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    • 2. 发明专利
    • Method for hermetically sealing optical fiber
    • 密封光纤的方法
    • JP2003075653A
    • 2003-03-12
    • JP2001268242
    • 2001-09-05
    • Mitsubishi Electric Corp三菱電機株式会社
    • KAWAHARA YUJIHARA SHOICHIROMORIYASU MASAHARUNISHITANI SHOICHIROMASUDA HISATOSHI
    • G02B6/00
    • PROBLEM TO BE SOLVED: To provide a method for hermetically sealing an optical fiber by which the deterioration of the optical transmission characteristic of the optical fiber is suppressed in a process in which the optical fiber is sealed by soldering in a fiber feed through. SOLUTION: In the method for hermetically sealing optical fibers 3 by which the plurality of optical fibers 3 introduced into a pressure-resistant casing are hermetically sealed with solder filled in a solder sealing part 25 in the fiber feed through 18, the solder filled in the solder sealing part 25 is molten with a heating means (heating coil) 30 and the molten solder is successively solidified from the side of the sealing bottom part 25a of the solder sealing part 25 to the side of the sealing top part 25b of the solder sealing part 25.
    • 要解决的问题:提供一种密封光纤的方法,在光纤通过在纤维馈送中通过焊接来密封光纤的过程中,抑制光纤的光传输特性的劣化的光纤被抑制。 解决方案:在密封光纤3的方法中,引入耐压外壳的多根光纤3通过18填充在纤维进料中的焊料密封部分25中的焊料气密密封,填充在 焊接密封部25与加热装置(加热线圈)30熔融,熔融焊料从焊料密封部25的密封底部25a侧向焊料密封的密封顶部25b侧依次固化 第25部分。
    • 7. 发明专利
    • Optical fiber introduction part sealing method and optical fiber sealing member used for the same
    • 光纤介绍部分密封方法和用于其的光纤密封部件
    • JP2003279821A
    • 2003-10-02
    • JP2002085104
    • 2002-03-26
    • Mitsubishi Electric Corp三菱電機株式会社
    • DOBASHI YUUSUKEMASUDA HISATOSHIKAWAHARA YUJINISHITANI SHOICHIROMORIYASU MASAHARUHARA SHOICHIRO
    • G02B6/24G02B6/46
    • PROBLEM TO BE SOLVED: To provide an optical fiber introduction sealing method for excellently forming a fillet part and an optical fiber sealing member used for it. SOLUTION: A bar-shaped low melting point metal member 31 is arranged at the gap of a sleeve 13 and a fiber guide 12 and a ring-like low melting point metal member 32 is arranged at the end part of the sleeve 13 further. By a heating device 40, the low melting point metal members 31 and 32 are heated and melted. At the time, by melting the ring-like low melting point metal member 32 so as to fill the inner side, the fillet part in a desired mountain base shape is formed from the end of the sleeve 13 to the fiber guide 12. As a result, stress loads on an optical fiber 11 by a sealing member 14 are surely relaxed and the decline of the performance of the optical fiber 11 is prevented. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种用于良好地形成圆角部分的光纤引入密封方法和用于其的光纤密封构件。 解决方案:在套筒13和纤维引导件12的间隙处布置有棒状低熔点金属构件31,并且在套筒13的端部设置环状低熔点金属构件32 进一步。 通过加热装置40,将低熔点金属部件31,32加热熔融。 此时,通过使环状低熔点金属构件32熔化以填充内侧,所需的山形基部形状的圆角部从套筒13的端部形成为纤维导向件12.作为 结果,通过密封构件14在光纤11上的应力负载被确定地松弛,并且防止了光纤11的性能的下降。 版权所有(C)2004,JPO
    • 9. 发明专利
    • Battery having spiral electrode body and its manufacture
    • 具有螺旋电极体的电池及其制造
    • JP2000077091A
    • 2000-03-14
    • JP24189698
    • 1998-08-27
    • Mitsubishi Electric Corp三菱電機株式会社
    • TAKEMURA DAIGOURUSHIBATA HIROAKIOZAKI HIROCHIKAICHIMURA HIDEOKAWAGUCHI KENJIMORIYASU MASAHARUOKAMURA MASAMITSUOGA TAKUYASHIODA HISASHIARAKANE ATSUSHIYOSHIOKA SEIJIKICHISE MAKIKOAIHARA SHIGERUDAITOKU OSAMU
    • H01M10/04H01M4/139H01M10/05H01M10/0587H01M10/38H01M10/40
    • Y02E60/122Y02P70/54
    • PROBLEM TO BE SOLVED: To enhance productivity and reliability by preventing adhesion of a adhesive to a winding core.
