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    • 1. 发明授权
    • Vacuum cleaner suction tool with partition defining air current dust pickup path
    • 真空吸尘器吸气工具,带有限定气流粉尘拾取路径的分隔件
    • US06539577B1
    • 2003-04-01
    • US09537136
    • 2000-03-29
    • Atsushi OkudaAtuo HamadaSouji SakataKazuyoshi YoshimiKazumasa KamataniNobuaki TakahashiSyuzo UeyamaNaoki Suetugu
    • Atsushi OkudaAtuo HamadaSouji SakataKazuyoshi YoshimiKazumasa KamataniNobuaki TakahashiSyuzo UeyamaNaoki Suetugu
    • A47L904
    • A47L9/04A47L5/30
    • An upright electric cleaning device includes a floor suction tool formed with a long suction opening on the bottom surface thereof. A rotating brush holding chamber holds a rotating brush that extends to this long suction opening. A suction opening leading to the main cleaning device unit is formed toward one end of the rear wall of the rotating brush holding chamber. A rib, formed on the upper section of the rotating brush holding chamber, extends along the length of the rotating brush, near the rotation path of the rotating brush. An air current path is formed to take dust drawn up by the rotating brush and stopped by the rib and suck it into the suction opening leading to the main cleaning device unit. The air current path is shaped so that its cross section is smaller at an end of the air current path remote from the suction opening than it is near the suction opening to increase flow speed at the remote end. In one embodiment, an opening to the outside is formed at the remote end of the air current path to enhance air flow toward the suction opening. In a further embodiment, the enhanced air flow if further improved by venting exhaust air from the main cleaning device into the opening to positively improve air flow.
    • 立式电动清洁装置包括在其底表面上形成有长吸入口的地板吸入工具。 旋转刷保持室保持延伸到该长吸入口的旋转刷。 通向主清洁装置单元的吸入口朝向旋转刷保持室的后壁的一端形成。 形成在旋转刷保持室的上部的肋沿着旋转刷的长度在旋转刷的旋转路径附近延伸。 形成气流路径,以吸收由旋转刷牵引并由肋停止的灰尘并将其吸入通向主清洁装置单元的吸入口。 气流路径的形状使得其远离吸入口的气流路径的端部处的截面小于其在吸入口附近的横截面,以增加远端的流速。 在一个实施例中,在气流路径的远端处形成有一个到外部的开口,以增强朝向吸入口的气流。 在另一个实施例中,如果通过将排气从主清洁装置排放到开口中而进一步改善,则增强的空气流积极地改善空气流。
    • 4. 发明授权
    • Manufacturing method for organic electroluminescent panel and organic electroluminescent panel manufactured using the same
    • 使用其制造的有机电致发光面板和有机电致发光面板的制造方法
    • US09059429B2
    • 2015-06-16
    • US13640355
    • 2011-04-18
    • Masaaki MurayamaNobuaki TakahashiDaisuke Numakura
    • Masaaki MurayamaNobuaki TakahashiDaisuke Numakura
    • H01J9/00H01L51/52
    • H01L51/5246
    • A simple manufacturing method for an organic electroluminescent panel in which organic electroluminescent elements are arranged and sealed by a sealing adhesive. The electroluminescent panel has excellent sealing properties and excellent durability as a result of the organic electroluminescent elements being adhered to one another by a heat-curable adhesive. The manufacturing method is for an organic electroluminescent panel in which at least a first electrode, an organic functional layer containing a light-emitting layer, an organic electroluminescent element having a second electrode, and a sealing substrate are bonded together on a substrate by the heat-curable adhesive. The method includes forming a heat-curable adhesive layer on the sealing substrate, subjecting the heat-curable adhesive layer formed on the sealing substrate to pre-heating treatment, bonding the pre-heated heat-curable adhesive layer to the organic electroluminescent element, and subjecting the heat-curable adhesive layer to heat curing, in the given order.
