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    • 1. 发明申请
    • Electrode for electric chemical capacitor, manufacturing method and apparatus thereof
    • 电化学电容器用电极及其制造方法及装置
    • US20050201043A1
    • 2005-09-15
    • US11016842
    • 2004-12-21
    • Kiyonori HinokiKazuo KataiYousuke MiyakiHideki Tanaka
    • Kiyonori HinokiKazuo KataiYousuke MiyakiHideki Tanaka
    • H01G9/00H01G9/155H01G9/04H01G9/145
    • H01G9/155Y02E60/13Y10T29/417
    • A manufacturing method for an electrode for an electrochemical capacitor according to the present invention comprises a first process (steps S1-S3) for forming a polarizable electrode layer on a current collector, a second process (step S4) for subjecting the front surface of the polarizable electrode layer formed on the current collector, to an embossment work, and a third process (step S5) for flattening the front surface of the polarizable electrode layer as has undergone the embossment work. In this manner, in the invention, the front surface of the polarizable electrode layer undergoes the embossment work, so that the polarizable electrode layer is effectively compressed, and it is consequently permitted to achieve a high volume capacitance of at least 17 F/cm3. Moreover, after the embossment work, the resulting embossment is flattened, so that porous grains contained in the polarizable electrode layer are prevented from falling off, and it is permitted to ensure a high reliability.
    • 根据本发明的用于电化学电容器的电极的制造方法包括用于在集电器上形成可极化电极层的第一工序(步骤S1〜S3),第二工序(步骤S4) 形成在集电体上的极化电极层到压花加工,以及第三工序(步骤S5),使经过压花加工的可极化电极层的前表面变平。 以这种方式,在本发明中,可极化电极层的前表面进行压纹加工,使得可极化电极层被有效地压缩,从而允许达到至少17F / cm 2的高体积电容, SUP> 3 。 此外,在压花加工之后,所得到的压花变平,防止包含在可极化电极层中的多孔颗粒脱落,并且允许确保高可靠性。
    • 5. 发明申请
    • ELECTRODE FOR ELECTRIC CHEMICAL CAPACITOR, MANUFACTURING METHOD AND APPARATUS THEREOF
    • 电化学电极用电极,制造方法及装置
    • US20070059869A1
    • 2007-03-15
    • US11555080
    • 2006-10-31
    • Kiyonori HinokiKazuo KataiYousuke MiyakiHideki Tanaka
    • Kiyonori HinokiKazuo KataiYousuke MiyakiHideki Tanaka
    • H01L21/338H01L21/337H01L21/8244H01L21/8234
    • H01G9/155Y02E60/13Y10T29/417
    • A manufacturing method for an electrode for an electrochemical capacitor according to the present invention comprises a first process (steps S1-S3) for forming a polarizable electrode layer on a current collector, a second process (step S4) for subjecting the front surface of the polarizable electrode layer formed on the current collector, to an embossment work, and a third process (step S5) for flattening the front surface of the polarizable electrode layer as has undergone the embossment work. In this manner, in the invention, the front surface of the polarizable electrode layer undergoes the embossment work, so that the polarizable electrode layer is effectively compressed, and it is consequently permitted to achieve a high volume capacitance of at least 17 F/cm3. Moreover, after the embossment work, the resulting embossment is flattened, so that porous grains contained in the polarizable electrode layer are prevented from falling off, and it is permitted to ensure a high reliability.
    • 根据本发明的用于电化学电容器的电极的制造方法包括用于在集电器上形成可极化电极层的第一工艺(步骤S1-S3),用于对集电体进行前处理的第二工艺(步骤S 4) 形成在集电体上的可极化电极层的表面,压纹加工,以及第三工序(步骤S 5),使经极化电极层的前表面平坦化。 以这种方式,在本发明中,可极化电极层的前表面进行压纹加工,使得可极化电极层被有效地压缩,从而允许达到至少17F / cm 2的高体积电容, SUP> 3 。 此外,在压花加工之后,所得到的压花变平,防止包含在可极化电极层中的多孔颗粒脱落,并且允许确保高可靠性。
    • 8. 发明授权
    • Method of producing electrode for capacitor
    • 电容器用电极的制造方法
    • US07935380B2
    • 2011-05-03
    • US11016855
    • 2004-12-21
    • Kiyonori HinokiKazuo KataiYousuke MiyakiHideki Tanaka
    • Kiyonori HinokiKazuo KataiYousuke MiyakiHideki Tanaka
    • B05D5/12
    • H01G11/28H01G11/38H01G11/86Y02E60/13Y02T10/7022
    • The present invention provides a method of producing an electrode for an electric double layer capacitor, which yields the electrode with an electrode layer having a higher density by calendering treatment. A method of producing an electrode for a capacitor, which comprises at least a current collector and an electrode layer on the current collector, the method comprising the steps of: applying an electrode layer coating material which comprises at least a carbon material, a binder and a solvent, onto the current collector to form an electrode coating layer; drying the electrode coating layer on the current collector to set the amount of the solvent remaining in the electrode coating layer within a range of 5 to 35% by weight of the layer; and subjecting the electrode coating layer after the drying to calendering treatment to yield an electrode layer.
    • 本发明提供一种双电层电容器用电极的制造方法,其通过压延处理产生具有较高密度的电极层的电极。 一种电容器用电极的制造方法,其至少包括集电体上的集电体和电极层,所述方法包括以下步骤:施加至少包含碳材料,粘合剂和 溶剂,在集电体上形成电极涂层; 干燥电极集电体上的电极涂层,将电极涂层中保留的溶剂量设定在该层的5〜35重量%的范围内; 将干燥后的电极被覆层进行压延处理,得到电极层。