO2: 1~9%, Nb2O5: 3~12%, ZnO:1~8%, Sb2O3: 0~1%, R2O:0~3%, wherein one or more of R Li, Na, K.
Further, in which: TiO2/(TiO2+ ZnO) it is greater than 0.5, Y2O3/(Y2O3+La2O3+Gd2O3) less than 0.1.
Further, in which: SiO2: 3~6%.
Further, in which: B2O3: 10~15%.
Further, in which: La2O3: 38~46%.
Further, in which: Y2O3: 1~3%.
Further, in which: Gd2O3: 10~16%.
Further, in which: ZrO2: 4~8%.
Further, in which: TiO2: 5~9%.
Further, in which: Nb2O5: 5~9%.
Further, in which: ZnO:1~5%.
Further, in which: TiO2/(TiO2+ ZnO) it is greater than 0.7, Y2O3/(Y2O3+La2O3+Gd2O3) less than 0.05.
Further, the optical glass refractive index is 1.93~2.0, and Abbe number is 30~35.
Further, the density of the optical glass is measured by GB/T7962.20-2010 prescriptive procedure, is 5.20g/cm3 Below;The coefficient of expansion is measured by GB/T7962.16-2010 prescriptive procedure, is≤72 × 10-7/ DEG C,;Water-fast effect stability DW It is 1 grade, acidproof effect stability DAIt is 1 grade.
Using gas preform made of above-mentioned high-refractive and high-dispersive optical glass.
Using optical element made of above-mentioned high-refractive and high-dispersive optical glass.
Using optical instrument made of above-mentioned high-refractive and high-dispersive optical glass.
The beneficial effects of the present invention are: by reasonable component proportion, the W without containing easy coloring6+And Bi2O3, glass Degree of staining and light transmission rate are excellent, and stability is preferable, have obtained refractive index (nd) it is 1.93~2.0, Abbe number (νd) it is 30~35 High-refractive and high-dispersive optical glass.
Specific embodiment
Each component of optical glass of the present invention is described below, unless otherwise indicated, the ratio of each constituent content is It is indicated with weight %.
B2O3It is that glass network generates oxide body, is the essential component for constituting glass network, especially reflects group of the lanthanides in height In glass, B2O3It is to obtain the main component of stabilized glass.Work as B2O3When content is lower than 8%, the meltdown property of glass degenerates, resistance to Devitrification behavior is undesirable;Work as B2O3Content is higher than 20%, and design object, therefore, B is not achieved in the refractive index of glass2O3Content limit It is set to 8~20%, preferably 10~15%.
SiO2And the network generation oxide body of glass is formed, a certain amount of SiO is added2, the high temperature that can increase glass is viscous Degree, improves the devitrification resistance and chemical stability of glass.When its content is lower than 1%, the production technology performance of glass is poor;If its Content is more than 10%, then the refractive index decline of glass, devitrification resistance property are deteriorated, therefore, SiO2Content range be 1~10%, Preferably 3~6%.
La2O3It is the effective component for improving glass refraction, it is aobvious to the chemical stability and devitrification resistance effect that improve glass It writes, but when its content is less than 35%, required optical constant is not achieved;If content is higher than 50%, tendency towards devitrification increases instead, Therefore, La2O3Content be limited to 35~50%, preferably 38~46%.
Y2O3The refractive index and devitrification resistance that glass can be improved can also adjust the optical constant of glass and improve crystallization Performance, but when its content is more than 5%, devitrification resistance is obviously deteriorated, therefore, Y2O3Content be 0.1~5%, preferably 1~ 3%.
Gd2O3The refractive index and chemical stability that glass can be increased, with a certain amount of Gd2O3With La2O3Consolute, Ke Yiyou Improve the devitrification resistance property of glass in effect ground.But Gd2O3When content is lower than 7%, effect is unobvious;Work as Gd2O3Content is higher than 20% When, the devitrification resistance property of glass can instead deteriorated, therefore, Gd2O3Content be limited to 7~20%, preferably 10~16%.
The present inventor is the study found that by reasonably adjusting Y2O3、La2O3And Gd2O3Content and proportion in glass, are mentioning While high glass refraction, moreover it is possible to be obviously improved the chemical stability of glass, therefore, Y2O3/(Y2O3+La2O3+Gd2O3) excellent Choosing is less than 0.1, Y2O3/(Y2O3+La2O3+Gd2O3) more preferably less than 0.05.
ZrO2Viscosity, hardness, elasticity, refractive index and the chemical stability of optical glass can be improved, and glass can be reduced Thermal expansion coefficient.Work as ZrO2Content when being more than 10%, crystallization will occur, and reduce the devitrification resistance of glass, because This, ZrO2Content be 0~10%, preferably 4~8%.
