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    • 41. 发明专利
    • Lead wire connecting structure
    • 铅线连接结构
    • JP2010193654A
    • 2010-09-02
    • JP2009036853
    • 2009-02-19
    • Hitachi Cable Ltd日立電線株式会社
    • AOYAMA TAKASHITANBA AKIHIRO
    • H02G15/04H01R4/72
    • PROBLEM TO BE SOLVED: To provide a lead wire connecting structure that has a high sealability and a high reliability.
      SOLUTION: A lead wire connecting structure includes: a plurality of lead wires 2; a substrate 3 to which the lead wires 2 are connected; a separator component 5; and a heat shrinkable tube 141. The separator component 5 has a comb tooth part wall 9 formed higher than the diameter of the lead wires 2, and holds the lead wires 2 while separating them apart. The heat shrinkable tube 141 has an adhesive layer 140 on the inside and coats a connecting portion 4 between the lead wires 2 and the substrate 3 and the separator component 5. The lead wire connecting structure is so configured that the connecting portion 4 and the separator component 5 may be sealed when the heat shrinkable tube 141 shrinks and the adhesive layer 140 is melt-cured.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种具有高密封性和高可靠性的引线连接结构。 导线连接结构包括:多根引线2; 连接引线2的基板3; 分离器部件5; 和热收缩管141.分离器部件5具有形成为高于引线2的直径的梳齿部壁9,并且在分离它们的同时保持引线2。 热收缩管141在内部具有粘合剂层140,并且涂覆引线2和基板3与分离器部件5之间的连接部分4.引线连接结构构造成连接部分4和分离器 当热收缩管141收缩并且粘合剂层140熔融固化时,组件5可以被密封。 版权所有(C)2010,JPO&INPIT
    • 42. 发明专利
    • Wire harness for vehicle
    • 车用线束
    • JP2010110149A
    • 2010-05-13
    • JP2008280859
    • 2008-10-31
    • Sumitomo Wiring Syst Ltd住友電装株式会社
    • BANDO MASANORI
    • H02G15/08H01B7/00H01B7/282H01R4/22H01R4/70H01R43/01H02G15/04
    • PROBLEM TO BE SOLVED: To improve workability in splice part waterproofing treatment which is applied to prevent water from intruding into a waterproof connector, to reduce the cost, and to save on space for a wire harness. SOLUTION: A first electric wire 11 having the waterproof connector C1 connected to one end thereof, and a second electric wire 12 having a non-waterproof connector C2 connected to one end thereof are connected via the splice part S1 to house the splice part S1 in a waterproof tube 31, the first electric wire 11 and the second electric wire 12 are pulled out from an opening 32 on one end side of the waterproof tube 31 to form a closing part 33 by folding back the waterproof tube 31 on the side opposite to this pulling-out side, and a tip opening 32 of the waterproof tube 31 is disposed downward when the splice part S1 is disposed in the water-covered area while keeping a folded back state by winding a first tape 41 around a folding back part 34 and also fixing the splice part S1 housed inside to the waterproof tube 31, or the splice part S1 is disposed in the non-water covered area. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了提高用于防止水侵入防水连接器的接合部防水处理的可加工性,降低成本,并节省线束的空间。 解决方案:具有连接到其一端的防水连接器C1的第一电线11和具有连接到其一端的非防水连接器C2的第二电线12经由接头部S1连接以容纳接合 在防水管31中的部分S1,第一电线11和第二电线12从防水管31的一端侧上的开口32拉出,以通过将防水管31折回到防水管31上而形成闭合部33 并且当接合部分S1设置在水覆盖区域中时,防水管31的顶端开口32设置在下方,同时通过将第一带41卷绕在折叠部分上而保持折回状态 后部部分34,并且将固定在内部的接合部分S1固定到防水管31中,或者接头部分S1设置在非水覆盖区域中。 版权所有(C)2010,JPO&INPIT
    • 44. 发明专利
    • Water cutoff method of joint electric wire
    • 接头电线水切割方法
    • JP2009099385A
    • 2009-05-07
    • JP2007270054
    • 2007-10-17
    • Yazaki Corp矢崎総業株式会社
    • JINNO TOSHIAKINISHINO SUGURU
    • H01B13/32H01R4/22H01R43/00H02G15/04
