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    • 22. 发明授权
    • Manufacturing method of display device
    • 显示装置的制造方法
    • US08142249B2
    • 2012-03-27
    • US11962172
    • 2007-12-21
    • Setsuo KobayashiHiroaki MiwaKatsuhiko IshiiShuji Iwasaki
    • Setsuo KobayashiHiroaki MiwaKatsuhiko IshiiShuji Iwasaki
    • B32B37/12
    • G02F1/133308G02F2001/133311G02F2202/28
    • To prevent bubbles from remaining when a transparent substrate is bonded via an adhesive with a display panel. A manufacturing method of a display device in which a transparent substrate is bonded with a display panel via an adhesive, including a coating step of coating the adhesive onto the display panel or the transparent substrate in a predetermined pattern, a bonding step of bonding the display panel and the transparent substrate via the adhesive after the coating step, and a curing step of curing the adhesive after the bonding step, characterized in that the adhesive has a viscosity of 2000 to 5000 mPa·s at the coating step, the display panel and the transparent substrate are bonded via the adhesive in a reduced pressure atmosphere lower than the atmospheric pressure in a state where the adhesive coated at the coating step is spread and the size of bubble is 1 mm or less at maximum at the bonding step, and the adhesive is cured by applying ultraviolet ray at the curing step.
    • 当通过粘合剂与显示面板粘合透明基板时,防止气泡残留。 一种显示装置的制造方法,其中透明基板经由粘合剂与显示面板接合,包括以预定图案将粘合剂涂布在显示面板或透明基板上的涂布步骤,将显示器 在涂布步骤之后经由粘合剂的透明基板和透明基板,以及固化步骤,在粘合步骤之后固化粘合剂,其特征在于,粘合剂在涂布步骤中的粘度为2000-5000mPa·s,显示面板和 在涂布步骤中涂覆的粘合剂涂布的状态下,透明基材在低于大气压的减压气氛中粘合,并且在粘合步骤中气泡的最大尺寸为1mm以下, 在固化步骤中通过施加紫外线固化粘合剂。
    • 24. 发明申请
    • Liquid crystal display device and manufacturing method of the same
    • 液晶显示装置及其制造方法相同
    • US20090033858A1
    • 2009-02-05
    • US12219579
    • 2008-07-24
    • Takashi YamamotoSadafumi HiraiHiroaki MiwaSetsuo Kobayashi
    • Takashi YamamotoSadafumi HiraiHiroaki MiwaSetsuo Kobayashi
    • G02F1/1339
    • G02F1/1341G02F1/1339G02F1/13394G02F2001/133388
    • A manufacturing method is provided for a liquid crystal display device that can avoid any possible inconvenience as a result of a difficulty in controlling the dropping amount of a liquid crystal. For executing the method, the liquid crystal display device has a pair of substrates disposed in an opposed manner including a liquid crystal display area with a diagonal length in a range from 1 inch to 5 inches, and a plurality of column spacers is formed in the liquid crystal display area of at least one of the substrates. The method includes the steps of: forming a sealant, with a width in a range from 0.4 mm to 1.0 mm, around the liquid crystal display area of the substrate formed with the column spacers; dropping a liquid crystal into the area enclosed by the sealant on the substrate such that a surface of the liquid crystal has a height lower than a height of the column spacers; disposing the other substrate to be opposed to the substrate formed with the column spacers, and pushing the resulting pair of substrates in a direction bringing the substrates closer to each other; and curing the sealant in a state that the column spacers each have the height in a percentage range from 108% to 113% as a result of dividing the height without the pushing by the height with the pushing.
