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    • 95. 发明授权
    • Method for removing wrinkles, device for removing wrinkles, and coating method
    • 除皱方法,除皱装置及涂布方法
    • US06984412B2
    • 2006-01-10
    • US10693975
    • 2003-10-28
    • Hideki Tanaka
    • Hideki Tanaka
    • B05D3/12B05C11/00
    • B65H23/34B05D7/04B65H23/0251G11B5/842
    • The present invention provides a method for removing wrinkles formed on a web, which is continuously transported through a plurality of guide members. The plurality of guide member includes a crown roller which has the diameter gradually increased toward the center thereof. The crown roller is placed in a transport path of the web and downstream of a first zone in which wrinkles are desirably removed, and the web is deformed in a second zone located downstream of the crown roller so as to at least decrease the width of the web, whereby the wrinkles in the first zone are removed. Even when the web is thin (10 μm or less), without using particular backup means, wrinkles formed during transport and coating of the web can be removed. In addition, since wrinkles are appropriately removed, a coating film having a uniform thickness can be obtained by an extrusion coating method.
    • 本发明提供了一种去除在纸幅上形成的皱纹的方法,该方法通过多个引导部件连续输送。 多个引导构件包括具有朝向其中心逐渐增大的直径的冠辊。 冠辊被放置在幅材的输送路径中,并且在第一区域的下游,其中期望除去皱纹,并且幅材在位于冠状辊的下游的第二区域中变形,以便至少减小 从而去除第一区域中的皱纹。 即使网幅较薄(10um或更小),不使用特定的备用手段,可以去除在纸幅的运输和涂布过程中形成的皱纹。 此外,由于适当地除去皱纹,因此可以通过挤出涂布法获得具有均匀厚度的涂膜。
    • 96. 发明申请
    • Coating film tape end structure
    • 涂膜胶带端面结构
    • US20060003161A1
    • 2006-01-05
    • US11181127
    • 2005-07-14
    • Kenichi NarimatsuHideki Tanaka
    • Kenichi NarimatsuHideki Tanaka
    • B32B15/04B32B7/12
    • B65H37/007B65H2511/114Y10T156/1705Y10T156/1795Y10T428/28Y10T428/2848
    • In a the structure of end tape for revealing impending exhausting of a coating film tape supply, the end tape is connected to the core by a first single-sided adhesive tape, and to the coating film tape by a second single-sided adhesive tape, both adhesive tapes having a thickness of not more than 25μ. The thickness of the second single-sided adhesive tape is 20% to 70% of the total thickness of the adhered section where the second single-sided adhesive tape, the end tape and the coating film tape overlap, and at least 30% of the thickness of the adhered section where the second adhesive tape is adhered directly to the coating film tape. The thickness of the first adhesive tape is 30% to 70% of the total thickness of the adhered section, where the first adhesive tape and the end tape overlap.
    • 在用于揭示涂膜带供应的即将消耗的端带的结构中,端带通过第一单面胶带与芯连接,并通过第二单面胶带与涂膜带连接, 两个胶带的厚度不超过25mu。 第二单面胶带的厚度是第二单面胶带,端胶带和涂膜胶带重叠的粘合部分的总厚度的20%至70%,并且至少30% 第二胶带直接粘附在涂膜带上的粘接部分的厚度。 第一粘合带的厚度为第一胶带和端带重叠的粘合部的总厚度的30%至70%。
    • 97. 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。
    • 98. 发明申请
    • Hair curling device
    • 卷发器
    • US20050172979A1
    • 2005-08-11
    • US11025935
    • 2005-01-03
    • Itaru SaidaHideki Tanaka
    • Itaru SaidaHideki Tanaka
    • A45D2/04A45D1/04A45D1/06A45D2/00A45D6/06
    • A45D1/04A45D2001/008A45D2200/202
    • A hair curling device has a hand grip, and a heating barrel extending from the hand grip to have a lengthwise axis. A hair clamp is held by the hand grip to be moveable between a hair lamping position and a release position. The hair clamp is curved in match with the curling surface in order to curl the hair clamped between the hair lamp and the barrel. The device includes at least one negative ion generator with an ion port for emitting negative ions. The negative ion generator gives a cone emission axis along which the negative ions are emitted out through the ion port in an emission cone. The ion port is located at a portion offset axially from the barrel as well as offset circumferentially from the hair clamp with the cone emission axis being oriented in such a direction that the emission cone extends mainly along the axial of the barrel to cover a region outwardly of the curling surface of the barrel, i.e., the hair clamp. Thus, the negative ion generator can emit the negative ions in a concentrated manner to the hair just out of the hair clamp for adding the negative ion treatment effect to the curled hair.
    • 卷发装置具有手柄和从手柄延伸以具有纵向轴线的加热筒。 头发夹持器由手柄保持,以在头发打偏位置和释放位置之间移动。 头发夹具弯曲成与卷曲表面相匹配,以便卷曲夹在头发灯和筒子之间的头发。 该装置包括至少一个具有用于发射负离子的离子口的负离子发生器。 负离子发生器产生锥形发射轴,负离子沿着该发射轴通过发射锥体中的离子口发射出去。 离子口位于与镜筒轴向偏移的部分以及从头发夹具周向偏移,锥形发射轴沿着发射锥体主要沿着镜筒的轴向延伸的方向定向以覆盖外部区域 的卷发表面,即发夹。 因此,负离子发生器可以以集中的方式将负离子发出刚刚脱离毛发夹头的头发,以将负离子处理效果加到卷曲的头发上。