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    • 92. 发明授权
    • Method and apparatus for producing a plasma display
    • 用于制造等离子体显示器的方法和装置
    • US07455879B2
    • 2008-11-25
    • US09125128
    • 1997-12-16
    • Yuichiro IguchiMasahiro MatsumotoYuko MikamiTakaki MasakiTakao SanoYoshiyuki KitamuraYoshinori TaniHideki Ikeuchi
    • Yuichiro IguchiMasahiro MatsumotoYuko MikamiTakaki MasakiTakao SanoYoshiyuki KitamuraYoshinori TaniHideki Ikeuchi
    • B05D5/06B05C5/00
    • H01J9/227H01J2211/42
    • A method for producing a plasma display comprises the step of continuously applying a phosphor paste containing a phosphor powder and an organic compound onto a substrate with a plurality of barrier ribs, from a paste applicator with a plurality of outlet holes. A method for producing a plasma display comprises the steps of coating a substrate with a plurality of baffler ribs, with three phosphor pastes respectively containing a phosphor powder emitting light of red, green or blue, as stripes in the spaces between the respectively adjacent baffler ribs on the substrate, from a paste applicator with outlet holes, and heating to form a phosphor layer. An apparatus for producing a plasma display comprises a table for fixing a substrate with a plurality of baffler ribs, a paste applicator with a plurality of outlet holes to face the baffler ribs of the substrate, a supply means for supplying a phosphor paste to the paste applicator, and a moving means for three-dimensionally moving the table and the paste applicator relatively each other.
    • 一种等离子体显示器的制造方法,包括从具有多个出口孔的糊剂涂布器将含有荧光体粉末和有机化合物的荧光体浆料连续地涂布在具有多个隔壁的基板上的工序。 一种等离子体显示器的制造方法,其特征在于,具有多个隔壁用基板涂布的三个荧光体浆料分别含有发出红色,绿色或蓝色的光的荧光体粉末作为相邻的隔壁之间的间隔的条纹 在具有出口孔的糊状涂布器的基板上,并且加热以形成荧光体层。 一种等离子体显示器的制造装置,其特征在于,具有用于固定具有多个隔壁的基板的台,具有多个出口孔的糊状涂布器,与所述基板的隔壁相对,供给上述浆料的供给单元 涂抹器,以及用于相对于彼此三维地移动桌子和糊料涂抹器的移动装置。
    • 96. 发明申请
    • GLOW-IN-THE-DARK GAZING GLOBES AND OTHER ORNAMENTS, PARTICULARLY FOR GARDENS
    • GLOW-IN-THE-DARK加热球及其他装置,特别适用于花园
    • US20080026164A1
    • 2008-01-31
    • US11834320
    • 2007-08-06
    • Richard Cohen
    • Richard Cohen
    • B44F7/00H01J9/227
    • B44C5/00B44F1/06B44F1/14H01J9/227
    • A method of fabricating glow-in-the-dark gazing globes or other objects, as well as the articles that result. The method comprises the steps of providing a hollow form having an inner wall made from a transparent or translucent material, the form including an aperture for gaining access to the interior thereof, and introducing one more photoluminescence or phosphorescent pigments into the form through the aperture so that they cling to the inner wall. In alternative embodiments, the pigments may be applied without an adhesive, as by naturally cling, vacuum evaporation, or other techniques. In a gazing globe embodiment, a stand may be included. In the preferred embodiment the method further includes the step of applying an adhesive to the inner wall of the form prior to the step of introducing one more photoluminescence or phosphorescent pigments. A plurality of different pigments may be introduced into the form to create a decorative or swirling effect.
    • 一种制造在黑暗中凝视的地球仪或其他物体的方法,以及产生的物品。 该方法包括提供具有由透明或半透明材料制成的内壁的中空形状的步骤,该形式包括用于进入其内部的孔,并且通过孔将多个光致发光或磷光颜料引入该形式 他们坚持内墙。 在替代实施方案中,可以不经粘合剂施用颜料,如通过天然粘附,真空蒸发或其它技术。 在注视球体实施例中,可以包括支架。 在优选的实施方案中,该方法还包括在引入另一种光致发光或磷光颜料的步骤之前,将粘合剂施加到形式的内壁的步骤。 可以将多种不同的颜料引入到形式中以产生装饰或旋转效果。
    • 98. 发明授权
    • Plasma display panel manufacturing method for manufacturing a plasma display panel with superior picture quality, a manufacturing apparatus, and a phosphor ink
    • 一种等离子显示面板制造方法,用于制造具有优异图像质量的等离子体显示面板,制造装置和荧光体油墨
    • US07140940B2
    • 2006-11-28
    • US10273599
    • 2002-10-18
    • Hiroyuki KawamuraShigeo SuzukiMasaki AokiKanako MiyashitaMitsuhiro OhtaniHiroyuki KadoKeisuke SumidaNobuyuki Kirihara
    • Hiroyuki KawamuraShigeo SuzukiMasaki AokiKanako MiyashitaMitsuhiro OhtaniHiroyuki KadoKeisuke SumidaNobuyuki Kirihara
    • H01J17/49H01J9/00B05D5/06B05D5/12
    • H01J9/227H01J2211/42
    • The present invention intends to provide a manufacturing method for a PDP that can continuously apply phosphor ink for a long time and can accurately and evenly produce phosphor layers even when the cell construction is very fine. To do so, phosphor ink is continuously expelled from a nozzle while the nozzle moves relative to channels between partition walls formed on a plate so as to scan and apply phosphor ink to the channels. While doing so the path taken by the nozzle within each channel between a pair of partition walls is adjusted based on position information for the channel. When phosphor particles is successively applied to a plurality of channels, phosphor ink is continuously expelled from the nozzle even when the nozzle is positioned away from the channels. The phosphor ink is composed of: phosphor particles that have an average particle diameter of 0.5 to 5 μm; a mixed solvent in which materials selected from a group consisting of terpineol, butyl carbitol acetate, butyl carbitol, pentandiol, and limonene are mixed; and a binder that is an ethylene group polymer or ethyl cellulose containing at least 49% of ethoxy group (—OC2H5) cellulose molecules. After dispersion a charge-removing material is added to the phosphor ink.
    • 本发明旨在提供一种能够长时间连续施加荧光体油墨的PDP的制造方法,即使在电池结构非常细的情况下也能够准确均匀地制造荧光体层。 为了这样做,当喷嘴相对于形成在板上的隔壁之间的通道移动时,荧光体墨水从喷嘴连续排出,以便扫描并将磷光体墨施加到通道。 在这样做时,基于通道的位置信息来调整在一对分隔壁之间的每个通道内的喷嘴所采取的路径。 当荧光体颗粒连续地施加到多个通道时,即使喷嘴远离通道定位,荧光体墨也从喷嘴连续排出。 荧光体墨水由平均粒径为0.5〜5μm的荧光体粒子构成, 将选自萜品醇,丁基卡必醇乙酸酯,丁基卡必醇,戊二醇和柠檬烯的材料混合的混合溶剂; 和作为乙烯基聚合物或乙基纤维素的粘合剂,其含有至少49%的乙氧基(-OC 2 H 5 H 5)纤维素分子。 分散后,将电荷去除材料添加到荧光体油墨中。