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公开(公告)号:KR20180030031A
公开(公告)日:2018-03-21
申请号:KR20187000821
申请日:2016-07-08
Applicant: SUMITOMO ELECTRIC INDUSTRIES
Inventor: HIRAIWA CHIHIRO , MAJIMA MASATOSHI , TAWARAYAMA HIROMASA , MIZUHARA NAHO , HIGASHINO TAKAHIRO , NODA YOHEI , MIYAMOTO KAZUNARI , YOSHIDA TOSHIHIRO
IPC: H01M8/0232 , H01M8/0204 , H01M8/1004 , H01M8/1213 , H01M8/124
CPC classification number: H01M4/86 , H01M8/02 , H01M8/0202 , H01M8/12
Abstract: 캐소드, 애노드및, 상기캐소드및 상기애노드의사이에개재하는고체전해질층을구비하고있고, 상기고체전해질층이이온전도성을갖는고체산화물을포함하는, MEA와, 상기캐소드및 상기애노드중 적어도한쪽에인접하고, 또한, 3차원그물코형상의골격을갖는적어도 1개의제1 금속다공체와, 상기제1 금속다공체에인접하여적층되고, 또한, 3차원그물코형상의골격을갖는제2 금속다공체와, 상기제2 금속다공체에인접하는인터커넥터를구비하고, 상기제1 금속다공체의기공경이, 상기제2 금속다공체의기공경보다도작은, 연료전지.
Abstract translation: 该燃料电池具备:设置有阴极,阳极和介于阴极与阳极之间的固体电解质层的MEA,该固体电解质层含有显示离子传导性的固体氧化物; 一个或多个具有三维网状结构且与阴极和/或阳极相邻的第一金属多孔体; 具有三维网状结构并与第一金属多孔体相邻地层叠的第二金属多孔体; 以及与第二金属多孔体相邻的互连器。 其中,第一金属多孔体的孔径小于第二金属多孔体的孔径。
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公开(公告)号:WO2014050536A8
公开(公告)日:2015-03-12
申请号:PCT/JP2013074334
申请日:2013-09-10
Applicant: SUMITOMO ELECTRIC INDUSTRIES , SUMITOMO ELECTRIC TOYAMA CO
Inventor: OKUNO KAZUKI , KATO MASAHIRO , AWAZU TOMOYUKI , MAJIMA MASATOSHI , TSUKAMOTO KENGO , TSUCHIDA HITOSHI , SAITO HIDETOSHI
CPC classification number: C23C16/56 , B22F3/1137 , B22F3/1146 , B22F2998/10 , C22C1/08 , C22C19/05 , C23C18/1657 , C25D1/08 , C25D5/12 , C25D5/14 , C25D5/50 , H01B1/02 , H01B13/0036 , H01G11/68 , H01G11/70 , H01M4/661 , H01M4/667 , H01M4/80 , H01M4/8605 , H01M4/8803 , Y02E60/13 , Y10T428/12479
Abstract: Provided is a metallic porous body exhibiting excellent corrosion resistance compared to conventional metallic porous bodies formed from a nickel-tin binary alloy and metallic porous bodies formed from a nickel-chrome binary alloy. A metallic porous body at least containing nickel, tin, and chrome. One example of a method for producing such a metallic porous body is a method involving: a conductive cover layer formation step in which a conductive cover layer containing chrome is formed on the surface of a porous body base material formed from a resin material; a metal layer formation step in which a nickel layer and a tin layer are formed in a given order on the surface of the conductive cover layer; a removal step in which the porous body base material is removed; and a dispersion step in which the metal atoms in the nickel layer and the tin layer are dispersed between the nickel layer and the tin layer by being subjected to heat treatment, and the chrome contained in the conductive cover layer is dispersed into the nickel layer and the tin layer.