TiO2It can make glass that there is high refractive index, but too high levels will be greatly reduced abbe number and increase crystallization and incline To, or even glass can be made obviously to colour, and therefore, TiO2Content is limited to 1~9%, preferably 5~9%.
Nb2O5It is the necessary component for obtaining high refraction and high dispersion of the invention, is also a kind of raising glass The component of chemical durability.Work as Nb2O5Content less than 3% when, design requirement is not achieved in optical constant;And when its content is more than When 12%, the devitrification resistance of glass is reduced, therefore, Nb2O5Content be limited to 3~12%, preferably 5~9%.
ZnO can reduce the thermal expansion coefficient of glass, improve chemical stability, thermal stability and the refractive index of glass, may be used also To reduce the tendency towards devitrification of glass.When the content of ZnO is more than 8%, the increased devitrification resistance of glass increases;When the content of ZnO is lower than 1% When, the transition temperature of glass increases, and therefore, the content of ZnO is limited to 1~8%, preferably 1~5%.In this glass, TiO2 With the content and proportion of ZnO, the degree of staining and light transmission rate of glass will be directly influenced, to obtain expected light transmission rate and Degree of staining, preferably TiO2/(TiO2+ ZnO) it is greater than 0.5, more preferable TiO2/(TiO2+ ZnO) it is greater than 0.7.
R2O (one or more of R Li, Na, K) can improve the stability and melting behaviour of glass, but introduce The split-phase trend of glass can mostly be aggravated, therefore, content is 0~3%, is preferably added without.
Sb2O3It is used in the present invention as clarifying agent, content is limited to 0~1%, is preferably added without.
The performance of optical glass of the invention is described below:
Density is tested according to by " GB/T 7962.20-2010 colouless optical glass test method density measurement method ".
Refractive index and Abbe number are according to " 7962.1-2010 colouless optical glass test method refractive index of GB/T and dispersion Coefficient " test.Measuring high-refractive and high-dispersive optical glass refractive index (nd) of the invention is that 1.93~2.0, Abbe number (vd) is 30~35.
The average value that thermalexpansioncoefficientα is 20~120 DEG C by the measurement temperature of method as defined in GB/T7962.16-2010.
Transmitance (being indicated below with τ 400nm) is by GB/T7962.12-2010 prescriptive procedure at 10mm thickness sample 400nm Measurement.
Water-fast effect stability DW(powder method) presses the test method of GB/T17129, calculates according to the following formula:
DW=(B-C)/(B-A) * 100
In formula: DW- glass leaches percentage (%)
The quality (g) of B-filter and sample
The quality (g) of sample after C-filter and erosion
A-filter quality (g)
By the leaching percentage being calculated, D is stablized into the water-fast effect of optical glassWBeing divided into 6 classes see the table below.
Classification 1 2 3 4 5 6
Leach percentage (DW) < 0.04 0.04-0.10 0.10-0.25 0.25-0.60 0.60-1.10 > 1.10
Acidproof effect stability DA(powder method) presses the test method of GB/T17129, calculates according to the following formula:
DA=(B-C)/(B-A) * 100
In formula: DA- glass leaches percentage (%)
The quality (g) of B-filter and sample
The quality (g) of sample after C-filter and erosion
A-filter quality (g)
By the leaching percentage being calculated, D is stablized into the acidproof effect of optical glassABeing divided into 6 classes see the table below:
Classification 1 2 3 4 5 6
Leach percentage (DA) < 0.20 0.20-0.35 0.35-0.65 0.65-1.20 1.20-2.20 > 2.20
By test, optical glass of the invention is had the following performance: refractive index (nd) is 1.93~2.0, Abbe number It (vd) is 30~35, density (ρ) is 5.20g/cm3Hereinafter, the coefficient of expansion (α)≤72 × 10-7/ DEG C, τ 400nm be 80% and with On, water-fast effect stability DW(powder method) is 1 grade, acidproof effect stability DA(powder method) is 1 grade.
The present invention also provides a kind of optical precast product and optical elements, by above-mentioned optical glass according to those skilled in the art Well known method is formed.Since the optical glass has high refractive index and high dispersion, the optical element also has High refractive index and high dispersion, can be applied to the equipment such as digital camera, digital camera, camera cell phone.
Embodiment
In order to further appreciate that technical solution of the present invention, the embodiment of optical glass of the present invention will now be described.It should It is noted that there is no limit the scope of the present invention for these embodiments.
The optical glass (Examples 1 to 3 0) shown in 1~table of table 3 is by according to each embodiment shown in 1~table of table 3 Ratio weighing and hybrid optical glass with common raw material (such as oxide, hydroxide, carbonate, nitrate), will mix Raw material is placed in platinum crucible, is melted in certain temperature, and after fusing, clarification, stirring and homogenizing, is not had Bubble and homogeneous melt glass without undissolved substance casting mold and anneal this melten glass in mold.
