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    • 2. 发明申请
    • ELECTRODE
    • 电极
    • US20100075224A1
    • 2010-03-25
    • US12560870
    • 2009-09-16
    • Katsuo NAOIKazutoshi EMOTOKiyonori HINOKIMasahiro SAEGUSAKenji NISHIZAWAMitsuo KOUGO
    • Katsuo NAOIKazutoshi EMOTOKiyonori HINOKIMasahiro SAEGUSAKenji NISHIZAWAMitsuo KOUGO
    • H01M4/02
    • H01G11/28H01G11/32H01M4/661H01M4/70H01M4/742H01M10/052Y02E60/13
    • An electrode has a current collector having a plurality of through holes, and active material layers provided on both sides of the current collector, the current collector has projections extending on the top side or on the back side of the current collector from respective edges of the through holes, and an angle between each of the projections and a surface direction of the current collector is in the range of 30 to 80°. Because of the configuration wherein the projections are surrounded by the active material layers, a physical anchor effect is achieved so as to provide high adhesion. Since the projections are inclined relative to the surface direction of the current collector, the distance becomes shorter between the current collector including the projections and an active material, which was located apart from the projections in the case where the projections extended perpendicularly to the surface direction of the current collector. Therefore, electrically conducting paths become shorter and impedance is reduced.
    • 电极具有集电体,该集电体具有多个通孔,并且设置在集电体的两侧的活性物质层,集电体具有从集电体的顶部侧或背面侧的突出部 通孔,并且每个突起之间的角度和集电器的表面方向之间的角度在30至80°的范围内。 由于其中突起被活性材料层包围的结构,实现了物理锚固效应,从而提供高粘合性。 由于突起相对于集电体的表面方向倾斜,所以在包括突起的集电体和在垂直于表面方向延伸的突起的情况下与突起分开的活性材料之间的距离变短 的集电器。 因此,导电路径变短,阻抗减小。
    • 5. 发明申请
    • ELECTRODE PRODUCING METHOD AND ELECTRODE PRODUCING APPARATUS
    • 电极生产方法和电极生产设备
    • US20100075022A1
    • 2010-03-25
    • US12560856
    • 2009-09-16
    • Kazutoshi EMOTOKatsuo NAOIKiyonori HINOKIMasahiro SAEGUSAMasayoshi HIRANO
    • Kazutoshi EMOTOKatsuo NAOIKiyonori HINOKIMasahiro SAEGUSAMasayoshi HIRANO
    • B05D5/12B05C13/00B05C11/00
    • H01G9/0029H01G11/28H01G11/86H01G13/00H01M4/0404H01M4/0409Y02E60/13
    • The present invention provides an electrode producing method capable of uniformly depositing a coating solution on a sheet with projections on a surface.An electrode producing method by an electrode producing apparatus 100 has an inclining step of pressing a surface of a current collector sheet 2A with projections 4a extending outwardly from the surface, which is conveyed in a definite direction, to incline the projections 4a in a direction opposite to the definite direction of the current collector sheet 2A; and an applying step of applying a coating solution 3A onto the current collector sheet 2A the projections of which have been inclined in the inclining step and which is conveyed in the definite direction, by a slit die 12. After the surface of the current collector sheet 2A is pressed to incline the projections 4a on the sheet surface in the opposite direction to the conveyance direction, the coating solution 3A is applied onto the surface. Therefore, the coating solution 3A can be uniformly applied onto the current collector sheet 2A.
    • 本发明提供一种能够在表面上具有突起的片材上均匀地沉积涂布溶液的电极制造方法。 通过电极制造装置100的电极制造方法具有如下倾斜步骤:将集电体片材2A的表面按照一定方向输送的表面向外延伸的凸部4a向相反方向倾斜, 到集电片2A的确定方向; 以及施加步骤,通过狭缝模12将涂布溶液3A施加到其突起已经在倾斜步骤中倾斜并且沿一定方向被输送的集电体片2A上。在集电体片的表面 2A沿着与输送方向相反的方向按压使片材表面上的突起4a倾斜,涂布溶液3A施加到表面上。 因此,可以将涂布液3A均匀地涂布在集电体片2A上。
    • 6. 发明申请
    • LIQUID APPLICATION APPARATUS AND APPLICATION METHOD
    • 液体应用装​​置及应用方法
    • US20100247792A1
    • 2010-09-30
    • US12725104
    • 2010-03-16
    • Kazutoshi EMOTOKiyonori HINOKIMasahiro SAEGUSAHaruka NISHIMURA
    • Kazutoshi EMOTOKiyonori HINOKIMasahiro SAEGUSAHaruka NISHIMURA
    • B05D1/26B05C1/04
    • H01M4/0404B05C5/0254B05C9/06H01M4/1391H01M4/1397H01M4/366H01M4/505H01M4/525H01M4/5825
    • A liquid application apparatus includes a guide roll for guiding a sheet for application, and a slit die for applying a liquid to a surface of the sheet for application from an opening. The slit die has an upper layer flow path and a lower layer flow path spaced in the rotational direction of the guide roll and joining at the opening. In a cross section perpendicular to the axis of the guide roll, an angle α formed by the center line of the upper layer flow path and the center line of the lower layer flow path is 0.5 to 25°, an angle β formed by a line connecting the intersection point of the center line of the upper layer flow path and the center line of the lower layer flow path with the axis of the guide roll and by the center line of the upper layer flow path is 0 to 70° as measured from this connecting line toward the center line of the upper layer flow path in the direction opposite to the rotational direction of the guide roll, and the distance γ between a point where the two flow paths and join and the opening is 0.05 to 2.8 mm.
    • 液体施加装置包括用于引导用于施加的片材的引导辊和用于将液体施加到片材的表面以从开口施加的狭缝模具。 狭缝模具具有沿导向辊的旋转方向间隔开的上层流路和下层流路,并在开口处接合。 在垂直于导向辊的轴线的截面中,由上层流路的中心线和下层流路的中心线形成的角度α为0.5〜25°,角度&bgr; 通过将上层流路的中心线与下层流路的中心线与导辊的轴线和上层流路的中心线连接的线形成为0〜70° 从与该导向辊的旋转方向相反的方向从上述连接线朝向上层流路的中心线测定的两个流路连通点与开口点的距离γ为0.05〜 2.8毫米。