    • 提供一种用于液晶显示装置的制造方法,其可以避免由于难以控制液晶的滴落量而导致的任何可能的不便。 为了执行该方法,液晶显示装置具有以相对的方式设置的一对基板,其包括对角线长度在1英寸至5英寸的范围内的液晶显示区域,并且多个列间隔件形成在 至少一个基板的液晶显示区域。 该方法包括以下步骤:在形成有柱间隔物的基板的液晶显示区域周围形成宽度为0.4mm至1.0mm的密封剂; 将液晶滴入由基板上的密封剂包围的区域中,使得液晶的表面的高度低于柱状间隔物的高度; 将另一基板设置成与形成有柱间隔物的基板相对,并且使所得到的一对基板沿使基板更靠近的方向推压; 并且在所述柱状隔片各自具有从108%至113%的百分比范围内的高度的状态下固化所述密封剂,这是由于在不推动所述高度的情况下将所述高度除以所述高度。
    • 25. 发明授权
    • Ultrasonic irradiation apparatus
    • 超声波照射装置
    • US07399284B2
    • 2008-07-15
    • US10296039
    • 2001-05-22
    • Hirohide MiwaHiroaki MiwaMasato Kino
    • Hirohide MiwaHiroaki MiwaMasato Kino
    • A61H1/00A61H1/02A61H5/00
    • B06B1/0637A61B2017/2253A61B2018/00005A61B2018/00041A61N7/00A61N2007/0078B06B1/0688G10K11/004
    • An ultrasonic irradiation apparatus irradiates ultrasonic waves onto a wide area having three-dimensionally curved surfaces. An ultrasonic irradiator having a plurality of ultrasonic transducer is arranged in a plane. The position of at least a portion of the ultrasonic transducers is mutually and flexibly changeable in three dimensions. Ultrasonic transducers are installed on a surface of a flexible and/or elastic sheet member or net member. The ultrasonic irradiator may include a plurality of ultrasonic transducers formed on a flexible piezoelectric sheet member, including driving electrodes arranged on one surface and opposed electrodes arranged on another surface. The ultrasonic irradiator may be installed on or inside of a flexible planar bag containing a fluidic ultrasonic conductive medium. A mechanism is provided for moving or tilting the ultrasonic irradiator with respect to the object, or a band-holding member may be provided for fitting the irradiator to the object.
    • 超声波照射装置将超声波照射到具有三维曲面的广域上。 具有多个超声波换能器的超声波照射器配置在平面内。 超声换能器的至少一部分的位置在三个维度上相互和灵活地变化。 超声波换能器安装在柔性和/或弹性片材构件或网构件的表面上。 超声波照射器可以包括形成在柔性压电片部件上的多个超声波换能器,包括布置在一个表面上的驱动电极和布置在另一个表面上的相对电极。 超声波照射器可以安装在包含流体超声波导电介质的柔性平面袋的内部或内部。 提供了用于相对于物体移动或倾斜超声波照射器的机构,或者可以设置带状部件以将辐照器安装到物体上。
    • 26. 发明申请
    • MANUFACTURING METHOD OF DISPLAY DEVICE
    • 显示装置的制造方法
    • US20080153377A1
    • 2008-06-26
    • US11962172
    • 2007-12-21
    • Setsuo KobayashiHiroaki MiwaKatsuhiko IshiiShuji Iwasaki
    • Setsuo KobayashiHiroaki MiwaKatsuhiko IshiiShuji Iwasaki
    • G02F1/1333
    • G02F1/133308G02F2001/133311G02F2202/28
    • To prevent bubbles from remaining when a transparent substrate is bonded via an adhesive with a display panel. A manufacturing method of a display device in which a transparent substrate is bonded with a display panel via an adhesive, including a coating step of coating the adhesive onto the display panel or the transparent substrate in a predetermined pattern, a bonding step of bonding the display panel and the transparent substrate via the adhesive after the coating step, and a curing step of curing the adhesive after the bonding step, characterized in that the adhesive has a viscosity of 2000 to 5000 mPa·s at the coating step, the display panel and the transparent substrate are bonded via the adhesive in a reduced pressure atmosphere lower than the atmospheric pressure in a state where the adhesive coated at the coating step is spread and the size of bubble is 1 mm or less at maximum at the bonding step, and the adhesive is cured by applying ultraviolet ray at the curing step.