      SOLUTION: A positive electrode and a negative electrode prepared by forming active material layers 3, 6 on current collector 2, 5 are wound through a separator 7 and opposingly disposed, and at least one of the positive electrode and the negative electrode and the separator 7 are stuck with an adhesive 9 to from an electrode body of a battery. A part of the positive electrode and the separator 7, the negative electrode and the separator 7, the positive electrode, the negative electrode, or the separator 7 is partly held between a pair of facing winding cores 8, the winding cores 8 are rotated so as to be covered, and the remaining part of the positive electrode, the negative electrode, and the separator is stuck with the adhesive 9, and they are wound to form the electrode body. This battery continuously has three layers of a stacked body of the current collector of one electrode and the separator 7, the current collector of one electrode, or the separator 7 in the central part, and the current collector of the other electrode and the current collector of one electrode are wound in the outer circumference of the three layers to form the electrode body.
      COPYRIGHT: (C)2000,JPO
    • 要解决的问题:通过防止粘合剂粘附到卷芯上,提高生产率和可靠性。 解决方案:通过在集电器2,5上形成活性物质层3,6而制备的正极和负极通过隔板7卷绕并相对设置,并且正电极和负极和隔板7中的至少一个 从电池的电极体粘附有粘合剂9。 正极和隔离物7,负极和隔板7,正极,负极或隔板7的一部分部分地保持在一对相对的绕组芯8之间,绕组芯8旋转 被覆盖,并且将正极,负极和隔板的剩余部分粘贴在粘合剂9上,并且它们被卷绕以形成电极体。 该电池连续地具有一个电极的集电体和中间部分的隔膜7,一个电极的集电体或隔板7的三个层叠体,另一个电极的集电体和集电体 在三层的外周缠绕一根电极,形成电极体。
    • 10. 发明专利
    • Wire electric discharge device and power feeding element of wire electric discharge device
    • 电力放电装置的电力放电装置和功率馈送元件
    • JP2006187824A
    • 2006-07-20
    • JP2005000672
    • 2005-01-05
    • Mitsubishi Electric CorpRyoden Koki Engineering Kk三菱電機株式会社菱電工機エンジニアリング株式会社
    • HAYASHI OSAMUMORIYASU MASAHARUICHIMURA HIDEOSUYAMA KEIICHIROKAJIMA SHUJI
    • B23H7/10C22C27/04
    • PROBLEM TO BE SOLVED: To provide a wire electric discharge device which is equipped with a power feeding element that is small in wearing, undergoes only a small corrosion phenomenon at a binding phase of a cemented carbide, and exerts drastically improved workability, and to provide the power feeding element of the wire electric discharge device. SOLUTION: The wire electric discharge device is set up by arranging a wire electrode through a workpiece so as to continuously move with a gap therebetween, feeding a machining liquid into the gap, arranging the power feeding elements so as to make contact with the wire electrode, and feeding pulse voltage via the power feeding elements, whereby the workpiece is subjected to intermittent discharging across the gap. The power feeding element is formed of one sintered metal selected from the group consisting of W-Ti (tungsten-titanium), W-Ni-Fe-Mo (tungsten-nickel-iron-molybdenum), and W-Ti-Ni-Mo (tungsten-titanium-nickel-molybdenum). COPYRIGHT: (C)2006,JPO&NCIPI
    • 解决问题的方案为了提供一种配备有磨损小的供电元件的电线放电装置,在硬质合金的结合阶段仅发生小的腐蚀现象,并且显着提高了可加工性, 并提供电线放电装置的馈电元件。 解决方案:电线放电装置通过将线电极布置在工件上而间隙连续移动而设置,将加工液供给到间隙中,将供电元件布置成与 线电极,以及通过供电元件供给脉冲电压,由此工件在间隙上经受间歇放电。 供电元件由选自W-Ti(钨 - 钛),W-Ni-Fe-Mo(钨 - 镍 - 铁 - 钼)和W-Ti-Ni-Mo组成的组中的一种烧结金属形成 (钨 - 钛 - 镍 - 钼)。 版权所有(C)2006,JPO&NCIPI