Abstract translation: 提供了与由镍 - 锡二元合金形成的常规金属多孔体和由镍 - 铬二元合金形成的金属多孔体相比,具有优异的耐腐蚀性的金属多孔体。 至少含有镍,锡和铬的金属多孔体。 制造这种金属多孔体的方法的一个实例是一种方法,包括:导电覆盖层形成步骤,其中在由树脂材料形成的多孔体基材的表面上形成包含铬的导电覆盖层; 金属层形成步骤,其中在导电覆盖层的表面上以给定的顺序形成镍层和锡层; 去除多孔体基材的去除步骤; 以及分散步骤,其中镍层和锡层中的金属原子通过进行热处理而分散在镍层和锡层之间,并且包含在导电覆盖层中的铬分散在镍层中, 锡层。
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公开(公告)号:CA3091893A1
公开(公告)日:2019-08-29
申请号:CA3091893
申请日:2018-12-06
Inventor: OKUNO KAZUKI , HIGASHINO TAKAHIRO , TAWARAYAMA HIROMASA , MAJIMA MASATOSHI , MASUMURA HARUKI , KURODA YOSHIYUKI , MITSUSHIMA SHIGENORI
IPC: C22C1/08 , C22C18/00 , C22C19/03 , C22F1/00 , C22F1/10 , C23F1/02 , C23F1/44 , C25D1/08 , C25D7/00
Abstract: A porous metal body which has a three-dimensional network structure, and which is provided with a skeleton that forms the three-dimensional network structure and a cover layer that has fine pores and covers the skeleton. The three-dimensional network structure is provided with support column parts and a plurality of node parts that connect the support column parts; the skeleton contains a first metal that has alkali resistance; the fine pores have an average pore diameter of from 10 nm to 1 µm (inclusive); the cover layer contains a second metal that has alkali resistance, and may contain an alkali-soluble metal; and the content ratio of the alkali-soluble metal is from 0% by mass to 30% by mass (inclusive) based on the total mass of the skeleton and the cover layer.
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公开(公告)号:CA2720866C
公开(公告)日:2012-10-16
申请号:CA2720866
申请日:2009-04-02
Applicant: SUMITOMO ELECTRIC INDUSTRIES
Inventor: MAJIMA MASATOSHI , INAZAWA SHINJI , NITTA KOJI , YAMAKAWA MASAHIRO , SUGIHARA TAKAYASU , TAKEDA YASUHIRO , AKAHANE YOSHIHIRO , IMAI TAKAHIRO
Abstract: [Object] To provide a gas decomposition apparatus and a gas decomposition method in which no safety problems occur in spite of the application of a relatively high voltage between an anode and a cathode for the purpose of decomposing odorous gases of many types. [Solution] A catalytic electrode layer 6 that contains a catalyst and is porous; a counter electrode layer 7 that forms a pair with the catalytic electrode; and an electrolyte layer 15 that is sandwiched between the catalytic electrode and the counter electrode and has ion conductivity are included. The catalyst is held by the catalytic electrode in the form of being carried by a carrier containing a conductive material or the catalyst is directly carried by the catalytic electrode. A conductive material in the catalytic electrode, the conductive material being in contact with the catalyst, is not a noncovalent carbon material.
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公开(公告)号:CA2765533A1
公开(公告)日:2011-11-03
申请号:CA2765533
申请日:2011-03-29
Applicant: SUMITOMO ELECTRIC INDUSTRIES
Inventor: SAKAI SYOICHIRO , INAZAWA SHINJI , MAJIMA MASATOSHI , NITTA KOJI , FUKUNAGA ATSUSHI
Abstract: Disclosed is an electrode for a molten salt battery, which comprises: a collector (11) that is connected to an electrode terminal of a molten salt battery; and an active material (12). The collector (11) has an internal space (13) wherein small spaces (14) are connected with each other. The internal space (13) of the collector (11) is filled with the active material (12).
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公开(公告)号:CA2796840A1
公开(公告)日:2011-10-27
申请号:CA2796840
申请日:2011-04-11
Applicant: SUMITOMO ELECTRIC INDUSTRIES
Inventor: HIRAIWA CHIHIRO , MAJIMA MASATOSHI , NITTA KOJI , SAKAI SHOICHIRO , FUKUNAGA ATSUSHI , INAZAWA SHINJI
Abstract: Provided is a molten salt battery device and a temperature control method for a molten salt battery, which enable the molten salt battery temperature to be controlled at a uniform temperature and which also enable easy cooling. The molten salt battery device arranges a plurality of molten salt batteries (1) within a container (2) such that space is provided around the molten salt batteries (1), fills the space around the molten salt batteries (1) with a heat medium (3), and makes the heat medium (3) flow while controlling the temperature of the heat medium (3) with a temperature control unit (52) by the use of an electric heater (51). The molten salt battery device controls the temperature of the molten salt battery (1) by the heat exchange between the flowing heat medium (3) and the molten salt battery (1). The internal temperature of the molten salt battery (1) is controlled to a uniform temperature by the heat exchange with the heat medium (3) that surrounds the molten salt battery (1). The molten salt battery device can also easily cool the molten salt battery (1) by reducing the temperature of the heat medium (3).
