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    • 11. 发明申请
    • Manufacturing method of liquid crystal display device
    • 液晶显示装置的制造方法
    • US20090040452A1
    • 2009-02-12
    • US12221875
    • 2008-08-07
    • Setsuo KobayashiHiroaki MiwaKatsuhiko IshiiTakashi Yamamoto
    • Setsuo KobayashiHiroaki MiwaKatsuhiko IshiiTakashi Yamamoto
    • G02F1/1339
    • G02F1/1341
    • The present disclosure relates to a manufacturing method of a liquid crystal display device. In one aspect, the method may include laminating two or more multipiece boards to each other by way of a sealing material, applying surface polishing to at least one of the multipiece boards using an etchant, and separating the multipiece boards into respective liquid crystal cells by cutting. In further aspects, the sealing material may include individual sealing materials which are formed on regions of the respective liquid crystal cells, an outer peripheral sealing material which surrounds the respective individual sealing materials and forms an opening at least in a portion thereof, and a weir sealing material of a pattern in which the weir sealing material is formed inside the outer peripheral sealing material and in the vicinity of the opening.
    • 本公开涉及一种液晶显示装置的制造方法。 在一个方面,该方法可以包括通过密封材料将两个或多个多片板彼此层叠,使用蚀刻剂将表面抛光施加到至少一个多片板,并且通过以下步骤将多片板分离成各自的液晶单元: 切割。 在另外的方面,密封材料可以包括形成在各个液晶单元的区域上的单独的密封材料,围绕相应的各个密封材料并在其一部分形成开口的外周密封材料,以及堰 在外周密封材料内部和开口附近形成有堰密封材料的图案的密封材料。
    • 15. 发明申请
    • Display device
    • 显示设备
    • US20050156517A1
    • 2005-07-21
    • US11076870
    • 2005-03-11
    • Hiroaki MiwaKatsuhiko IshiiSetsuo KobayashiYuji Mori
    • Hiroaki MiwaKatsuhiko IshiiSetsuo KobayashiYuji Mori
    • H05B33/04H01L51/50H01L51/52H01J1/62
    • H01L51/5259H01L51/5243H01L51/5246H01L51/5253
    • Electroluminescence elements mounted on a substrate of an OLED display device are sealed by a protective film made of synthetic resin with chemical reaction curing in place of a sealing can. The protective film is formed such that a thickness thereof is equal to or larger than a thickness of the substrate. Alternatively, the protective film is formed by laminating a plurality of resin films which differ in one of the water absorption ratio, the elastic modulus and the hardness. With respect to the protective film which is formed of a plurality of laminated films, compared to the protective film at the electroluminescence element side, the protective film which covers the former protective film has the water absorption ratio, the elastic modulus or the hardness larger than the water absorption ratio, the elastic modulus or the hardness of the former protective film. Due to such a constitution, it is possible to reduce the thickness of the OLED display device without damaging the moisture-proof property of the electroluminescence elements.
    • 安装在OLED显示装置的基板上的电致发光元件由具有化学反应固化的合成树脂制的保护膜代替密封罐密封。 保护膜形成为使得其厚度等于或大于基板的厚度。 或者,通过层叠多个吸水率,弹性模量和硬度之一不同的树脂膜来形成保护膜。 对于由多个层压膜形成的保护膜,与电致发光元件侧的保护膜相比,覆盖前一保护膜的保护膜具有吸水率,弹性模量或硬度大于 前者保护膜的吸水率,弹性模量或硬度。 由于这样的结构,可以在不损害电致发光元件的防潮性的情况下减小OLED显示装置的厚度。
    • 16. 发明授权
    • Electroluminescent device with resin protective film
    • 具有树脂保护膜的电致发光器件
    • US06882104B2
    • 2005-04-19
    • US10301639
    • 2002-11-22
    • Hiroaki MiwaKatsuhiko IshiiSetsuo KobayashiYuji Mori
    • Hiroaki MiwaKatsuhiko IshiiSetsuo KobayashiYuji Mori
    • H05B33/04H01L51/50H01L51/52H05B33/00
    • H01L51/5259H01L51/5243H01L51/5246H01L51/5253
    • Electroluminescence elements mounted on a substrate of an OLED display device are sealed by a protective film made of synthetic resin with chemical reaction curing in place of a sealing can. The protective film is formed such that a thickness thereof is equal to or larger than a thickness of the substrate. Alternatively, the protective film is formed by laminating a plurality of resin films which differ in one of the water absorption ratio, the elastic modulus and the hardness. With respect to the protective film which is formed of a plurality of laminated films, compared to the protective film at the electroluminescence element side, the protective film which covers the former protective film has the water absorption ratio, the elastic modulus or the hardness larger than the water absorption ratio, the elastic modulus or the hardness of the former protective film. Due to such a constitution, it is possible to reduce the thickness of the OLED display device without damaging the moisture-proof property of the electroluminescence elements.
    • 安装在OLED显示装置的基板上的电致发光元件由具有化学反应固化的合成树脂制的保护膜代替密封罐密封。 保护膜形成为使得其厚度等于或大于基板的厚度。 或者,通过层叠多个吸水率,弹性模量和硬度之一不同的树脂膜来形成保护膜。 对于由多个层压膜形成的保护膜,与电致发光元件侧的保护膜相比,覆盖前一保护膜的保护膜具有吸水率,弹性模量或硬度大于 前者保护膜的吸水率,弹性模量或硬度。 由于这样的结构,可以在不损害电致发光元件的防潮性的情况下减小OLED显示装置的厚度。
    • 18. 发明申请
    • Display Device
    • 显示设备
    • US20090079706A1
    • 2009-03-26
    • US12237434
    • 2008-09-25
    • Yasuyuki MishimaSetsuo KobayashiTakayuki Higuchi
    • Yasuyuki MishimaSetsuo KobayashiTakayuki Higuchi
    • G06F3/041
    • G02F1/13338G02F2202/023G02F2202/28
    • In a display device having a touch panel, it is possible to prevent the generation of a screen defect caused by the intrusion of air bubbles into a UV curing resin formed between a touch panel and a display panel. The touch panel is constituted of an upper transparent-electrode-attached film and a lower transparent-electrode-attached film, and an air hole is formed in the lower transparent-electrode-attached film. Due to such constitution, in adhering the touch panel and the display panel to each other in a vacuum using a UV curing resin, air in the touch panel is also discharged and hence, there is no possibility that the touch panel swells. Accordingly, it is possible to prevent warping of the lower transparent-electrode-attached film and hence, in curing the UV curing resin for adhering the touch panel and the display panel to each other, it is possible to prevent the entanglement of air into the UV curing resin. Accordingly, a touch-panel attached display device free from a screen defect attributed to air bubbles can be manufactured.
    • 在具有触摸面板的显示装置中,可以防止由触摸面板和显示面板之间形成的UV固化树脂中气泡的侵入而产生的屏幕缺陷。 触摸屏由上部透明电极附着膜和下部透明电极附着膜构成,并且在下部透明电极附着膜中形成空气孔。 由于这样的结构,在使用UV固化树脂的真空中将触摸面板和显示面板彼此粘合时,触摸面板中的空气也被排出,因此触摸面板不会膨胀。 因此,可以防止下部透明电极附着膜发生翘曲,因此,在将触摸面板和显示面板粘接的UV固化树脂固化的同时,可以防止空气的缠结 UV固化树脂。 因此,可以制造不伴有气泡的屏幕缺陷的触摸面板附接显示装置。