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    • 3. 发明授权
    • Cable core self-aligning apparatus
    • 电缆芯自调心装置
    • US4742613A
    • 1988-05-10
    • US036746
    • 1987-04-10
    • Shizuka YamaguchiYoshihiko UenoSeiji OhmizuIsamu Kinoshita
    • Shizuka YamaguchiYoshihiko UenoSeiji OhmizuIsamu Kinoshita
    • H01R43/28H01R43/04
    • H01R43/28Y10T29/49004Y10T29/53022Y10T29/53061Y10T29/53217Y10T29/53261
    • A cable core self-aligning apparatus comprises core feeding means for holding a plurality of cores, drawn out of an end of a cable, in a line and sequentially feeding the cores; rotational conveyor means having a conveying rotor for holding and rotationally conveying each of the cores to a core extracting position; and core identifying means for identifying the number of each core while that core is being conveyed to the core extracting position by the rotational conveyor means. The cable core self-aligning apparatus also includes a core holder having a plurality of core-positioning sections; core-holder positioning means for setting that of the core-positioning sections which is associated with the number of the core identified by the core identifying means, at the core extracting position when the core holder receives the identified core; and core handling means for holding and inserting the core reaching the core extracting position by the help of the conveying rotor, into the core-positioning section set by the core-holder positioning means.
    • 一种电缆芯自动对准装置,包括:芯线馈送装置,用于将由电缆端部拉出的多个芯线保持在一行中,并顺序地馈送芯; 旋转传送装置具有用于将每个芯保持并旋转地传送到芯提取位置的输送转子; 以及用于识别每个芯的数量的核心识​​别装置,同时该芯通过旋转输送装置被输送到芯提取位置。 电缆芯自调心装置还包括具有多个芯定位部分的芯保持器; 用于在芯保持器接收到所识别的核心时在核心提取位置处设置与由核心识别装置识别的核心数量相关联的核心定位部分的核心夹持器定位装置; 以及用于通过输送转子将到达芯提取位置的芯保持和插入到由芯保持器定位装置设置的芯定位部分中的芯处理装置。
    • 5. 发明授权
    • Automatic optical measuring apparatus for optical fibers
    • 光纤自动光学测量装置
    • US5253035A
    • 1993-10-12
    • US866801
    • 1992-04-08
    • Satoshi FukuokaShizuka YamaguchiKoji SasakiTsuyoshi Fumeno
    • Satoshi FukuokaShizuka YamaguchiKoji SasakiTsuyoshi Fumeno
    • G01M11/00G02B6/245G02B6/25G01N21/84
    • G01M11/3109G02B6/245G02B6/25
    • An automatic optical measuring apparatus for optical fibers which is designed to automatically perform a series of steps from processing tips to optical measurement of a plurality of jacketed optical fibers each comprising at least one optical fiber provided with a jacket. The automatic optical measuring apparatus is equipped with first through third array units wherein a plurality of first through third holders are arranged; first through third tip processing units for processing the ends of the individual optical fibers; first and second optical measuring units; first and second connecting units for connecting each end of the jacketed optical fiber to the optical measuring apparatus and a light source; first through third carrying units which carry the first through third holders; a haul-in unit which hauls in and cuts a specified length of the jacketed optical fiber held in the second holder at the end on the first holder; a hand-over unit which hands over the cut end of the jacketed optical fiber on the second holder onto the third holder; and a controlling unit which controls the operation of each of the aforementioned component units.