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公开(公告)号:DE60323473D1
公开(公告)日:2008-10-23
申请号:DE60323473
申请日:2003-03-03
Applicant: SUMITOMO ELECTRIC INDUSTRIES
Inventor: KASHIHARA HIDEKI , YAMAMOTO MASAMICHI , YORITA JUN , TOSHIOKA HIDEAKI , OSOEGAWA MISAKO , KOYAMA KEIJI , MAJIMA MASATOSHI , TANI YOSHIE
IPC: H01R11/01 , G01R1/067 , G01R1/073 , G01R3/00 , H01B5/16 , H01B13/00 , H01R4/04 , H01R43/00 , H05K3/32
Abstract: An anisotropic conductive film, and its production method, especially suitable for mounting a semiconductor package and sufficiently satisfying the requirements of higher density mounting because short circuit does not occur in the plane direction of the film even if the pitch of electrodes is small, or suitable for mounting a contact probe because conductive connection not fused with a high current can be ensured with a lower pressure and even a high frequency signal can be dealt with. The anisotropic conductive film contains metal powder having such a shape that many fine metal particles are linked as a conductive component, wherein the length of the chain of metal powder is set not longer than the distance between adjacent electrodes being bonded conductively when a semiconductor package is mounted, and the diameter of the chain is set in the range of 1 mu m-20 mu m when a contact probe is mounted. At least a part of the film is formed while orienting a chain formed of a paramagnetic metal with a magnetic field.
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公开(公告)号:DE112020006889T5
公开(公告)日:2022-12-29
申请号:DE112020006889
申请日:2020-12-23
Applicant: SUMITOMO ELECTRIC INDUSTRIES
Inventor: NAKAJIMA TETSUYA , MATSUOKA AKIFUMI , MAJIMA MASATOSHI , OGAWA MITSUYASU , KANDA RYOKO , SAKAIDA HIDEAKI
Abstract: Gummikomplex umfassend ein Stahlkabel und einen Gummi, der mindestens einen Teil einer Oberfläche des Stahlkabels bedeckt, wobei eine erste Beschichtung, Cu enthält, an einer Stirnseite in der Längsrichtung des Stahlkabel angeordnet ist.
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公开(公告)号:DE112015001774T5
公开(公告)日:2016-12-22
申请号:DE112015001774
申请日:2015-04-07
Applicant: SUMITOMO ELECTRIC INDUSTRIES
Inventor: UEDA MITSUYASU , MAJIMA MASATOSHI
Abstract: Elektrizitätsspeichereinrichtung, die aufweist: eine Elektrodengruppe, die eine erste Elektrode, eine zweite Elektrode und einen Trenner, der die erste Elektrode von der zweiten Elektrode elektrisch isoliert, aufweist; einen Elektrolyt; ein Gehäuse, das die Elektrodengruppe und den Elektrolyt aufnimmt und eine Öffnung aufweist; und eine Dichtungsplatte, welche die Öffnung des Gehäuses abdichtet. Die Dichtungsplatte weist ein Entgasungsventil auf. Das Entgasungsventil weist einen kreisförmigen leicht zerbrechlichen Teil auf. Der leicht zerbrechliche Teil weist eine erste lineare Nut, eine zweite lineare Nut und eine dritte lineare Nut auf. Erste Enden der ersten Nut, der zweiten Nut und der dritten Nut treffen sich im Zentrum des leicht zerbrechlichen Teils.
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公开(公告)号:DE112014004278T5
公开(公告)日:2016-06-02
申请号:DE112014004278
申请日:2014-09-10
Applicant: SUMITOMO ELECTRIC INDUSTRIES
Inventor: UEDA MITSUYASU , MAJIMA MASATOSHI
IPC: H01M2/04 , H01G11/68 , H01G11/72 , H01G11/82 , H01M2/02 , H01M10/0568 , H01M10/058
Abstract: Eine Elektrizitätsspeichervorrichtung weist eine Elektrodengruppe einschließlich einer ersten Elektrode, einer zweiten Elektrode und einem Separator, der die erste Elektrode und die zweite Elektrode elektrisch isoliert, einen Elektrolyt, ein am Boden geschlossenes Gehäuse mit einer offenen Kante, das die Elektrodengruppe und den Elektrolyt aufnimmt, und eine Dichtungsplatte auf, die den offenen Rahmen des Gehäuses abdichtet, die Dichtungsplatte weist eine erste Hauptfläche, die einer Außenseite des Gehäuses zugewandt ist und eine zweite Hauptfläche auf, die einer Innenseite des Gehäuses zugewandt ist. Die erste Elektrode weist einen plattenförmigen ersten Stromkollektor und ein von dem ersten Stromkollektor getragenes erstes aktives Material auf, und die zweite Elektrode weist einen plattenförmigen zweiten Stromkollektor und ein von dem zweiten Stromkollektor getragenes zweites aktives Material auf.
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