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公开(公告)号:US20200247712A1
公开(公告)日:2020-08-06
申请号:US16853023
申请日:2020-04-20
Applicant: AGC INC.
Inventor: Shinichi AMMA , Tatsuo NAGASHIMA
Abstract: An optical glass has a refractive index (nd) of 1.55 or more. A difference (Tf−Tg) between a fictive temperature (Tf) and a glass transition temperature (Tg) of the optical glass is 0° C. or more. The optical glass may have a crack initiation load L of 350 mN or more.
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公开(公告)号:US20230228925A1
公开(公告)日:2023-07-20
申请号:US18125067
申请日:2023-03-22
Applicant: AGC Inc.
Inventor: Yoji YASUI , Kazunobu MAESHIGE , Takahiro MASHIMO , Takuji OYAMA , Nobutaka AOMINE , Tatsuo NAGASHIMA , Mitsuyoshi KOBAYASHI
CPC classification number: G02B5/208 , B60R11/00 , C23C14/35 , C23C14/087 , C23C14/085 , C23C14/083 , C23C14/081 , C23C16/50 , C23C16/26 , C23C14/185 , G02B1/14
Abstract: To appropriately transmit far-infrared rays while ensuring design. A far-infrared ray transmission member (20) includes a base material (30) configured to transmit far-infrared rays, and a functional film (31) formed on the base material (30). Dispersion of reflectances with respect to pieces of light at a wavelength of 360 nm to 830 nm in increments of 1 nm is equal to or smaller than 30, a reflectance with respect to visible light defined by JIS R3106 is equal to or lower than 25%, and an average transmittance with respect to light at a wavelength of 8 μm to 12 μm is equal to or higher than 50%.
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公开(公告)号:US20220289121A1
公开(公告)日:2022-09-15
申请号:US17804929
申请日:2022-06-01
Applicant: AGC Inc.
Inventor: Tatsuo NAGASHIMA , Yutaka KITAJIMA
Abstract: Glass (1) for vehicles includes a light blocking region (A2) in which a far-infrared ray transmission region (B) provided with an opening and a far-infrared ray transmission member arranged in the opening, and a visible light transmission region (C) transmitting visible light are formed. The opening is formed between an upper edge part (1a) of the glass (1) and a first position (P1) in a first direction from the upper edge part (1a) toward a lower edge part (1b) of the glass (1), the first position (P1) is a position at which a distance from the upper edge part (1a) is 30% of a length from the upper edge part (1a) to the lower edge part (1b), and between a second position (P2) and a third position (P3) in a second direction from a side edge part (1c) toward a side edge part (1d) of the glass (1) for vehicles. A length (L2a) in the second direction from the second position (P2) to the third position (P3) is 55% of a length (L2) from the side edge part (1c) to the side edge part (1d), and a length of the longest straight line among straight lines connecting optional two points within a surface on a vehicle exterior side is equal to or smaller than 80 mm.
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公开(公告)号:US20240323550A1
公开(公告)日:2024-09-26
申请号:US18679776
申请日:2024-05-31
Applicant: AGC Inc.
Inventor: Tatsuo NAGASHIMA , Kenji KITAOKA
IPC: H04N23/90 , B60J1/02 , B60R11/00 , B60R11/04 , C03C3/078 , C03C4/10 , C03C17/36 , G02B1/115 , G02B1/14 , H04N13/239 , H04N23/54 , H04N23/56
CPC classification number: H04N23/90 , B60J1/02 , C03C3/078 , C03C4/10 , C03C17/3621 , C03C17/3628 , C03C17/3634 , C03C17/3649 , H04N13/239 , H04N23/54 , H04N23/56 , B60R2011/0026 , B60R11/04 , C03C2217/268 , C03C2217/285 , C03C2217/288 , C03C2217/73 , C03C2218/15 , G02B1/115 , G02B1/14
Abstract: The present invention aims to provide a vehicular exterior member that is excellent in strength and cost, and sufficiently ensures a viewing field of sharpness of a thermal image obtained by a far-infrared camera. A vehicular exterior member that includes a light blocking region and is configured to be attached to a vehicle equipped with a far-infrared camera. The vehicular exterior member further includes, in the light blocking region, a far-infrared ray transmitting region having an opening and a far-infrared ray transmitting member disposed in the opening. An average transmittance of far-infrared rays having a wavelength ranging from 8 to 13 μm of the far-infrared ray transmitting member is equal to or larger than 25%. A length of the longest straight line in straight lines connecting any desired two points on a surface on a vehicle exterior side of the far-infrared ray transmitting member is equal to or smaller than 80 mm. A diameter of the largest circle in circles formed in a projected shape obtained by projecting the far-infrared ray transmitting member in an optical axis direction of the far-infrared camera is equal to or larger than 12 mm. An average thickness of the far-infrared ray transmitting member is equal to or larger than 1.5 mm.
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公开(公告)号:US20200325063A1
公开(公告)日:2020-10-15
申请号:US16868743
申请日:2020-05-07
Applicant: AGC Inc.
Inventor: Shinichi AMMA , Tatsuo NAGASHIMA
Abstract: To provide optical glass having high refractive index and low density and having favorable production properties.An optical glass having refractive index (nd) of from 1.71 to 2.00, density of at most 5.0 g/cm3, a temperature at which the viscosity of the glass is log η=2 of from 750 to 1,200° C. and devitrification temperature of at most 1,300° C., and containing from 0% to 21.5% of TiO2 as represented by mol % based on oxides. The optical glass has high refractive index and low density, has favorable production properties, and is suitable as an optical member for wearable devices, for vehicles, for robots, etc.