    • 一种用于光纤的自动光学测量装置,其被设计为自动执行从多个夹套光纤的处理尖端到光学测量的一系列步骤,每个包括至少一个设置有护套的光纤。 自动光学测量装置配备有第一至第三阵列单元,其中布置有多个第一至第三保持器; 第一至第三尖端处理单元,用于处理各个光纤的端部; 第一和第二光学测量单元; 第一和第二连接单元,用于将夹套的光纤的每个端部连接到光学测量装置和光源; 第一至第三承载单元,其承载第一至第三保持器; 牵引单元,其在第一保持器的端部牵引并切割保持在第二保持器中的夹套光纤的指定长度; 将第二保持器上的夹套光纤的切割端交给第三保持器的切换单元; 以及控制单元,其控制每个前述部件单元的操作。
    • 6. 发明授权
    • Tip processing method for jacketed optical fibers
    • 夹套光纤的尖端加工方法
    • US5469611A
    • 1995-11-28
    • US315197
    • 1994-09-29
    • Koji SasakiShizuka YamaguchiTsuyoshi FumenoSatoshi Fukuoka
    • Koji SasakiShizuka YamaguchiTsuyoshi FumenoSatoshi Fukuoka
    • G02B6/245G02B6/25B26F3/00
    • G02B6/25G02B6/245Y10T225/325Y10T29/49817Y10T29/49821Y10T29/514Y10T29/515Y10T29/53087
    • A tip processing apparatus is equipped with a holder and a holder holding unit for extending the tip of the jacketed optical fiber comprising at least one optical fiber provided with a jacket, the holder holding the jacketed optical fiber in place. The apparatus also includes in a jacket removing unit for removing a desired length of the jacket, leaving the jacket on the tip of the jacketed optical fiber; a cleaning unit for cleaning the optical fiber exposed by the jacket removal carried out in the jacket removing unit; and a cutting unit for performing cut processing thereby to trim the optical fiber cleaned by the cleaning unit. A tip processing method comprises moving a portion of the jacket by a desired length while leaving a portion of the jacket on the tip, and all processing steps of the jacket removing, cleaning, and cutting of the optical fiber are performed on the optical fiber with the jacket portion left on the tip.
    • 尖端处理装置配备有保持器和保持器保持单元,用于使夹套光纤的末端延伸,其包括设置有护套的至少一个光纤,保持器将夹套的光纤保持在适当位置。 该装置还包括用于去除所需长度的护套的护套去除单元,将护套留在夹套的光纤的尖端上; 清洁单元,用于清洁在护套拆卸单元中执行的护套拆卸暴露的光纤; 以及切割单元,用于进行切割处理,从而修整由清洁单元清洁的光纤。 尖端处理方法包括将护套的一部分移动所需长度,同时将护套的一部分留在尖端上,并且在光纤上进行护套移除,清洁和切割的所有加工步骤在具有 护套部分留在尖端。
    • 7. 发明授权
    • Ultrasonic welding method for conductors
    • 导体超声波焊接方法
    • US09112286B2
    • 2015-08-18
    • US13635292
    • 2011-03-15
    • Yukihiro TorimotoShizuka Yamaguchi
    • Yukihiro TorimotoShizuka Yamaguchi
    • B23K20/10H01R4/02H01R43/02
    • H01R4/021B23K20/10B23K20/106H01R43/0207
    • An ultrasonic welding method for conductors is provided that is capable of suppressing occurrence of insufficient weld strength and a separation which may occur when terminals of a wires are ultrasonically welded. In a wire arranging step, wires are arranged in accordance with a predetermined arrangement. In a conductor moving step, conductors (2) are pressed in a predetermined direction by a grinding jaw (12), and thereby relative positions among the conductors (2) are changed. In a first ultrasonic welding step, ultrasonic welding is performed on the conductors (2) in a state of being pressed by the grinding jaw (12). In a second ultrasonic welding step, the pressing applied by the grinding jaw (12) is released, and ultrasonic welding is performed on the conductors (2).
    • 提供了一种用于导体的超声波焊接方法,其能够抑制焊接强度不足的发生和当电线的端子被超声波焊接时可能发生的分离。 在布线步骤中,根据预定布置布置导线。 在导体移动步骤中,导体(2)通过研磨爪(12)在预定方向上被按压,从而导体(2)之间的相对位置被改变。 在第一超声波焊接步骤中,在被研磨爪(12)按压的状态下对导体(2)进行超声波焊接。 在第二超声波焊接步骤中,释放由研磨爪(12)施加的压力,并对导体(2)进行超声波焊接。