    • PROBLEM TO BE SOLVED: To provide a water cutoff method for a joint electric wire capable of improving productivity by shortening a time needed for water-cutoff treatment. SOLUTION: The joint electric wire 1 is formed in sequence through a water cutoff material supply process of adhering a water cutoff material 6 of a liquid state having heat curing characteristics to terminal core wires 4 of a plurality of coated wires 2 exposed from the latter as insulation coating parts 3 are removed, and making the water cutoff material 6 permeate into the core wires, a water cutoff material curing process resistance-welding the terminal core wires of the coated wires 2 and curing the water cutoff material 6 with heat generated by resistance welding, and an inter-wire water cutoff process covering a heat-contracting cap 5 with hot-melt immersed inside and contracting the cap 5 by adding heat to the heat-contracting cap 5, and making the hot-melt permeated into the coated wires 2 to cutoff water between the coated wires 2. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种能够通过缩短水切断处理所需的时间来提高生产率的联合电线的水切断方法。 解决方案:接合电线1依次通过将具有热固化特性的液体状态的截水材料6粘附到暴露于多个涂覆电线2的端子芯线4的截水材料供应过程 后者作为绝缘涂层部分3被去除,并且使截水材料6渗透到芯线中,水切割材料固化工艺电阻焊接涂覆线2的端子芯线并用热量固化截水材料6 通过电阻焊接产生的线间水分截断工艺,并且将热熔浸入内部的热收缩帽5覆盖并且通过向热收缩帽5加热来收缩帽5​​,并且使热熔体渗透到 涂覆线2以在涂覆的线2之间切断水。版权所有(C)2009,JPO&INPIT
    • 47. 发明专利
    • Water cut-off method and water cut-off structure for shielding wire
    • 用于屏蔽线的水切割方法和水切割结构
    • JP2008067545A
    • 2008-03-21
    • JP2006244294
    • 2006-09-08
    • Auto Network Gijutsu Kenkyusho:KkSumitomo Electric Ind LtdSumitomo Wiring Syst Ltd住友電気工業株式会社住友電装株式会社株式会社オートネットワーク技術研究所
    • HAGI MASAHIROYAMANO YOSHIAKINISHIMURA NAOYABABA HIROTAKA
    • H02G15/04H01B13/32
    • PROBLEM TO BE SOLVED: To downsize the water cut-off position of a drain wire and achieve cost reduction in water cut-off treatment. SOLUTION: In this water cut-off method for the shielding wire, after the drain wires 11 and core electric wires 12 are pulled outward from the barking end of one end of the shielding wire 10, the drain wires are covered with nonwaterproof heat-shrinkable tubes and passed through a hot melt tube. Further, a waterproof heat-shrinkable tube is moved toward a position for covering the outer circumferential position of the hot melt tube and the outer circumferential position on the end side of the shielding wire. Afterward, the nonwaterproof heat-shrinkable tubes and the waterproof heat-shrinkable tube are thermally shrunk and the water cut-off agent of the hot melt tube and those of the nonwaterproof heat-shrinkable tubes are melted. On the front end side from the barking end, the water cut-off agent is filled into between the inner circumferential side of the waterproof heat-shrinkable tube and the outer circumferential side of both the nonwaterproof heat-shrinkable tubes covering the drain wires and the core electric wires, and hot melt is filled into a gap surrounded by both the nonwaterproof heat-shrinkable tubes covering the drain wires and the core electric wires, while on the rear end side from the barking end, the water cut-off agent is filled into between the inner circumferential side of the waterproof heat-shrinkable tube and the outer circumferential side of the shielding wire. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了减小排水线的截水位置,实现截水处理的成本降低。 解决方案:在这种屏蔽线的截水方法中,在排出线11和芯线12从屏蔽线10的一端的吠叫端向外拉出之后,排水线被不防水的 热收缩管并通过热熔管。 此外,防水热收缩管朝向覆盖热熔融管的外周位置和屏蔽线的端侧的外周位置的位置移动。 之后,非水防热缩热管和防水热收缩管热收缩,并且热熔管和非防水热收缩管的防水剂熔化。 在吠叫端的前端侧,在防水热收缩管的内周侧和覆盖排水线的两个非防水性热收缩管的外周侧之间填充防水剂, 芯线电线,热熔填充在覆盖排水线和芯电线的非防水性热收缩管包围的间隙中,而在吠叫端的后端侧,封闭剂填充 在防水热收缩管的内周侧和屏蔽线的外周侧之间。 版权所有(C)2008,JPO&INPIT