쌍극판, 셀 프레임 및 셀 스택, 및 레독스 플로우 전지
    1.
    发明公开
    쌍극판, 셀 프레임 및 셀 스택, 및 레독스 플로우 전지 审中-公开
    双极板,电池框架和电池堆,以及氧化还原液流电池

    公开(公告)号:KR20180020165A

    公开(公告)日:2018-02-27

    申请号:KR20177036684

    申请日:2016-06-16

    CPC classification number: H01M8/02 H01M8/18 Y02E60/528

    Abstract: 제1 면측에정극전극이배치되고, 제2 면측에부극전극이배치되는전지용의쌍극판으로서, 상기제1 면, 상기제2 면중 적어도한쪽면은, 전해액이유통되는유로를구비하고, 상기유로는, 상기전해액의도입구와, 상기전해액의배출구와, 상기도입구와상기배출구사이에서, 상기전해액을미리정해진경로로안내하는홈부를구비하며, 상기홈부는, 상기쌍극판을전지의미리정해진위치에배치했을때에, 연직방향을따르고, 그연직방향과직교하는방향으로병렬되는복수의세로홈부를구비하는쌍극판.

    Abstract translation: 第一双极板,其中所述正电极设置在表面侧,设置在所述第二表面侧的细胞,所述第一表面的负电极,所述第二myeonjung至少一侧上设置有流路,其电解液循环,流路 是,之间和与所述电解液入口,电解液的出口处,上呼吸道的入口和出口,和用于引导电解液的预定路径具有凹槽,其中所述凹槽部中,双极板的电池的预定位置 并且,多个纵向槽在与铅直方向正交的方向上沿着铅垂方向平行地配置。

    Redox flow battery
    3.
    发明专利

    公开(公告)号:AU2016391240B2

    公开(公告)日:2021-10-21

    申请号:AU2016391240

    申请日:2016-02-03

    Abstract: The present invention provides a redox flow battery in which the diaphragm is not likely to be damaged. This redox flow battery comprises: a pair of mutually adjacent cell frames that have a frame body in which a circulation channel for an electrolyte is formed, and that have bipolar plates positioned inside the frame body; a positive electrode and a negative electrode disposed so as to face each other between the bipolar plates of the pair of cell frames; a diaphragm interposed between the positive electrode and the negative electrode; a protective plate that covers the circulation channel and pushes the edge parts of the positive electrode or the negative electrode toward the bipolar plates; and a diaphragm protection structure that prevents the diaphragm from being torn by contact between the protective plate and the diaphragm.

    Redox-Flussbatterie, Elektrode für Redox-Flussbatterie und Elektrodencharakteristik-Evaluierungsverfahren

    公开(公告)号:DE112016006180T5

    公开(公告)日:2018-09-20

    申请号:DE112016006180

    申请日:2016-01-07

    Abstract: Es werden eine Redox-Flussbatterie mit einem niedrigen Innenwiderstand, eine in einer Redox-Flussbatterie verwendete Elektrode und ein Elektrodencharakteristik-Evaluierungsverfahren, mit welchem eine Charakteristik eine Elektrode einfach und genau evaluiert werden kann, bereitgestellt. Eine Redox-Flussbatterie beinhaltet zumindest ein Paar von Elektroden in einer gestapelten Weise, wobei die Elektroden eine Positiv-Elektrode und eine Negativ-Elektrode enthalten, welchen ein Elektrolyt zugeführt wird, und in welchem eine Batteriereaktion durchgeführt wird. In der Redox-Flussbatterie ist eine Gesamtfläche der Elektroden 40000 cmoder mehr und ist ein Anhaftverhältnis 1% oder mehr, wobei das Anhaftverhältnis ein Wert ist, der bestimmt wird durch, in einem Zustand, in welchem eine aus einer beliebigen Position der gestapelten Elektroden entnommene Probe, die eine vorbestimmte Größe aufweist, horizontal platziert wird, Tropfenlassen einer vorbestimmten Menge von reinem Wasser von oben auf die Probe, vertikales Platzieren der Probe, auf welcher das reine Wasser getropft worden ist, nachfolgendes Messen einer Masse der Probe und Dividieren einer Menge, welche berechnet wird durch Subtrahieren, vom Messwert, einer Masse der Probe vor dem Tropfen, durch eine Masse des getropften reinen Wassers.