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公开(公告)号:US20240094539A1
公开(公告)日:2024-03-21
申请号:US18388794
申请日:2023-11-10
Applicant: AGC Inc.
Inventor: Shinichi AMMA , Tatsuo NAGASHIMA
CPC classification number: G02B27/0172 , G02C7/104
Abstract: The present invention relates to an optical glass having refractive index of 1.55 or more and having chromaticity b* that satisfies b*≥4.8 under A light source in a CIELab representation. The present invention also relates to an optical glass having refractive index of 1.55 or more, having a ratio (b*/|a*|) of chromaticity b* to an absolute value of chromaticity a* that satisfies b*|a*|≥0.55 under A light source in a CIELab representation, and satisfying b*≥0.1.
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公开(公告)号:US20230347718A1
公开(公告)日:2023-11-02
申请号:US18217472
申请日:2023-06-30
Applicant: AGC Inc.
Inventor: Tatsuo NAGASHIMA , Mitsuyoshi KOBAYASHI , Yoji YASUI , Kenji KITAOKA
Abstract: A decrease in the detection accuracy of infrared rays is suppressed. Vehicle glass includes a light shielding region in which a far-infrared ray transmitting region is formed, the far-infrared ray transmitting region including an opening and a far-infrared ray transmitting member (20) disposed in the opening. In the far-infrared ray transmitting member (20), the average transmittance of far-infrared rays having wavelengths of 8 μm to 13 μm at a first position (P1) in a case where the far-infrared rays are emitted in a direction perpendicular to a surface (20a) on a vehicle exterior side is different from the average transmittance of the far-infrared rays having wavelengths of 8 μm to 13 μm at a second position (P2) that is lower than the first position (P1) in the vertical direction in a case where the vehicle glass is mounted to a vehicle.
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公开(公告)号:US20220132047A1
公开(公告)日:2022-04-28
申请号:US17647193
申请日:2022-01-06
Applicant: AGC Inc.
Inventor: Tatsuo NAGASHIMA , Kenji KITAOKA
Abstract: The present invention aims to provide a vehicular exterior member that is excellent in strength and cost, and sufficiently ensures a viewing field of sharpness of a thermal image obtained by a far-infrared camera. A vehicular exterior member that includes a light blocking region and is configured to be attached to a vehicle equipped with a far-infrared camera. The vehicular exterior member further includes, in the light blocking region, a far-infrared ray transmitting region having an opening and a far-infrared ray transmitting member disposed in the opening. An average transmittance of far-infrared rays having a wavelength ranging from 8 to 13 μm of the far-infrared ray transmitting member is equal to or larger than 25%. A length of the longest straight line in straight lines connecting any desired two points on a surface on a vehicle exterior side of the far-infrared ray transmitting member is equal to or smaller than 80 mm. A diameter of the largest circle in circles formed in a projected shape obtained by projecting the far-infrared ray transmitting member in an optical axis direction of the far-infrared camera is equal to or larger than 12 mm. An average thickness of the far-infrared ray transmitting member is equal to or larger than 1.5 mm.
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公开(公告)号:US20210132273A1
公开(公告)日:2021-05-06
申请号:US17145536
申请日:2021-01-11
Applicant: AGC Inc.
Inventor: Hiroyuki YAMAMOTO , Takahiro MASHIMO , Takuji OYAMA , Shinya TAHARA , Tatsuo NAGASHIMA
Abstract: An optical member includes a transparent substrate containing at least one substance selected from glass, a glass ceramic, silicon, and sapphire, and having an infrared high-transmittance region in which an optical transmittance is 78% or more in a wavelength band of 700 nm to 1800 nm; and an optical interference film disposed on a main surface of the transparent substrate corresponding to the infrared high-transmittance region, wherein a transmittance of light, of the optical member, of at least one wavelength λ3 in the wavelength band of 700 nm to 1800 nm in a region of the optical member corresponding to the infrared high-transmittance region of the transparent substrate has a minimum value of 86.5% or more and has a difference between the minimum value and a maximum value of 9% or less in a range where an incidence angle is from 0 degrees to 60 degrees.
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公开(公告)号:US20250083616A1
公开(公告)日:2025-03-13
申请号:US18960167
申请日:2024-11-26
Applicant: AGC Inc.
Inventor: Tatsuo NAGASHIMA , Yutaka KITAJIMA
Abstract: Glass (1) for vehicles includes a light blocking region (A2) in which a far-infrared ray transmission region (B) provided with an opening and a far-infrared ray transmission member arranged in the opening, and a visible light transmission region (C) transmitting visible light are formed. The opening is formed between an upper edge part (1a) of the glass (1) and a first position (P1) in a first direction from the upper edge part (1a) toward a lower edge part (1b) of the glass (1), the first position (P1) is a position at which a distance from the upper edge part (1a) is 30% of a length from the upper edge part (1a) to the lower edge part (1b), and between a second position (P2) and a third position (P3) in a second direction from a side edge part (1c) toward a side edge part (1d) of the glass (1) for vehicles. A length (L2a) in the second direction from the second position (P2) to the third position (P3) is 55% of a length (L2) from the side edge part (1c) to the side edge part (1d), and a length of the longest straight line among straight lines connecting optional two points within a surface on a vehicle exterior side is equal to or smaller than 80 mm.
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