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    • 12. 发明公开
    • Optical fibert dual spindle winder with automatic threading and winding
    • Einzug und Aufwickeln的Doppelspindelwicklerfüroptische Fasern mit automatischem
    • EP0873962A1
    • 1998-10-28
    • EP98104331.8
    • 1998-03-11
    • CORNING INCORPORATED
    • Bacon, Christopher J.Bumgarner, Kirk PattonChludzinski, Paul AndrewHoke, Duane E.Kimball, Ronald L.Roberts, Kenneth William
    • B65H54/02
    • B65H57/003B65H59/384B65H67/052B65H2701/32G02B6/36G02B6/4457Y10S242/92
    • An apparatus for threading a fiber that is being continuously supplied by a supplying device (11) for winding on a spool, includes a collecting device (80), adjacent to the supplying device, that collects the fiber by urging the fiber from the supplying device (11) into the collecting device (80) to provide a tension (20) in the fiber between the supplying device and the collecting device, a positioning device (90) that engages the fiber, between the supplying device (11) and the collecting device (80), with an engaging portion that allows the fiber to be continuously collected in the collecting device (80) and that moves from a position adjacent to the supplying device (11) and the collecting device (80) to a position adjacent to the spool (70,70') to move the fiber to at least one threading position, and a threading device that automatically threads the fiber at the at least one threading position onto the spool.
    • 一种由供给装置(11)连续地供给卷绕在卷轴上的纤维进行穿线的装置,包括:与供给装置相邻的收集装置(80),其通过从供给装置推动纤维而聚集纤维 (11)进入收集装置(80)以在供给装置和收集装置之间的纤维中提供张力(20),与供应装置(11)和收集装置(11)之间的纤维接合的定位装置(90) 装置(80),其具有允许纤维连续地收集在收集装置(80)中的接合部分,并且从邻近供应装置(11)和收集装置(80)的位置移动到邻近的位置 所述卷轴(70,70')将所述纤维移动到至少一个穿线位置;以及穿线装置,其将所述纤维在所述至少一个穿线位置自动地螺纹连接到所述卷轴上。
    • 13. 发明公开
    • Robotic fiber optic quadrupole coil winder
    • Roboterisierte Maschine zum quadrupolen Wickeln von Lichtleitfasern。
    • EP0663364A2
    • 1995-07-19
    • EP94308660.3
    • 1994-11-23
    • Litton Systems, Inc.
    • Henderson, James A.Sammertano, Joseph A.
    • B65H54/02
    • G02B6/4457G01C19/722Y10T156/1798
    • A payguide mounting bracket assembly is connected to a support stand, and a spool is connected to the payguide mounting bracket assembly to have a fiber optic coil formed thereon. A pair of payguide assemblies are demountably coupled to the payguide mounting bracket assembly. A robotic manipulator assembly is configured to decouple a selected one of the first and second payguide assemblies from the payguide mounting bracket assembly and move the selected payguide assembly to a location adjacent the spool such that a layer of optical fiber is paid out to the spool from the selected payguide assembly as the spool and payguide mounting bracket assembly rotate relative to the selected payguide assembly. The invention also preferably comprises further comprises an epoxy applicator assembly configured to be demountably coupled to the robotic manipulator assembly for movement to a location adjacent the coil for applying epoxy to the coil.
    • 线圈卷绕器具有连接到支撑架的付费指引安装支架组件,以及连接到付费指导安装支架组件以在其上形成光纤线圈的线轴。 一对支付指导组件可拆卸地联接到付费指导安装支架组件。 机器人操纵器组件被配置为将所选择的第一和第二付费指导组件中的所选择的一个与所述支付指导安装支架组件分离,并将所选择的支付指导组件移动到与所述线轴相邻的位置,使得光纤层被支付到所述线轴 所选择的支付指导组件作为线轴和支付指引安装支架组件相对于所选择的支付指导组件旋转。 卷绕器还包括环形施加器组件,其构造成可拆卸地联接到机器人操纵器组件,用于移动到邻近线圈的位置以将环氧树脂施加到线圈。
    • 20. 发明公开
    • THREAD WINDING DEVICE
    • EP3689803A1
    • 2020-08-05
    • EP18863777.1
    • 2018-09-03
    • Murata Machinery, Ltd.
    • TAKAYASU KojiHANAKI Shota
    • B65H54/02B65H63/00
    • A yarn winding device configured to wind yarn onto a cone-shaped winding bobbin to form a cone-shaped package, the yarn winding device includes:
      a cradle configured to rotatably support the winding bobbin;
      a drive motor attached to the cradle and configured to rotate the winding bobbin;
      a traverse device configured to traverse the yarn;
      a package-peripheral-speed acquisition section configured to acquire, as a first peripheral speed, a peripheral speed of the winding bobbin;
      a touch roller configured to be rotated by rotation of the winding bobbin;
      a roller-peripheral-speed calculation section configured to calculate, as a second peripheral speed, a peripheral speed of the touch roller; and
      a contact-state determination section configured to compare the first peripheral speed acquired by the package-peripheral-speed acquisition section and the second peripheral speed calculated by the roller-peripheral-speed calculation section, thereby determining a contact state of the bobbin that is in contact with the touch roller.