    • 一种有机电致发光面板的简单制造方法,其中有机电致发光元件由密封胶布置和密封。 电致发光面板由于有机电致发光元件通过热固性粘合剂彼此粘合而具有优异的密封性和优异的耐久性。 该制造方法用于有机电致发光面板,其中至少第一电极,含有发光层的有机功能层,具有第二电极的有机电致发光元件和密封基板通过热量在基板上接合在一起 可固化粘合剂。 该方法包括在密封基板上形成热固性粘合剂层,对形成在密封基板上的热固性粘合剂层进行预热处理,将预热的可热固化粘合剂层接合到有机电致发光元件,以及 以给定的顺序对热固性粘合剂层进行热固化。
    • 6. 发明授权
    • Coating method, and organic electroluminescence element
    • 涂布方法和有机电致发光元件
    • US08728950B2
    • 2014-05-20
    • US13260068
    • 2010-06-15
    • Shigetoshi KawabeNobuaki Takahashi
    • Shigetoshi KawabeNobuaki Takahashi
    • H01L21/31
    • H01L51/0004B05C5/025B05C5/0254B05D1/265B05D5/06H01L51/56
    • Disclosed are a coating method of forming a coating with a stable thickness from a coating solution with a low viscosity employing a slit-type die coater and an organic electroluminescence element prepared employing the coating method. The coating method employing a slit-type die coater comprises the steps of allowing a lip tip of the slit-type die coater to bring close to the substrate to form a coating solution bead between the lip tip and the substrate, and coating on the substrate a coating solution ejected from a slit outlet at the lip tip while relatively moving the slit-type die coater and the substrate, thereby forming at least two coating layers in the stripe shape, featured in that the lip tip has at least one groove in the coating region in the coating width direction, and a pressure at the slit outlet of the coating solution of the bead is negative or zero.
    • 公开了使用狭缝型模涂机和使用涂布法制备的有机电致发光元件,从具有低粘度的涂布溶液形成具有稳定厚度的涂层的涂布方法。 使用狭缝型模涂机的涂布方法包括以下步骤:使狭缝型模涂机的唇尖靠近基板,以在唇尖和基板之间形成涂布溶液珠,并在基板上涂布 在狭缝型模具涂布机和基板相对移动的同时从唇尖处的狭缝出口喷射的涂布溶液,从而形成至少两条条状涂层,其特征在于,唇尖在其中具有至少一个凹槽 在涂布宽度方向上的涂布区域,珠的涂布溶液的狭缝出口处的压力为负或为零。
    • 10. 发明申请
    • COATING METHOD, AND ORGANIC ELECTROLUMINESCENCE ELEMENT
    • 涂层方法和有机电致发光元件
    • US20120032157A1
    • 2012-02-09
    • US13260068
    • 2010-06-15
    • Shigetoshi KawabeNobuaki Takahashi
    • Shigetoshi KawabeNobuaki Takahashi
    • H01L51/52B05D5/12
    • H01L51/0004B05C5/025B05C5/0254B05D1/265B05D5/06H01L51/56
    • Disclosed are a coating method of forming a coating with a stable thickness from a coating solution with a low viscosity employing a slit-type die coater and an organic electroluminescence element prepared employing the coating method. The coating method employing a slit-type die coater comprises the steps of allowing a lip tip of the slit-type die coater to bring close to the substrate to form a coating solution bead between the lip tip and the substrate, and coating on the substrate a coating solution ejected from a slit outlet at the lip tip while relatively moving the slit-type die coater and the substrate, thereby forming at least two coating layers in the stripe shape, featured in that the lip tip has at least one groove in the coating region in the coating width direction, and a pressure at the slit outlet of the coating solution of the bead is negative or zero.
    • 公开了使用狭缝型模涂机和使用涂布法制备的有机电致发光元件,从具有低粘度的涂布溶液形成具有稳定厚度的涂层的涂布方法。 使用狭缝型模涂机的涂布方法包括以下步骤:使狭缝型模涂机的唇尖靠近基板,以在唇尖和基板之间形成涂布溶液珠,并在基板上涂布 在狭缝型模具涂布机和基板相对移动的同时从唇尖处的狭缝出口喷射的涂布溶液,从而形成至少两条条状涂层,其特征在于,唇尖在其中具有至少一个凹槽 在涂布宽度方向上的涂布区域,珠的涂布溶液的狭缝出口处的压力为负或为零。