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    • 1. 发明授权
    • Electrolytic solution for electrolytic capacitor
    • 电解电解电解液
    • US09111685B2
    • 2015-08-18
    • US13636966
    • 2011-03-25
    • Junichi KawakamiMasao SakakuraMasashi Ozawa
    • Junichi KawakamiMasao SakakuraMasashi Ozawa
    • H01G9/035
    • H01G9/035
    • A hydrophobic film is formed on the electrode foil surface by adding a straight-chain saturated dicarboxylic acid represented by the general formula: HOOC(CH2)nCOOH (wherein n indicates an integer from 9 to 11) to the electrolytic solution for medium/high-voltage electrolytic capacitor. Addition of a large amount of water to the electrolytic solution is allowed since this hydrophobic film suppresses the hydration reaction between the electrode foil and water. Further, it is possible to retain good lifespan property of the electrolytic capacitor in a medium/high-voltage electrolytic solution by having low specific resistance property and by suppressing the hydration decomposition of the electrode foil, wherein the electrolytic solution is azelaic acid, sebacic acid, 1-methyl-azelaic acid, 1,6-decanedicarboxylic acid, or a salt thereof dissolved in a solvent having ethylene glycol as the main component.
    • 通过将由通式HOOC(CH 2)n COOH(其中n表示9〜11的整数)表示的直链饱和二羧酸加入到中等/高压电解液的电解液中,在电极箔表面上形成疏水膜, 电压电解电容器。 因为这种疏水膜抑制电极箔和水之间的水合反应,所以允许向电解液中加入大量的水。 此外,通过具有低电阻特性和抑制电极箔的水合分解,可以将电解电容器的寿命特性保持在中高压电解液中,其中电解液是壬二酸,癸二酸 ,1-甲基 - 壬二酸,1,6-癸二羧酸或其盐溶于以乙二醇为主要成分的溶剂中。
    • 5. 发明申请
    • ELECTROLYTIC SOLUTION FOR ELECTROLYTIC CAPACITOR
    • 电解电容器电解液
    • US20130063868A1
    • 2013-03-14
    • US13636966
    • 2011-03-25
    • Junichi KawakamiMasao SakakuraMasashi Ozawa
    • Junichi KawakamiMasao SakakuraMasashi Ozawa
    • H01G9/035H01G9/145
    • H01G9/035
    • A hydrophobic film is formed on the electrode foil surface by adding a straight-chain saturated dicarboxylic acid represented by the general formula: HOOC(CH2)nCOOH (wherein n indicates an integer from 9 to 11) to the electrolytic solution for medium/high-voltage electrolytic capacitor. Addition of a large amount of water to the electrolytic solution is allowed since this hydrophobic film suppresses the hydration reaction between the electrode foil and water. Further, it is possible to retain good lifespan property of the electrolytic capacitor in a medium/high-voltage electrolytic solution by having low specific resistance property and by suppressing the hydration decomposition of the electrode foil, wherein the electrolytic solution is azelaic acid, sebacic acid, 1-methyl-azelaic acid, 1,6-decanedicarboxylic acid, or a salt thereof dissolved in a solvent having ethylene glycol as the main component.
    • 通过将由通式HOOC(CH 2)n COOH(其中n表示9〜11的整数)表示的直链饱和二羧酸加入到中等/高压电解液的电解液中,在电极箔表面上形成疏水膜, 电压电解电容器。 因为这种疏水膜抑制电极箔和水之间的水合反应,所以允许向电解液中加入大量的水。 此外,通过具有低电阻特性和抑制电极箔的水合分解,可以将电解电容器的寿命特性保持在中高压电解液中,其中电解液是壬二酸,癸二酸 ,1-甲基 - 壬二酸,1,6-癸二羧酸或其盐溶于以乙二醇为主要成分的溶剂中。
    • 6. 发明申请
    • ELECTROLYTIC CAPACITOR
    • 电解电容器
    • US20090034161A1
    • 2009-02-05
    • US12088703
    • 2006-09-29
    • Masayuki TakedaHiroo MiyauchiMasashi Ozawa
    • Masayuki TakedaHiroo MiyauchiMasashi Ozawa
    • H01G9/035H01G9/042H01G9/045
    • H01G9/10H01G9/008H01G9/151
    • Provided is an electrolytic capacitor which is advantageous in that an electrolyte is remarkably prevented from leaking from the anode.The present invention is directed to an electrolytic capacitor comprising: a capacitor element which comprises an anode foil with an anode lead means and a cathode foil with a cathode lead means being spirally wound together with a separator disposed therebetween, the capacitor element being impregnated with an electrolyte; a casing for containing therein the capacitor element; and a closure for sealing up an opening portion of the casing, wherein the anode lead means has a ceramic coating layer and/or an insulating synthetic resin layer at least part of the portion in contact with the closure.