    • 当通过粘合剂与显示面板粘合透明基板时,防止气泡残留。 一种显示装置的制造方法,其中透明基板经由粘合剂与显示面板接合,包括以预定图案将粘合剂涂布在显示面板或透明基板上的涂布步骤,将显示器 在涂布步骤之后经由粘合剂的透明基板和透明基板,以及在粘合步骤之后固化粘合剂的固化步骤,其特征在于,粘合剂在涂布步骤中具有2000-5000mPa.s的粘度,显示面板和 在涂布步骤中涂覆的粘合剂涂布的状态下,透明基材在低于大气压的减压气氛中粘合,并且在粘合步骤中气泡的最大尺寸为1mm以下, 在固化步骤中通过施加紫外线固化粘合剂。
    • 27. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE
    • 液晶显示装置
    • US20080030670A1
    • 2008-02-07
    • US11833287
    • 2007-08-03
    • Katsuhiko IshiiTakashi YamamotoHiroaki MiwaSetsuo Kobayashi
    • Katsuhiko IshiiTakashi YamamotoHiroaki MiwaSetsuo Kobayashi
    • G02F1/1339
    • G02F1/1341G02F2202/023
    • The present invention provides a liquid crystal display device having an ODF (one drop-fill) type middle-sized or miniaturized liquid crystal display panel. In a liquid crystal display device which includes a liquid crystal display panel having a pair of substrates, a sealing member which is formed on a peripheral portion between the pair of substrates without a cut, and liquid crystal which is sealed in a space surrounded by the sealing member between the pair of substrates, one substrate out of the pair of substrates includes at least one line layer which is formed along a first side of one substrate, and a portion of the sealing member which is formed along the first side of one substrate is formed in a zigzag pattern such that the sealing member traverses at least one line layer plural times.
    • 本发明提供一种具有ODF(一滴式)型中型或小型化液晶显示面板的液晶显示装置。 在包括具有一对基板的液晶显示面板的液晶显示装置中,形成在一对基板之间的周边部分上而没有切割的密封部件,以及密封在由该基板包围的空间中的空间的液晶 一对基板之间的一个基板包括沿着一个基板的第一侧形成的至少一个线层和沿着一个基板的第一侧形成的密封部件的一部分 形成为锯齿形图案,使得密封构件多次穿过至少一个线层。
    • 30. 发明申请
    • Manufaturing method of display device
    • 显示装置的制造方法
    • US20090215351A1
    • 2009-08-27
    • US12320589
    • 2009-01-29
    • Setsuo KobayashiHiroaki MiwaKatsuhiko Ishii
    • Setsuo KobayashiHiroaki MiwaKatsuhiko Ishii
    • H01J9/20
    • G02F1/133308G02F2001/13332G02F2201/50G02F2202/28
    • A method of manufacturing a display device in which a transparent substrate is bonded to a display panel by an adhesive, includes: applying the adhesive to the display panel or the transparent substrate in a predetermined pattern; bonding the display panel and the transparent substrate together by means of the adhesive after the applying step; and curing the adhesive after the bonding step, wherein in the applying step, a viscosity of the adhesive being more than 5000 mPa·s and 15000 mPa·s or less, the application of the adhesive is carried out by a screen printing, a time from a finishing point of the application of the adhesive in the applying step until a starting point of the bonding in the bonding step is 10 seconds or more and 120 seconds or less, in the bonding step, in a condition in which the adhesive applied in the applying step is spreading, with air bubbles remaining, and a maximum size of the air bubbles is 0.5 mm or less, the display panel and the transparent substrate are bonded together by the adhesive under a reduced pressure atmosphere lower than the atmospheric pressure, and in the curing step, after the maximum size of the air bubbles have reached 0.1 mm or less, ultraviolet light is applied, curing the adhesive.
    • 一种制造其中通过粘合剂将透明基板结合到显示面板的显示装置的方法,包括:以预定图案将粘合剂施加到显示面板或透明基板; 在施加步骤之后通过粘合剂将显示面板和透明基板结合在一起; 并且在粘合步骤之后固化粘合剂,其中在涂布步骤中,粘合剂的粘度大于5000mPa.s和15000mPa.s或更小,粘合剂的施加通过丝网印刷进行,时间 在粘合工序中粘合剂的施加结束点至接合工序的接合起始点为10秒以上且120秒以下的粘合工序的结束点, 施加步骤扩散,气泡残留,气泡的最大尺寸为0.5mm以下,显示面板和透明基板通过粘合剂在低于大气压的减压气氛下粘结在一起,以及 在固化步骤中,在气泡的最大尺寸已经达到0.1mm或更小之后,施加紫外光,固化粘合剂。