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    • 11. 发明申请
    • MOLTEN-SALT BATTERY AND MOLTEN-SALT BATTERY CONNECTED BODY
    • 盐酸电池和盐酸电池连接体
    • US20130224566A1
    • 2013-08-29
    • US13879560
    • 2011-10-17
    • Shoichiro SakaiAtsushi FukunagaKoji NittaMasatoshi MajimaShinji Inazawa
    • Shoichiro SakaiAtsushi FukunagaKoji NittaMasatoshi MajimaShinji Inazawa
    • H01M2/04
    • H01M2/04H01M2/0247H01M2/0252H01M2/0439H01M2/0447H01M2/0473H01M2/24H01M10/399
    • This molten-salt battery is provided with a battery container for housing a power generation element that contains molten salt. The battery container is provided with a container body (1) and a lid (7). An opening (1E) is provided in the upper surface of the container body (1). The lid (7) is fitted in the opening (1E) of the container body (1) and is welded to the container body (1). A step (1G) is formed to the opening (1E) of the container body (1) along the inner edge of the container body (1). By means of the step (1G), the rim (7A) of the lid (7) is supported with respect to the upper corner of side walls (1A, 1B). Laser light is radiated from above to the rim (7A) of the lid (7) and the upper surface of the side walls (1A, 1B) adjacent thereto. In this way, the rim (7A) of the lid (7) is welded to the container body (1). The molten-salt battery connected body is configured from a plurality of molten-salt batteries. The molten-salt batteries are connected aligned in the horizontal direction in the state of the outer peripheral surfaces of the container bodies (1) of adjacent molten-salt batteries being caused to face each other.
    • 该熔盐电池设置有容纳含有熔融盐的发电元件的电池容器。 电池容器设置有容器主体(1)和盖(7)。 在容器主体(1)的上表面设有开口(1E)。 盖(7)装配在容器主体(1)的开口(1E)中并焊接到容器主体(1)上。 沿着容器主体(1)的内边缘向容器主体(1)的开口(1E)形成台阶(1G)。 通过步骤(1G),盖(7)的边缘(7A)相对于侧壁(1A,1B)的上角被支撑。 激光从上方辐射到盖(7)的边缘(7A)和与其相邻的侧壁(1A,1B)的上表面。 以这种方式,盖(7)的边缘(7A)被焊接到容器主体(1)上。 熔盐电池连接体由多个熔盐电池构成。 在相邻的熔盐电池的容器主体(1)的外周表面的状态下,使熔盐电池在水平方向上连接成对准。
    • 17. 发明授权
    • Fine electroforming mold and manufacturing method thereof
    • 精细电铸模具及其制造方法
    • US07267756B2
    • 2007-09-11
    • US10503496
    • 2003-02-18
    • Koji NittaShinji InazawaAkihisa Hosoe
    • Koji NittaShinji InazawaAkihisa Hosoe
    • C25D1/10
    • C25D1/10
    • The present invention provides a mold for fine electroforming M having a simple structure. In order to improve the productivity of a metal product, an electrode portion can be arranged with a much higher density, and a metal thin film formed on the electrode portion can easily be peeled off. The present invention provides a manufacturing method for manufacturing the mold M with a higher accuracy and by an easier way.The mold for fine electroforming M has a conductive substrate 1 to function as a cathode during electroforming and insulation layer 2 having an opening 21, which has a shape corresponding to a shape of a plane shape of the metal product P and is through to the conductive substrate 1, and composed of an inorganic insulation material having a thickness T2 of not less than 10 nm and less than one-half the thickness T1 of the metal product P. The surface of the conductive substrate 1 exposed at the opening 21 is adapted to serve as the electrode portion.The manufacturing method of the mold M has steps of: forming an inorganic thin film 2′ to grow into the insulation layer 2 in an area excluding an area, where resist film R is pattern-formed, on the surface of the conductive substrate 1; and removing the resist film R to form the opening 21.
    • 本发明提供一种具有简单结构的精细电铸M的模具。 为了提高金属制品的生产率,可以以更高的密度布置电极部分,并且可以容易地剥离形成在电极部分上的金属薄膜。 本发明提供一种以更高的精度和更容易的方式制造模具M的制造方法。 用于精细电铸的模具M具有导电基板1,其在具有开口21的电铸和绝缘层2中用作阴极,该开口21具有与金属产品P的平面形状相对应的形状,并且通过导电 基板1,并且由金属产品P的厚度T 2 N以上且小于10nm且小于金属产品P的厚度T 1的一半的无机绝缘材料构成 在开口部21露出的导电性基板1的表面适合用作电极部。 模具M的制造方法具有以下步骤:在导电基板1的表面上除了图案形成抗蚀剂膜R的区域之外的区域中形成无机薄膜2'以生长到绝缘层2中; 并除去抗蚀剂膜R以形成开口21。