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    • 5. 发明授权
    • Electrical energy storage module and method for producing an electrical energy storage module
    • 电能储存模块及其制造方法
    • US09570729B2
    • 2017-02-14
    • US14366926
    • 2012-10-29
    • Robert Bosch GmbH
    • Alexander SchmidtAndy TiefenbachVolker DoegeMartin Kessler
    • H01M2/20H01M2/26H01M10/04H01M10/18H01M10/0525H01M10/052
    • H01M2/204H01M2/206H01M2/26H01M10/0418H01M10/0472H01M10/052H01M10/0525H01M10/18Y02E60/126Y02P70/54Y10T29/49108
    • The invention relates to an electrical energy storage module, comprising at least one storage cell stack (7) that has a plurality of groups of first planar parallel energy storage cells (1), each having first electrode elements (1a), and a plurality of groups of second planar parallel energy storage cells (2) arranged planar parallel to the group of first energy storage cells (1), said second groups each having second electrode elements (2a). The groups of first and second energy storage cells (1; 2) are arranged alternately along a first direction of extension of the storage cell stack (7) and the first electrode elements (1a) have a polarity on a side face of the storage cell stack (7) that is different from the second electrode elements (2a) on the side face of the storage cell stack (7). The energy storage module further comprises a plurality of flat contact elements (5) that are arranged on the side faces of the storage cell stack (7), galvanically connect adjacent groups of first and second energy storage cells (1; 2), and contact substantially all first or second electrode elements (1a; 2a) of the adjacent groups of first and second energy storage cells (1; 2) across the width of the storage cell stack (7) in each case.
    • 本发明涉及一种电能存储模块,包括至少一个存储单元堆叠(7),其具有多组第一平面平行储能单元(1),每组具有第一电极元件(1a)和多个 一组平行于第一能量存储单元(1)的第二平面平行储能单元(2),所述第二组各自具有第二电极元件(2a)。 第一和第二储能单元(1; 2)的组沿存储单元堆叠(7)的第一延伸方向交替布置,并且第一电极元件(1a)在存储单元的侧面具有极性 堆叠(7),其与存储电池组(7)的侧面上的第二电极元件(2a)不同。 能量存储模块还包括布置在存储单元堆叠(7)的侧面上的多个平坦接触元件(5),电连接相邻的第一和第二能量存储单元(1; 2)组和接触 在每种情况下跨越存储单元堆叠(7)的宽度的第一和第二能量存储单元(1; 2)的相邻组的基本上所有的第一或第二电极元件(1a; 2a)。
    • 9. 发明申请
    • THREE-DIMENSIONAL BATTERIES AND METHODS OF MANUFACTURING THE SAME
    • 三维电池及其制造方法
    • US20160013511A1
    • 2016-01-14
    • US14638410
    • 2015-03-04
    • Enovix Corporation
    • Harrold J. RUST, IIIAshok LAHIIRIMurali RAMASUBRAMANIANRobert M. SPOTNITZ
    • H01M10/04H01M4/04
    • H01M10/0472H01M4/0402H01M4/0423H01M4/0426H01M4/0428H01M4/0438H01M4/0457H01M4/049H01M6/40
    • Various methods and apparatus relating to three-dimensional battery structures and methods of manufacturing them are disclosed and claimed. In certain embodiments, a three-dimensional battery comprises a battery enclosure, and a first structural layer within the battery enclosure, where the first structural layer has a first surface, and a first plurality of conductive protrusions extend from the first surface. A first plurality of electrodes is located within the battery enclosure, where the first plurality of electrodes includes a plurality of cathodes and a plurality of anodes, and wherein the first plurality of electrodes includes a second plurality of electrodes selected from the first plurality of electrodes, each of the second plurality of electrodes being in contact with the outer surface of one of said first plurality of conductive protrusions. Some embodiments relate to processes of manufacturing energy storage devices with or without the use of a backbone structure or layer.
    • 公开并要求保护与三维电池结构及其制造方法有关的各种方法和装置。 在某些实施例中,三维电池包括电池外壳和电池外壳内的第一结构层,其中第一结构层具有第一表面,并且第一多个导电突起从第一表面延伸。 第一多个电极位于电池外壳内,其中第一多个电极包括多个阴极和多个阳极,并且其中第一多个电极包括从第一多个电极中选择的第二多个电极, 所述第二多个电极中的每一个与所述第一多个导电突起中的一个的外表面接触。 一些实施例涉及在使用或不使用骨架结构或层的情况下制造能量存储装置的过程。
    • 10. 发明申请
    • BATTERY REINFORCED POLYMER COMPOSITE SMART STRUCTURE
    • 电池增强聚合物复合材料智能结构
    • US20150221974A1
    • 2015-08-06
    • US14613732
    • 2015-02-04
    • KALPTREE ENERGY, INC.
    • Deepak UpadhyayaMark IsaacsonMichael D. SwordGregory D. HitchanBrook E. Van Muijen
    • H01M10/04H01M10/0587H01M10/0565
    • H01M10/0565H01M2/145H01M4/139H01M6/42H01M10/04H01M10/0472H01M10/0525H01M10/0562H01M10/058H01M10/0585Y10T29/49115
    • A battery having a laminate structure of alternating layers of polymer matrix material and solid-state battery elements is fabricated. Individual solid-state battery elements are created in a deposition apparatus, each battery element having successive solid-state thin films concentrically formed over a conductive wire substrate to define anode, electrolyte and cathode active layers sandwiched between inner and outer current collectors. Inner current collectors are electrically coupled to each other (and likewise the outer current collectors) such that battery elements are connected in a specified series and parallel arrangement. Sets of the individual battery elements are laid upon cloth layers such that outer current collectors of the battery elements physically contact the cloth and the cloth layers are impregnated with selected thermoplastic or thermosetting resin, the impregnated cloth layers and their respective contacting battery elements are stacked to form a composite laminate. The laminate is compacted and cured, and the battery elements of the various layers are coupled to external electrodes. The battery elements double as load components for the laminate structure.
    • 制造具有聚合物基体材料和固体电池元件的交替层的叠层结构的电池。 在沉积设备中产生单独的固态电池元件,每个电池元件具有在导线基板上同心地形成的连续的固态薄膜,以限定夹在内部和外部集电器之间的阳极,电解质和阴极活性层。 内部集电器彼此电耦合(以及外部集电器),使得电池元件以指定的串联和并联布置连接。 将单个电池元件的组放置在布层上,使得电池元件的外部集流器物理接触布,并且布层浸渍有选定的热塑性或热固性树脂,浸渍的布层及其各自的接触电池元件被堆叠到 形成复合层压板。 层压体被压实和固化,并且各层的电池元件被耦合到外部电极。 电池元件作为叠层结构的负载组件加倍。