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    • 2. 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。
    • 4. 发明授权
    • Plasma display panel with superior light-emitting characteristics, and method and apparatus for producing the plasma display panel
    • 具有优异发光特性的等离子体显示面板,以及用于制造等离子体显示面板的方法和装置
    • US07131879B2
    • 2006-11-07
    • US10943374
    • 2004-09-17
    • Hiroyuki KadoMitsuhiro OhtaniMasaki AokiKanako Miyashita
    • Hiroyuki KadoMitsuhiro OhtaniMasaki AokiKanako Miyashita
    • H01J9/44
    • H01J9/38H01J9/241H01J9/261H01J9/385H01J11/12H01J11/36H01J11/42H01J11/48H01J11/54H01J2211/48
    • A PDP with superior light-emitting characteristics and color reproduction is achieved by setting the chromaticity coordinate y (the CIE color specification) of light to 0.08 or less, more preferably to 0.07 or less, or 0.06 or less, enabling the color temperature of light to be set to 7,000K or more, and further to 8,000K or more, 9,000K or more, or 10,000K or more. The PDP is manufactured by a method in which the processes for heating the fluorescent substances such as the fluorescent substance baking, sealing material temporary baking, bonding, and exhausting processes are performed in the dry gas atmosphere, or in an atmosphere in which a dry gas is circulated at a pressure lower than the atmospheric pressure. This PDP is also manufactured by: a method in which after the front and back panels are bonded together, the exhausting process for exhausting gas from the inner space between panels is started while the panels are not cooled to room temperature; or a method in which after the front and back panels are temporarily baked, the process for bonding the panels is started while the panels are not cooled to room temperature. This reduces the time and energy required for heating, resulting in reduction of manufacturing cost.
    • 通过将光的色度坐标y(CIE颜色规格)设定为0.08以下,更优选为0.07以下或0.06以下,能够实现具有优异的发光特性和色彩再现的PDP,能够实现光的色温 设定为7000K以上,进一步为8,000K以上,9000K以上,10,000K以上。 PDP的制造方法是,在干燥气体气氛中,或在干燥气体的气氛中进行荧光物质烘焙,密封材料的暂时烘烤,粘合,排出等荧光物质的加热处理 在低于大气压的压力下循环。 该PDP也通过以下方法制造:其中在前面板和后面板结合在一起之后,在面板未冷却至室温的同时开始从面板之间的内部空间排出气体的排气过程; 或者在将前面板和后面板暂时烘烤之后,在面板未冷却至室温的同时开始接合面板的工序。 这减少了加热所需的时间和能量,从而降低制造成本。
    • 8. 发明授权
    • Plasma display panel
    • 等离子显示面板
    • US06603448B2
    • 2003-08-05
    • US09734509
    • 2000-12-11
    • Hiroyuki KadoKanako Miyashita
    • Hiroyuki KadoKanako Miyashita
    • G09G328
    • H01J11/12H01J11/42
    • A PDP that can maintain favorable color balance is provided. In the PDP which is equipped with back phosphor layers of the three colors red, green, and blue in a back panel, front phosphor layers are provided in a front panel respectively in opposition to back phosphor layers other than the back phosphor layer whose luminance degrades fastest with time among the red, green, and blue back phosphor layers. These front phosphor layers are prone to luminance deterioration caused by ultraviolet radiation or ion bombardment, and therefore accelerate the luminance degradation speeds of their opposite back phosphor layers. Accordingly, the luminance of light emitted from each of the two combinations of the front and back phosphor layers is brought to be more balanced with the luminance of light emitted from the back phosphor layer with the highest luminance degradation speed. Hence the PDP can maintain favorable color balance over a long time.
    • 提供了可以保持良好的色平衡的PDP。 在后面板中配备有红色,绿色,蓝色三种背面荧光体层的PDP中,前面板分别与背面荧光体层相反地设置有前面板,背面荧光体层的背面荧光体层的亮度劣化 在红色,绿色和蓝色背面荧光体层中时间最快。 这些前面的荧光体层容易发生由紫外线或离子轰击引起的亮度劣化,因此加速了相对的背面荧光体层的亮度劣化速度。 因此,从背面荧光体层的两个组合中的每一个发射的光的亮度与从具有最高亮度劣化速度的背面荧光体层发射的光的亮度更加平衡。 因此,PDP可以长时间保持良好的色彩平衡。