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    • 1. 发明专利
    • Laminated glass
    • 层压玻璃
    • JP2006056751A
    • 2006-03-02
    • JP2004241169
    • 2004-08-20
    • Asahi Glass Co Ltd旭硝子株式会社
    • GUNJI FUMIAKIKUEDA KATSUMI
    • C03C27/12
    • PROBLEM TO BE SOLVED: To expose an electrode connected to an electric wire sealed between a pair of glass plates for laminated glass without preparing an excessively large notch.
      SOLUTION: An interlayer 15 exists between an outer glass plate 12 and an inner glass plate 14 constituting the laminated glass 10. The interlayer 15 has a first interlayer 16a joining to the outer glass plate 12, a second interlayer 16b joining to the inner glass plate 14 and a film layer 18 existing between the first interlayer 16a and the second interlayer 16b which are physically separated. A heating wire 20 is printed on the film layer 18. A projected part 18a where an electrode 22 connected to the heating wire 20 is printed is projected outside a little from the outer faces of the glass plates 12, 14 on the film layer 18. The projected part 18a is turned from the space between the glass plates 12, 14 to the inside of a vehicle at the inner glass plate 14 and then the electrode 22 is exposed to the inside of the vehicle at the inner glass plate 14.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了露出连接到密封在一对夹层玻璃的玻璃板之间的电线的电极,而不必制备过大的切口。 解决方案:在构成夹层玻璃10的外玻璃板12和内玻璃板14之间存在中间层15.中间层15具有接合到外玻璃板12的第一中间层16a, 内玻璃板14和存在于物理分离的第一中间层16a和第二中间层16b之间的膜层18。 加热线20被印刷在薄膜层18上。连接在加热线20上的电极22的突出部分18a从薄膜层18上的玻璃板12,14的外表面向外突出。 突出部分18a从玻璃板12,14之间的空间转向内玻璃板14上的车辆内部,然后电极22在内玻璃板14处暴露于车辆内部。

      版权所有(C)2006,JPO&NCIPI

    • 7. 发明专利
    • ELECTRICAL HEATING GLASS AND ITS PRODUCTION
    • JP2001048602A
    • 2001-02-20
    • JP23006799
    • 1999-08-16
    • ASAHI GLASS CO LTD
    • NODA KAZUYOSHIGUNJI FUMIAKI
    • C03C27/12B32B17/10
    • PROBLEM TO BE SOLVED: To make it possible to easily form heating glass by forming a transparent conductive film over the entire surface of a glass sheet, providing an insulative colored ceramic layer to a belt shape on the transparent conductive film and in the peripheral parts of the transparent conductive film, forming a pair of bus bars on the transparent conductive film and the insulative colored ceramic layer and disposing the bus bars so as to face each other with the transparent conductive film in-between. SOLUTION: At least a pair of the bus bars 11 and 12 are respectively directly connected to the transparent conductive film 15 and energizing parts B for the bus bars for energizing the transparent conductive film 15 are formed as a pair on two sides facing each other on the transparent conductive film 15. Wiring parts C of the bus bars which are wiring to connect the energizing parts B of the respective bus bars and terminal parts 16 are disposed on the insulative colored ceramic layer 14. A transparent conductive film which allows a heat treatment particularly to withstand a heat treatment of 600 to 700 deg.C is preferably used as the transparent conductive film. A polyvinyl butyral resin film improved in various properties, such as adhesiveness, weatherability and heat resistance, is preferably used for the intermediate film.
    • 10. 发明专利
    • PRODUCTION OF LOW REFLECTION ANTISTATIC FILM AND LOW REFLECTION ANTISTATIC FILM
    • JPH0580205A
    • 1993-04-02
    • JP26716491
    • 1991-09-18
    • ASAHI GLASS CO LTD
    • GUNJI FUMIAKIABE KEISUKEMORIMOTO TAKESHITAKEMIYA SATOSHIKAWASATO TAKESHIKUBOTA KEIKOHIRATSUKA KAZUYA
    • G02B1/11G02B1/10H01J9/20
    • PURPOSE:To obtain the low reflection antistatic film which is strong and has an excellent long-term preservable property with good productivity at a low-temp. heat treatment by providing a stage for applying a coating liquid contg. a conductive oxide and a Ti compd., then irradiating the coating with UV rays in the production process of high-refractive index films having an electrical conductivity. CONSTITUTION:The value approximate to 1.23 as far as possible is preferably selected as the refractive index ratio between the high-refractive index films on a substrate side and the low-refractive index films on a medium side in order to satisfy the low reflection conditions of the low reflection antistatic film having respectively at least one layers of the high-refractive index films and low-refractive index films having the electrical conductivity. The refractive index of the high-refractive index films to be provided on the base body side is set at >=1.60 and the low-refractive index films are formed thereon. The coating liquid is, therefore, prepd. by adding a soln. contg. a Ti salt to a soln. dispersed with the grains of conductive tin oxide. A silicon compd. is added to the films in order to improve the adhesive strength and hardness of the films. The high-refractive index films having the electrical conductivity are formed by irradiating the films with the UV rays. The low-refractive index films consisting of a silicon compd. are then formed.