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    • 1. 发明专利
    • Characteristic evaluation method of lead conductor, and method of manufacturing lead conductor
    • 导线导体的特性评估方法及制造导线导体的方法
    • JP2014017174A
    • 2014-01-30
    • JP2012155042
    • 2012-07-10
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • KUSAKARI MISATONISHIKAWA TAICHIROSUGIHARA TAKAYASUTANAKA KOSUKEOKANO SATOSHICHIBA AKINOBUKAMIYA HIROSHISUGIYAMA HIROYASU
    • H01M2/30H01G11/22H01G13/00H01M2/06
    • Y02E60/13
    • PROBLEM TO BE SOLVED: To provide a characteristic evaluation method of a lead conductor, capable of quantitatively evaluating characteristics of the lead conductor used in an electric power storage device, and a method of manufacturing the lead conductor.SOLUTION: A metal plate 11 simulating a lead conductor of an electric power storage device is prepared, a part of the metal plate 11 is covered with a prescribed resin 12, and a test piece 10 for which the resin 12 is bonded to the metal plate 11 is prepared. A part where the resin 12 is formed in the test piece 10 and a counter electrode 120 are brought into contact with an electrolyte 110 for testing, simulating an electrolyte utilized in the electric power storage device, and are kept at a prescribed temperature. After the lapse of prescribed time, AC impedance of the test piece 10 is measured, and on the basis of the measured AC impedance, the diffusion resistance value of the metal plate 11 is obtained, on the basis of the measured AC impedance. When the resistance value of the metal plate 11 is large, it can be evaluated that the metal plate 11 and the resin 12 are excellent in adhesion, and the metal plate 11 is excellent in resistance to the electrolyte.
    • 要解决的问题:提供能够定量评价蓄电装置中使用的引线导体的特性的引线导体的特性评价方法以及引线导体的制造方法。解决方案:模拟 制备蓄电装置的引线导体,准备金属板11的一部分被规定的树脂12覆盖,并且准备将树脂12与金属板11接合的试验片10。 在测试片10中形成树脂12和对电极120的部分与用于测试的电解质110接触,模拟电力存储装置中使用的电解质,并保持在规定的温度。 经过规定时间后,测定试片10的交流阻抗,根据被测量的AC阻抗,根据测得的AC阻抗,求出金属板11的扩散电阻值。 当金属板11的电阻值大时,可以评价金属板11和树脂12的粘合性优异,并且金属板11对电解质的耐受性优异。
    • 3. 发明专利
    • Lead conductor, and electric power storage device
    • 引线导体和电力存储装置
    • JP2014017175A
    • 2014-01-30
    • JP2012155043
    • 2012-07-10
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • KUSAKARI MISATONISHIKAWA TAICHIROTANAKA KOSUKEOKANO SATOSHICHIBA AKINOBUKAMIYA HIROSHISUGIYAMA HIROYASU
    • H01M2/30H01G11/66H01M2/06
    • Y02E60/13
    • PROBLEM TO BE SOLVED: To provide a lead conductor for an electric power storage device which is excellent in resistance against an electrolyte over a long period of time, and the electric power storage device including the lead conductor.SOLUTION: A lead conductor 61 is used in an electric power storage device (for instance, a nonaqueous electrolyte battery 50) having a positive electrode, a negative electrode, an electrolyte and a container 51 for housing them, and a diffusion resistance value is 5×10Ω cmor higher. The diffusion resistance value is obtained as follows. The lead conductor 61 partially covered with a prescribed resin is turned to a test piece. With the electrolyte used in the electric power storage device, a part where the resin is formed in the test piece and a counter electrode are brought into contact. The state of keeping the electrolyte at 60°C is maintained for one week. After the lapse of one week, AC impedance of the test piece is measured. A resistance value of the lead conductor is obtained on the basis of the measured AC impedance, and the resistance value is defined as the diffusion resistance value. The lead conductor 61 is high in the diffusion resistance value, and is excellent in adhesion with the resin over a long period of time.