    • 提供一种电解电容器,其优点在于显着地防止电解质从阳极泄漏。 本发明涉及一种电解电容器,包括:电容器元件,其包括具有阳极引线装置的阳极箔和具有阴极引线装置的阴极箔,阴极引线装置与设置在其间的隔膜螺旋缠绕在一起,电容器元件浸渍有 电解液 用于容纳电容器元件的壳体; 以及用于密封壳体的开口部分的封闭件,其中阳极引线装置具有与封闭件接触的部分的至少一部分的陶瓷涂层和/或绝缘合成树脂层。
    • 7. 发明授权
    • Electrolytic capacitor
    • 电解电容器
    • US07262953B2
    • 2007-08-28
    • US10534184
    • 2003-11-07
    • Masashi OzawaMasayuki TakedaMakoto Ue
    • Masashi OzawaMasayuki TakedaMakoto Ue
    • H01G9/00H01G4/228
    • H01G9/008H01G9/02H01G9/035H01G9/045H01G9/151Y10T29/41Y10T29/417
    • An electrolytic capacitor having a low impedance characteristic, having a high withstand voltage characteristic of 100V class, wherein the electrolytic capacitor provides an excellent high temperature life characteristic and an excellent leakage characteristic.The electrolyte solution containing the aluminum tetrafluoride salt is used. The electrolytic capacitor of the present invention has a low impedance characteristic, a high withstand voltage characteristic, and an excellent high temperature life characteristic. Moreover, the aforementioned electrolyte solution is used, and a foil showing noble potential at least in the electrolyte solution than the electrode potential of the cathode tab, or a cathode electrode foil subjected to chemical treatment is used as the cathode electrode foil, so as to obtain an excellent leakage characteristic.
    • 具有低阻抗特性的电解电容器具有100V等级的高耐压特性,其中电解电容器提供优异的高温寿命特性和优异的泄漏特性。 使用含有四氟化铝盐的电解液。 本发明的电解电容器具有低阻抗特性,高耐压特性和优异的高温寿命特性。 此外,使用上述电解质溶液,并且使用至少在电解质溶液中显示比阴极片的电极电位或具有化学处理的阴极箔的电位高的箔作为阴极电极箔,以便 获得极好的泄漏特性。
    • 8. 发明申请
    • Ultrasonic probe
    • 超声波探头
    • US20060241467A1
    • 2006-10-26
    • US10550835
    • 2004-03-24
    • Junichi TakedaMasashi Ozawa
    • Junichi TakedaMasashi Ozawa
    • A61B8/14
    • G10K9/18A61B8/4455
    • An ultrasonic probe according to the present invention includes: an ultrasonic element for transmitting and receiving an ultrasonic signal; a signal line for transmitting an electric signal to or from the ultrasonic element; and a ground line for supplying a ground potential to the ultrasonic element. The ultrasonic element is connected electrically with a sensor signal substrate and a sensor ground substrate. These substrates are connected electrically with the signal line and the ground line, respectively, via a cable substrate. The sensor ground substrate and the cable substrate are connected directly or via a relay ground substrate.
    • 根据本发明的超声波探头包括:超声波元件,用于发送和接收超声波信号; 用于向超声波元件发送电信号的信号线; 以及用于向超声波元件提供接地电位的接地线。 超声波元件与传感器信号基板和传感器接地基板电连接。 这些基板分别经由电缆基板与信号线和接地线电连接。 传感器接地基板和电缆基板直接连接或通过继电器接地基板连接。
    • 9. 发明申请
    • Electrolytic capacitor
    • 电解电容器
    • US20060152882A1
    • 2006-07-13
    • US10534212
    • 2003-11-07
    • Masayuki TakedaMakoto UeMasashi Ozawa
    • Masayuki TakedaMakoto UeMasashi Ozawa
    • H01G2/00
    • H01G9/028H01G9/02
    • An electrolytic capacitor having a low impedance characteristic, having a high withstand voltage characteristic of 100V class, wherein the electrolytic capacitor provides an excellent high temperature life characteristic and an excellent moisture resistance characteristic. The electrolyte solution containing the aluminum tetrafluoride salt is used. As separator in use comprises a heat resistant synthetic resin such as polyester, polypropylene, polyethylene, polyamido, vinylon, rayon, and the like, or a mixed paper containing glass fiber is used, the electrolytic capacitor has a low impedance characteristic, a high withstand voltage characteristic, and an excellent high temperature life characteristic.
    • 具有低阻抗特性的电解电容器,具有100V级的高耐受电压特性,其中电解电容器提供优异的高温寿命特性和优异的耐湿特性。 使用含有四氟化铝盐的电解液。 作为使用中的隔膜,使用聚酯,聚丙烯,聚乙烯,聚酰胺,维尼纶,人造纤维等耐热合成树脂,或者含有玻璃纤维的混合纸,电解电容器具有低阻抗特性,高耐受性 电压特性,以及优异的高温寿命特性。
    • 10. 发明授权
    • Method for partly reinforcing a workpiece
    • 部分加固工件的方法
    • US06742374B2
    • 2004-06-01
    • US10078966
    • 2002-02-19
    • Masashi Ozawa
    • Masashi Ozawa
    • B21D3716
    • B21J1/06B21D22/022B23P9/00C21D1/40C21D9/46C21D2221/00
    • A method is disclosed for partly reinforcing a workpiece which is capable of reinforcing the reinforcement requiring part of the workpiece on which stress is liable to be concentrated upon use of the workpiece. A workpiece 1 made of metal having a reinforcement requiring part 10 and a forming die 3 are provided. The reinforcement requiring part 10 of the workpiece 1 is heated up to a higher temperature than the other part 18. The reinforcement-requiring part 10 is quenched and reinforced as compared to the other part 18 by bringing the forming surface area of the forming die 3 into direct contact with at least the reinforcement-requiring part 10 of the workpiece 1 which is then strongly pressed.
    • 公开了一种用于部分地加强工件的方法,该方法能够加强需要工件的一部分的加强件,在使用工件时应力易于集中。 提供由具有加强件需要部件10和成形模具3的金属制成的工件1。 加工要求工件1的部分10被加热到比其他部分18更高的温度。通过使成形模具3的成形表面积与其它部分18相比,加固需要部分10被淬火和增强 与工件1的至少加固需要部分10直接接触,然后被强力地按压。