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    • 31. 发明专利
    • Connector fitting jig and low insertion force connector
    • 连接器接头和低插入力连接器
    • JP2012182020A
    • 2012-09-20
    • JP2011044364
    • 2011-03-01
    • Yazaki Corp矢崎総業株式会社
    • AOKI YASUSHIOSHITA OSAMU
    • H01R43/26H01R13/621H01R13/629
    • F16B21/09H01R13/621H01R13/639Y10T29/53796Y10T403/7021
    • PROBLEM TO BE SOLVED: To provide a connector fitting jig capable of fitting a connector with a light operating force without a complicated housing structure, and a low insertion force connector.SOLUTION: A connector fitting jig 11 attaches a male connector housing 59 to a female connector housing 63, and detaches the male connector housing 59 from the female connector housing 63 with a low insertion force. The connector fitting jig 11 comprises a cylindrical jig body 13, in which a body engagement part 23 is engaged with a first engagement part 79 of a male connector housing 59; an inner cylinder member 15, in which an inner cylinder engagement part 27 is held to project from the jig body 13 relatively movably in an axial direction, and the inner cylinder engagement part 27 is engaged with a second engagement part 87 of the female connector housing 63; and a spring shaft 17, which is screwed with a screw part formed on an inner periphery of the inner cylinder member 15, and held rotatably and relatively non-movably in an axial direction to the other end of the jig body 13. The screw shaft 17 is rotated relative to the jig body 13, so as to relatively move the inner cylinder member 15 and the jig body 13, and relatively move the male connector housing 59 and the female connector housing 63 in a fitting direction.
    • 要解决的问题:提供一种能够以不具有复杂的壳体结构的轻操作力装配连接器的连接器装配夹具和低插入力连接器。 解决方案:连接器装配夹具11将阳连接器壳体59附接到阴连接器壳体63,并且以较小的插入力将阳连接器壳体59从阴连接器壳体63拆下。 连接器装配夹具11包括圆柱形夹具主体13,其中主体接合部23与阳连接器壳体59的第一接合部79接合; 内筒部件15,其中内筒接合部分27被保持从夹具本体13沿轴向相对移动地突出,并且内筒接合部分27与阴连接器壳体的第二接合部分87接合 63; 以及弹簧轴17,其与形成在内筒构件15的内周上的螺纹部分螺纹连接,并且在轴向方向上可旋转地且相对不可移动地保持在夹具本体13的另一端。螺杆轴 17相对于夹具本体13旋转,以便使内筒部件15和夹具本体13相对移动,并且使插接件壳体59和阴连接器壳体63沿配合方向相对移动。 版权所有(C)2012,JPO&INPIT
    • 32. 发明专利
    • Crimping terminal and crimping structure of crimping terminal to electric wire
    • 将终端的接线端子和接线端子的结构设计成电线
    • JP2011198707A
    • 2011-10-06
    • JP2010066855
    • 2010-03-23
    • Yazaki Corp矢崎総業株式会社
    • AOKI YASUSHIOSHITA OSAMUKOBAYASHI NAOKI
    • H01R4/18H01R4/58
    • H01R4/183
    • PROBLEM TO BE SOLVED: To provide a crimping terminal capable of getting rid of a problem of corrosion of a conductor of an electric wire by preventing moisture from permeating into the conductor of the electric wire even if moisture tends to adhere to an electric wire connection section.SOLUTION: The electric wire connection section 12 of the crimping terminal 10 is formed by a lower surface plate 14 continued from a bottom plate section of a front electricity connection section 11, and an upper surface plate 15 extended at a rear end of the lower surface plate 14 and located at an upper part of the lower surface plate 14 by folding back forward at an upper part of a connection section with the lower surface plate 14. The upper surface plate 15 and the lower surface plate 14 are formed in a cross-section shape where a terminal section of the electric wire W can be stored inside a space at the time of being overlapped with each other, and are formed by caulking the terminal section of the electric wire while the inside is sealed by being crushed by receiving caulking pressure from a vertical direction. Further, an electric wire insertion hole 17 for inserting the terminal section of the electric wire W between the lower surface plate 14 and the upper surface plate 15 is formed on a folded section 16 from the lower surface plate 14 to the upper surface plate 15.
    • 要解决的问题:为了提供一种能够通过防止水分渗透到电线的导体中来消除电线导体腐蚀的问题的压接端子,即使水分趋于粘附到电线连接部分 解决方案:压接端子10的电线连接部12由从前电连接部11的底板部连续的下表面板14和在下电连接部11的后端延伸的上表面板15形成 表面板14,并且通过在与下表面板14的连接部分的上部部分向前折叠而位于下表面板14的上部。上表面板15和下表面板14形成为十字形 电线W的端子部分可以在彼此重叠的时间内存储在空间内的截面形状,并且通过铆接端子部分t形成 电线通过从垂直方向接受铆接压力而被压碎而密封。 而且,在从下表面板14到上表面板15的折叠部分16上形成用于将电线W的端子部分插入下表面板14和上表面板15之间的电线插入孔17。
    • 34. 发明专利
    • RELAY CONNECTOR
    • JP2002260761A
    • 2002-09-13
    • JP2001054858
    • 2001-02-28
    • YAZAKI CORP
    • AOKI YASUSHI
    • H01R4/24H01R4/26H01R11/20H02G1/14H02G3/38H02G15/113H01R12/38
    • PROBLEM TO BE SOLVED: To provide a relay connector with which a conductive connection between a flat circuit body and a plurality of electric wires can be made securely and easily without soldering, reliability of electric connections between the flat circuit body and the electric wires is improved and efficiency of the connection work is also improved. SOLUTION: The relay connector 11 is composed of an insulation housing 19 consisting of a housing main body 17 and a housing cover 18 which covers a top surface of the main housing body and a plurality of electrical connection terminals 15 at the rear end of which electric wires 13 are connected by pressure and housed and held aligned within the insulation housing 19. The electric connection terminals 15 are equipped with two pairs of thrusting parts 15c upright at its top end flat surface part 15b, which are thrust into the conductors of the flat circuit body 21. A plurality of terminal housing slots 17a are formed on the main housing body 17 with the spacing which corresponds to that of the distribution pitch of conductors 21a on the flat circuit body 21.
    • 37. 发明专利
    • SLIDE-FITTING TYPE CONNECTOR
    • JPH1126069A
    • 1999-01-29
    • JP17242797
    • 1997-06-27
    • YAZAKI CORP
    • AOKI YASUSHIKASHIYAMA YOSHIHISA
    • H01R13/629
    • PROBLEM TO BE SOLVED: To provide a slide-fitting type connector, in which friction between a slide member and connector housings is lessened and the slide member is moved smoothly with a small operating force. SOLUTION: In this connector 10, a slide member 12 which slides in reciprocating manner is formed in one connector housing 11 side, a cam follower 16 provided in the other connector housing 15 side is engaged with an inclining cam 13 formed in the slide member 12, and at the time of going movement of the slide member 12, the connector housing 15 is pulled in the counterpart connector housing 11 side to mutually fit the both connector housings, and at the time of coming movement of the slide member 12, both connector housings are parted from each other. In this case, projected parts 14 are formed in the longitudinal directions of the sliding faces 12b, 12c of the slide member 12, and at the time when the slide member 12 is slid in reciprocating manner, the projected parts 14 of the slide member 12 and insertion holes 11d formed in the counterpart housing 11 are brought into linear contact with each other.