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    • 1. 发明授权
    • Laminated glass, and method for producing same
    • 层压玻璃及其制造方法
    • US08357451B2
    • 2013-01-22
    • US13531855
    • 2012-06-25
    • Yuichi Hino
    • Yuichi Hino
    • C03C27/12B32B17/10
    • B32B17/10174B32B17/10036B32B17/10761B32B17/10871Y10T428/26Y10T428/265Y10T428/269Y10T428/31616Y10T428/31627Y10T428/3163B32B17/10B32B2367/00
    • The present invention relates to a laminated glass including a first glass substrate, a first adhesive layer, a heat reflective film, a second adhesive layer and a second glass substrate, laminated in this order, in which the heat reflective film includes a resin film having specific thermal shrinkages in a direction that a thermal shrinkage becomes maximum and in a direction orthogonal to the direction, and a heat reflective coating formed on the resin film; the first adhesive layer and the second adhesive layer include a polyvinyl butyral film having thermal shrinkages in a direction that a thermal shrinkage becomes maximum and in a direction orthogonal to the direction; and the direction that a thermal shrinkage becomes maximum, of the resin film and the direction that a thermal shrinkage becomes maximum, of the polyvinyl butyral film are orthogonal to each other.
    • 本发明涉及包括第一玻璃基板,第一粘合层,热反射膜,第二粘合层和第二玻璃基板的夹层玻璃,其中热反射膜包括具有 在热收缩变得最大的方向和与该方向正交的方向上的特定的热收缩和在树脂膜上形成的热反射涂层; 第一粘合剂层和第二粘合剂层包括热收缩率最大的方向和与该方向正交的方向具有热收缩性的聚乙烯醇缩丁醛膜; 并且聚乙烯醇缩丁醛膜的树脂膜的热收缩变得最大的方向和热收缩变得最大的方向彼此正交。
    • 3. 发明申请
    • ELECTROCONDUCTIVE LAMINATE
    • 电极层压板
    • US20100171406A1
    • 2010-07-08
    • US12726905
    • 2010-03-18
    • Masayuki MorinoKazuya TakemotoHideaki MiyazawaMichihisa TomidaTamotsu MorimotoYuichi Hino
    • Masayuki MorinoKazuya TakemotoHideaki MiyazawaMichihisa TomidaTamotsu MorimotoYuichi Hino
    • H01K1/26B32B15/04B32B5/00B32B37/02H05K9/00
    • H05K9/0088Y10T428/26Y10T428/31678
    • To provide an electroconductive laminate which has a broad transmission/reflection band and which is excellent in electrical conductivity (electromagnetic wave shielding properties), visible light transmittance, visible light antireflection properties, near infrared shielding properties and moisture resistance, and an electromagnetic wave shield for a plasma display employing such a laminate.An electroconductive laminate 20 comprising a substrate 21 and an electroconductive film 22 formed on the substrate 21, wherein the electroconductive film 22 has a multilayer structure having a high refractive index layer (23a to 23e) and a metal layer (24a to 24d) alternately laminated in this order from the substrate side in a total number of 2n+1 layers (wherein n is an integer of from 1 to 12) and further having a hydrogenated carbon layer 25 at a position most removed from the substrate 21; the refractive index of the high refractive index layer (23a to 23e) is from 1.5 to 2.7; the hydrogenated carbon layer 25 contains carbon atoms and hydrogen atoms; and the content of hydrogen atoms in the hydrogenated carbon layer is from 9 to 50 atomic %.
    • 为了提供具有宽的透射/反射带并且导电性(电磁波屏蔽性),可见光透射率,可见光抗反射性,近红外屏蔽性和耐湿性优异的导电性层叠体,以及电磁波屏蔽 使用这种层压体的等离子体显示器。 一种导电层压体20,其包括基板21和形成在基板21上的导电膜22,其中导电膜22具有交替层叠的具有高折射率层(23a至23e)和金属层(24a至24d)的多层结构 从基板侧依次以2n + 1层的总数(其中n为1〜12的整数),并且在与基板21最相似的位置处还具有氢化碳层25; 高折射率层(23a〜23e)的折射率为1.5〜2.7; 氢化碳层25含有碳原子和氢原子; 氢化碳层中氢原子的含量为9〜50原子%。
    • 5. 发明授权
    • Heavy oil emulsified fuel combustion equipment
    • 重油乳化燃料燃烧设备
    • US5816790A
    • 1998-10-06
    • US690104
    • 1996-07-31
    • Toshimitsu IchinoseKimishiro TokudaAkio HirakiYuichi HinoKan OgataTsutomu HashimotoShozo Kaneko
    • Toshimitsu IchinoseKimishiro TokudaAkio HirakiYuichi HinoKan OgataTsutomu HashimotoShozo Kaneko
    • F23K5/08F23K5/20F23K5/22F23J7/00
    • F23K5/22F23K5/08F23K5/20
    • A heavy oil emulsified fuel combustion furnace is provided which prevents lowering of combustion efficiency due to water content in the fuel as well as prevents elevation of sulfuric acid dew point due to water content in the flue gas of the combustion furnace. In the apparatus a heavy oil emulsified fuel (102) is heated by a heater (110) using a heat pipe etc. and then is separated by a water vaporizer (120) into heavy oil (122) and vapor (121) consisting of steam and a light oil combustible gas. The heavy oil (122) is supplied to a burner port of the combustion furnace, such as a boiler etc. The vapor (121) is condensed by a condenser (140) to produce liquid (141) comprising a mixture of water and light oil. The liquid (141) is separated by an oily water separator (150) into oil (151) and water (152). The oil (151) is used as a fuel for an igniting torch of the combustion furnace 10 and the water (152) is used partially as cooling water (41) for an SO.sub.X removal apparatus (40) and partially as an atomizing steam 9 or a soot blowing steam 8 in the boiler, etc.
    • 提供了一种重油乳化燃料燃烧炉,其防止由于燃料中的水分而导致的燃烧效率降低,并且防止由于燃烧炉的烟道气中的水分含量导致的硫酸露点升高。 在装置中,重油乳化燃料(102)由加热器(110)使用热管等加热,然后由水蒸发器(120)分离成重油(122)和由蒸汽组成的蒸气(121) 和轻油可燃气体。 将重油(122)供应到燃烧炉的燃烧器端口,例如锅炉等。蒸汽(121)由冷凝器(140)冷凝以产生包含水和轻油的混合物的液体(141) 。 液体(141)被油性水分离器(150)分离成油(151)和水(152)。 油(151)用作燃烧炉10的点火炬的燃料,水(152)被部分地用作SO x去除装置(40)的冷却水(41),部分地用作雾化蒸汽9或 在锅炉中吹8蒸汽的烟灰等