The composition and refractive index (nd), Abbe number (vd), density (ρ), the coefficient of expansion (α), τ of the embodiment of the present invention 1~30 The result of 400nm indicates in 1~table of table 3 together.In these tables, the composition of each component is indicated with weight %.
Table 1
Table 2
Table 3
As can be seen from the above embodiments, the refractive index (nd) of optical glass of the present invention is 1.93~2.0, Abbe number (vd) It is 30~35, density (ρ) is 5.20g/cm3Hereinafter, the coefficient of expansion (α)≤72 × 10-7/ DEG C, τ 400nm is 80% or more, resistance to Water acts on stability DW(powder method) is 1 grade, acidproof effect stability DA(powder method) is 1 grade, suitable for being widely used in digital photograph In the equipment such as camera, DV and camera mobile phone.

Claims (11)

1. high-refractive and high-dispersive optical glass, which is characterized in that its composition includes by weight percentage: SiO2: 1~10%, B2O3: 8~20%, La2O3: 35~50%, Y2O3: 0.1~5%, Gd2O3: 10~20%, TiO2: 1~9%, Nb2O5: 3~ 12%, ZnO:1~8%, ZrO2: 0~10%, TiO2/(TiO2+ ZnO) it is greater than 0.61.
2. high-refractive and high-dispersive optical glass as described in claim 1, which is characterized in that also contain: Sb2O3: 0~1%, R2O:0~3%, wherein one or more of R Li, Na, K are measured, 10mm by GB/T7962.12-2010 prescriptive procedure Transmitance is 80% or more at thick sample 400nm.
3. high-refractive and high-dispersive optical glass, which is characterized in that it is formed by weight percentage are as follows: SiO2: 1~10%, B2O3: 8 ~20%, La2O3: 35~50%, Y2O3: 0.1~5%, Gd2O3: 10~20%, ZrO2: 0~10%, TiO2: 1~9%, Nb2O5: 3~12%, ZnO:1~8%, Sb2O3: 0~1%, R2O:0~3%, TiO2/(TiO2+ ZnO) it is greater than 0.61, wherein R For one or more of Li, Na, K.
4. the high-refractive and high-dispersive optical glass as described in claims 1 to 3 any claim, it is characterised in that: Y2O3/ (Y2O3+La2O3+Gd2O3) less than 0.1.
5. the high-refractive and high-dispersive optical glass as described in claims 1 to 3 any claim, which is characterized in that wherein: SiO2: 3~6%;And/or B2O3: 10~15%;And/or La2O3: 38~46%;And/or Y2O3: 1~3%;And/or Gd2O3: 10~16%;And/or ZrO2: 4~8%;And/or TiO2: 5~9%;And/or Nb2O5: 5~9%;And/or ZnO:1~5%.
6. the high-refractive and high-dispersive optical glass as described in claims 1 to 3 any claim, it is characterised in that: TiO2/ (TiO2+ ZnO) it is greater than 0.7;And/or Y2O3/(Y2O3+La2O3+Gd2O3) less than 0.05.
7. the high-refractive and high-dispersive optical glass as described in claims 1 to 3 any claim, it is characterised in that: the light Learning glass refraction is 1.93~2.0, and Abbe number is 30~35.
8. the high-refractive and high-dispersive optical glass as described in claims 1 to 3 any claim, it is characterised in that: the light The density for learning glass is measured by GB/T7962.20-2010 prescriptive procedure, is 5.20g/cm3Below;The coefficient of expansion presses GB/ The measurement of T7962.16-2010 prescriptive procedure is≤72 × 10-7/℃;Water-fast effect stability DWIt is 1 grade, acidproof effect stability DAIt is 1 grade;It is measured by GB/T7962.12-2010 prescriptive procedure, interior transmitance is 80% or more at 10mm thickness sample 400nm.
9. using prefabricated glass made of high-refractive and high-dispersive optical glass described in any claim in claim 1~8 Part.
10. using the member of optics made of high-refractive and high-dispersive optical glass described in any claim in claim 1~8 Part.
11. using optics instrument made of high-refractive and high-dispersive optical glass described in any claim in claim 1~8 Device.
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CN109250903B (en) * 2018-08-17 2022-02-18 成都光明光电股份有限公司 Optical glass, glass preform, optical element and optical instrument having the same
CN109250902B (en) * 2018-08-17 2022-02-18 成都光明光电股份有限公司 Optical glass, glass preform, optical element and optical instrument having the same
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CN115304274A (en) * 2022-08-26 2022-11-08 成都光明光电股份有限公司 High-refraction high-dispersion optical glass

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