    • 要解决的问题:提供一种长时间对电解质的电阻优异的蓄电装置的引线导体,以及包括引线导体的蓄电装置。解决方案:使用引线导体61 在具有正极,负极,电解质和用于容纳它们的容器51的蓄电装置(例如非水电解质电池50)中,扩散阻力值为5×10&OHgr; 厘米高。 扩散电阻值如下获得。 部分地被规定的树脂覆盖的引线导体61转向试验片。 通过在蓄电装置中使用的电解质,使与试验片中形成树脂的部分和对置电极接触。 将电解液保持在60℃的状态保持一周。 经过一周后,测量试件的交流阻抗。 基于所测量的AC阻抗获得引线导体的电阻值,将电阻值定义为扩散电阻值。 引线导体61的扩散电阻值高,并且与树脂的长时间粘合性优异。
    • 5. 发明专利
    • Wear-resistant resin composition and wear-resistant insulated wire and resin tube using the same
    • 耐磨树脂组合物和耐磨绝缘线和使用它的树脂管
    • JP2011225673A
    • 2011-11-10
    • JP2010095199
    • 2010-04-16
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • FUJITA TAROOKANO SATOSHI
    • C08L23/28C08J5/16C08K3/26H01B3/44H01B7/02
    • PROBLEM TO BE SOLVED: To provide a resin composition excellent in flexibility, heat resistance, oil resistance, flame retardancy and processability and also excellent in wear resistance, and an insulated wire having an insulating coating and a resin tube comprising the resin composition.SOLUTION: The wear-resistant resin composition includes 50-100 pts.wt. of a chlorinated polyethylene, 50-0 pts.wt. of a high-density polyethylene, and 1-10 pts.wt. of hydrotalcite based on 100 pts.wt. of the total weight of the chlorinated polyethylene and the high-density polyethylene as main components, which are exposed to radiation and cross-linked to obtain the wear-resistant resin composition. The wear-resistant insulated wire and cable are obtained by coating the wear-resistant resin composition on a conductor. The resin tube is obtained by forming the wear-resistant resin composition into a tube.
    • 要解决的问题:提供柔软性,耐热性,耐油性,阻燃性和加工性优异并且耐磨性优异的树脂组合物,以及具有绝缘涂层和包含树脂组合物的树脂管的绝缘电线 。 解决方案:耐磨树脂组合物包含50-100重量份 的氯化聚乙烯,50-0重量份 的高密度聚乙烯,和1-10重量份 的水滑石基于100重量份 的氯化聚乙烯和高密度聚乙烯作为主要成分的总重量,其暴露于辐射和交联以获得耐磨树脂组合物。 耐磨绝缘电线和电缆是通过在导体上涂覆耐磨树脂组合物而获得的。 通过将耐磨树脂组合物形成管而获得树脂管。 版权所有(C)2012,JPO&INPIT
    • 8. 发明专利
    • Lead member for nonaqueous electrolyte power storage device and method of manufacturing the same
    • 非电解电力储存装置的引导构件及其制造方法
    • JP2014135169A
    • 2014-07-24
    • JP2013001700
    • 2013-01-09
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • TAGUCHI AKIHIKOTSUJINO ATSUSHITANAKA KOSUKESHIMADA TAKAAKIOKANO SATOSHI
    • H01M2/30H01M2/06
    • PROBLEM TO BE SOLVED: To provide a lead member for a non-aqueous electrolyte power storage device which easily removes an insulating coating and has a stable electrical contact surface, and also to provide a method of manufacturing the same.SOLUTION: A lead member for a non-aqueous electrolyte power storage device is formed by pasting an insulation resin film 5 on both conductor surfaces so as to protrude from both sides of the conductor width in an intermediate region of a flat conductor on which an electrically-insulating coating 7 is formed by surface treatment. Out of a conductor portion to which the insulation resin film 5 is not stuck and which is exposed, at least a part of a coating of the conductor portion exposing to outside of a nonaqueous electrolyte device is removed by laser irradiation and used as a coating removal surface 8a.
    • 要解决的问题:提供一种容易除去绝缘涂层并且具有稳定的电接触表面的非水电解质蓄电装置的引线构件,并且还提供其制造方法。解决方案:一种用于 通过将绝缘树脂膜5粘贴在两个导体表面上,以便在形成有电绝缘涂层7的扁平导体的中间区域中从导体宽度的两侧突出来形成非水电解质电力存储装置 通过表面处理。 在绝缘树脂膜5未被卡住并露出的导体部分中,暴露于非水电解质器件外侧的导体部分的涂层的至少一部分被激光照射除去并用作涂层去除 表面8a。