    Frame body, cell frame, cell stack, and redox flow battery

    公开(公告)号:AU2016432005A1

    公开(公告)日:2018-07-12

    申请号:AU2016432005

    申请日:2016-12-08

    Abstract: A frame body, which is provided around a bipolar plate disposed between a positive electrode and a negative electrode of a redox flow battery, includes a positive electrode liquid supply slit and a positive electrode liquid discharge slit for supplying and discharging a positive electrode electrolyte to and from the positive electrode, the slits being provided on the one surface side of the frame body; and a negative electrode liquid supply slit and a negative electrode liquid discharge slit for supplying and discharging a negative electrode electrolyte to and from the negative electrode, the slits being provided on the other surface side of the frame body. At least one pair among a pair of inlets of the positive electrode liquid supply slit and the negative electrode liquid supply slit and a pair of outlets of the positive electrode liquid discharge slit and the negative electrode liquid discharge slit are provided so as to partly overlap each other in the thickness direction of the frame body.

    Bipolar plate, cell frame and cell stack, and redox flow battery

    公开(公告)号:AU2017275919A1

    公开(公告)日:2018-04-19

    申请号:AU2017275919

    申请日:2017-03-16

    Abstract: This bipolar plate is used in a battery having a positive pole electrode disposed on one surface side and a negative pole electrode disposed on the other surface side. At least one of the surfaces of the bipolar plate is provided with: a plurality of groove sections wherein an electrolytic solution flows; and ridge sections each located between adjacent groove sections. The groove sections comprise an inlet groove section and a discharge groove section that do not communicate with one another. Each of the ridge sections is provided with a rugged portion for suppressing the slippage of the positive pole electrode or the negative pole electrode in the alignment direction of adjacent groove sections . In at least a portion of the ridge section surface, the rugged portion is provided with a rough surface. The surface roughness of the rough surface is an arithmetic average roughness Ra of 0.1 μm to 10 μm inclusive.

    Bipolar Plate, Cell Frame, Cell Stack, and Redox Flow Battery

    公开(公告)号:AU2017275919B2

    公开(公告)日:2022-01-27

    申请号:AU2017275919

    申请日:2017-03-16

    Abstract: This bipolar plate is used in a battery having a positive pole electrode disposed on one surface side and a negative pole electrode disposed on the other surface side. At least one of the surfaces of the bipolar plate is provided with: a plurality of groove sections wherein an electrolytic solution flows; and ridge sections each located between adjacent groove sections. The groove sections comprise an inlet groove section and a discharge groove section that do not communicate with one another. Each of the ridge sections is provided with a rugged portion for suppressing the slippage of the positive pole electrode or the negative pole electrode in the alignment direction of adjacent groove sections . In at least a portion of the ridge section surface, the rugged portion is provided with a rough surface. The surface roughness of the rough surface is an arithmetic average roughness Ra of 0.1 μm to 10 μm inclusive.

    Redox flow battery cell, redox flow battery cell stack, and redox flow battery

    公开(公告)号:AU2017352547A1

    公开(公告)日:2019-03-28

    申请号:AU2017352547

    申请日:2017-09-08

    Abstract: A redox flow battery cell includes a positive electrode, a negative electrode, and a membrane interposed between the positive electrode and the negative electrode. The positive electrode and the negative electrode have an overlapping region where the positive electrode and the negative electrode overlap each other with the membrane therebetween, and at least one of the positive electrode and the negative electrode has a non-overlapping region where the positive electrode and the negative electrode do not overlap each other with the membrane therebetween. The total area of the non-overlapping region is 0.1% to 20% of the area of the overlapping region.

    Redox flow battery
    10.
    发明专利

    公开(公告)号:AU2016391240A1

    公开(公告)日:2018-08-09

    申请号:AU2016391240

    申请日:2016-02-03

    Abstract: The present invention provides a redox flow battery in which the diaphragm is not likely to be damaged. This redox flow battery comprises: a pair of mutually adjacent cell frames that have a frame body in which a circulation channel for an electrolyte is formed, and that have bipolar plates positioned inside the frame body; a positive electrode and a negative electrode disposed so as to face each other between the bipolar plates of the pair of cell frames; a diaphragm interposed between the positive electrode and the negative electrode; a protective plate that covers the circulation channel and pushes the edge parts of the positive electrode or the negative electrode toward the bipolar plates; and a diaphragm protection structure that prevents the diaphragm from being torn by contact between the protective plate and the diaphragm.

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