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    • 3. 发明授权
    • Spliced portion housing structure for optical fiber in optical submerged
repeater
    • 光接收式中继器光纤接头部分外壳结构
    • US4505540A
    • 1985-03-19
    • US340350
    • 1982-01-18
    • Kahei FurusawaMakoto NunokawaYoshihiro EjiriHitoshi YamamotoYoshihiko YamazakiKoichi Tatekura
    • Kahei FurusawaMakoto NunokawaYoshihiro EjiriHitoshi YamamotoYoshihiko YamazakiKoichi Tatekura
    • G02B6/24G02B6/44H02G15/08H02G15/14G02B5/14G02B7/26
    • G02B6/4448
    • A spliced portion housing structure for an optical fiber in an optical submerged repeater, characterized in that, in order to splice together in a joint ring an optical fiber and a power-supplying feeder from the optical submerged repeater to an optical fiber and a power-supplying feeder of a tail cable from a cable coupling of an optical submarine cable, respectively, a joint chamber is provided on an end plate of a housing of the optical submerged repeater in such a manner that the end plate forms a part of the joint chamber; the optical fiber and the power-supplying feeder from the submerged repeater are introduced into the joint chamber through a first feedthrough provided in the end plate for hermetically introducing the optical fiber and the power-supplying feeder; the tail cable from the cable coupling is hermetically introduced into the joint chamber through a second feedthrough provided in the wall of the joint chamber so that the tail cable is insulated from the joint chamber, the optical fibers and the feeders pulled into the joint chamber from both of the first and second feedthroughs are respectively spliced together while being isolated from each other and housed in the joint chamber; the optical fiber spliced portion is fixed to a cage mounted in the joint chamber; and the joint chamber is formed to have a water pressure resisting and airtight structure.
    • 一种用于光学浸没式转发器中的光纤的接合部分壳体结构,其特征在于,为了将接头环中的光纤和从所述光学浸没式中继器馈送到光纤的功率供给馈送器连接在一起, 分别从光学海底电缆的电缆耦合器供给尾缆的馈线,接合室设置在光学浸没式中继器的壳体的端板上,使得端板形成接头室的一部分 ; 来自浸没式中继器的光纤和供电给料器通过设置在端板中的用于气密地引入光纤和供电馈送器的第一馈通引入接头室; 来自电缆耦合器的尾部电缆通过设置在接头室的壁中的第二馈通气密地引入接头室,使得尾部电缆与接头室绝缘,光纤和馈线从接头室中拉出 第一和第二馈通两者分别拼接在一起,同时彼此隔离并容纳在关节室中; 光纤接合部固定在安装在接头室内的保持架上; 并且所述接合室形成为具有耐水压力和气密结构。
    • 5. 发明授权
    • Optical fiber hermetic fixing structure of feedthrough for optical
submarine repeater
    • 光学海底中继器馈通光纤密封固定结构
    • US4653846A
    • 1987-03-31
    • US594363
    • 1984-03-28
    • Yoshihiko YamazakiYoshihiro EjiriKahei Furusawa
    • Yoshihiko YamazakiYoshihiro EjiriKahei Furusawa
    • H04J14/00G02B6/00G02B6/42G02B6/44H02G15/08H04J14/04H04J14/06G02B6/36
    • G02B6/4248G02B6/4428
    • An optical fiber hermetic fixing structure of a feedthrough for an optical submarine repeater in which at least one optical fiber is introduced into a fluid-tight pressure-resistant housing of an optical marine repeater. Optical fibers are introduced and disposed in a through opening defined between a metal fiber-supporting guide and a metal sealing sleeve circumferentially of the fiber-supporting guide. The guide has a somewhat reduced diameter adjacent an end of the through opening so that the through opening has a greater transverse dimension along this part adjacent a seawater end of the feedthrough. This part of the through opening is filled with a low temperature melting metal about and between the optical fibers extending therethrough. The low melting temperature metal extends out of the through opening with a generally conical cross section configuration. A protective cover cap is disposed coaxial with the sleeve and fiber-supporting guide and through which the optical fibers extend longitudinally. The protective cover cap is filled with a liquid filler.
    • 一种用于光学海底中继器的馈通的光纤密封固定结构,其中至少一根光纤被引入光学海洋中继器的流体密封耐压壳体中。 将光纤引入并设置在金属纤维支撑引导件和纤维支撑引导件周向的金属密封套之间的通孔中。 引导件邻近通孔的端部具有稍微减小的直径,使得通孔沿着该部分邻近馈通的海水端具有更大的横向尺寸。 通孔的这一部分在延伸穿过其中的光纤之间和之间填充有低温熔融金属。 低熔点金属以大致圆锥形的横截面构型从通孔延伸出来。 保护盖帽与套管和纤维支撑导向件同轴设置,光纤通过该保护罩纵向延伸。 保护盖帽充满液体填充物。
    • 7. 发明授权
    • Injection molding machine
    • 注塑机
    • US4540359A
    • 1985-09-10
    • US512135
    • 1983-06-06
    • Yoshihiko Yamazaki
    • Yoshihiko Yamazaki
    • B29C45/40B29C45/50B29C45/70B28B17/00
    • B29C45/70B29C45/4005B29C45/5008B29C2045/1792B29C2045/4042B29C2045/5036B29C2045/5076
    • An injection molding machine wherein both a clamping mechanism and an injection mechanism are actuated by means of a servo-motor, in which machine, mold opening and closing and clamping on the clamping mechanism side are carried out by gear means provided over a transmission shaft positioned on the clamping mechanism side and a rotary member threadedly engaged with a plunger having threads in the periphery thereof, the operation for advancing and rotating an injection screw on the injection mechanism side is carried out by advancing and rotating means by a rotary shaft and gears provided within a housing and transmission means by a plurality of gears provided together with an electromagnetically-operated clutch member in a portion of said transmission shaft positioned on the injection mechanism side, said machine comprising an electromagnetically-operated clutch mechanism for temporarily stopping the application of a turning force by said servo-motor to the clamping mechanism side, and a force retaining device by an electromagnetically-operated brake capable of retaining the clamping force during the time of said stoppage, a series of steps of mold opening, clamping, injection of molten resin, metering and mold opening being effected by use of the servo-motor.
    • PCT No.PCT / JP82 / 00402 Sec。 371日期:1983年6月6日 102(e)日期1983年6月6日PCT提交1982年10月7日PCT公布。 公开号WO83 / 0122400 日期:1983年4月14日。一种注射成型机,其中夹持机构和注射机构均通过伺服电机致动,其中机器,夹紧机构侧的模具打开和关闭以及夹紧通过齿轮 设置在位于夹紧机构侧的传动轴上的装置和与其周边具有螺纹的柱塞螺纹接合的旋转构件,用于使喷射机构侧的喷射螺杆前进和旋转的操作通过前进和旋转装置 通过旋转轴和设置在壳体内的齿轮和传动装置,通过设置在位于喷射机构侧的所述传动轴的一部分中与电磁离合器构件一起设置的多个齿轮,所述机器包括电磁操作的离合器机构 用于暂时停止由所述伺服电动机施加的转向力进行夹紧 机械侧,以及通过电磁制动器的力保持装置,能够在所述停止期间保持夹紧力,通过使用进行开模,夹紧,注射熔融树脂,计量和开模的一系列步骤 的伺服电机。