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    • 2. 发明授权
    • Apparatus and method for making slotted rod for optical cable
    • 光缆开槽棒的设备及方法
    • US06190583B1
    • 2001-02-20
    • US09157943
    • 1998-09-22
    • Shigeru SuemoriTakehiko OkadaShigeki Yasui
    • Shigeru SuemoriTakehiko OkadaShigeki Yasui
    • B29D1100
    • G02B6/4489
    • The present invention relates to an apparatus and method for making a slotted rod for an optical cable, which improves manufacturing efficiency, while alleviating the load applied to the apparatus. In the present invention, a rotatable die for forming a slot in a resin surface covering a tension member is rotated about the moving direction of the tension member such that the rotatable die alternately reverses its rotational direction for every predetermined reverse pitch of the tension member, and the tension member is alternately twisted in rotational directions opposite to the rotational directions of the rotatable die in synchronization with the rotation of the rotatable die.
    • 本发明涉及一种用于制造用于光缆的开槽杆的装置和方法,其提高制造效率,同时减轻施加到装置上的负载。 在本发明中,用于在覆盖张力构件的树脂表面中形成狭缝的旋转模具围绕张紧构件的移动方向旋转,使得可旋转模具对于张力构件的每个预定的反向间距交替地反转其旋转方向, 并且与可旋转模具的旋转同步地,张力构件在与旋转模具的旋转方向相反的旋转方向上交替地扭转。
    • 3. 发明授权
    • Apparatus and method for assembling optical cable
    • 光缆组装装置及方法
    • US06615571B1
    • 2003-09-09
    • US09541627
    • 2000-04-03
    • Takehiko OkadaShigeru SuemoriMasakazu Watanabe
    • Takehiko OkadaShigeru SuemoriMasakazu Watanabe
    • D02G336
    • G02B6/4491G02B6/449
    • An apparatus for assembling an optical cable comprises a spacer paying-out portion 7, a stationary ribbon supply unit 9, a gathering portion 14 and a taking-up portion 21. The spacer paying-out portion 7 supplies a spacer 2 having a spiral groove in the surface of a long spacer body from a supply reel 1 while revolving around a line axis X-X. The stationary ribbon supply unit 9 supplies a plurality of optical fiber ribbons 11. The gathering portion 14 forms the optical fiber ribbons 11 sent out of the stationary ribbon supply unit 9 into a cable core 15 by holding the optical fiber ribbons 11 within the spiral groove of the spacer 2 sent out of the spacer paying-out portion 7 and running forward while rotating on its center axis. The taking-up portion 21 winds the cable core 15 on a taking-up reel 20 while revolving around the line axis. A winding roller 8 (8′) having an rotational direction identical to an rotational direction of the supply reel 1 of the spacer 2 and used for winding the spacer 2 or the cable core 15 is installed adjacently before and after the gathering portion whereby to revolve the winding roller around the line axis in synchronization with the revolution of the spacer paying-out portion 7. Accordingly, it is possible to prevent a twisting of the spacer in the gathering portion resulting from a winding habit of the spacer during a step of assembling cables.
    • 用于组装光缆的装置包括间隔件支付部分7,静态色带供给单元9,聚集部分14和卷取部分21.间隔物支付部分7提供具有螺旋槽的间隔件2 在沿着线轴线XX旋转的情况下,在供给卷轴1的长间隔体的表面。 固定色带供给单元9提供多个光纤带11.聚集部14通过将光纤带11保持在螺旋槽内而形成从固定色带供给单元9发送到电缆芯15中的光纤带11 的间隔件2从间隔件支付部分7发出并在其中心轴线上旋转的同时向前运动。 卷绕部分21绕线轴线旋转时将电缆芯15卷绕在卷带盘20上。 具有与间隔件2的供带盘1的旋转方向相同并用于卷绕间隔件2或电缆芯15的旋转方向的卷绕辊8(8')相邻地安装在聚集部分之前和之后,从而旋转 卷绕辊绕线轴线与间隔件支付部分7的旋转同步。因此,可以防止在组装步骤期间由间隔件的缠绕习惯引起的聚集部分中的间隔件的扭转 电缆
    • 6. 发明授权
    • Method of manufacturing a self-support optical cable
    • 自支撑光缆的制造方法
    • US6054070A
    • 2000-04-25
    • US16407
    • 1998-01-30
    • Noboru TokairinMasahiro EguchiShigeru Suemori
    • Noboru TokairinMasahiro EguchiShigeru Suemori
    • B29C47/02B29D11/00G02B6/44
    • B29C47/027B29C47/0028B29C47/003B29D11/00663G02B6/4484B29C47/0033B29L2011/0075
    • In a method of manufacturing a self-support optical cable, a support wire and an optical cable body arranged in parallel are fed with each other; a sheath into an eight figure shape is extruded by an extruder to collectively coat the outer circumferences of the support wire and the optical cable body with the sheath, and thereafter, the self-support optical cable is cooled before hardening while the cable passes through a plurality of guide wheels so that an excess length is given to the optical cable body. In this method, the guide wheels are disposed in a cooling water tank in a manner so that a guide wheel contacting with one side of the self-support optical cable with the sheath in a softened state and another guide wheel contacting with the other side of the self-support optical cable with the sheath in a softened state are disposed alternately in the feed-out direction, said excess length is controlled based on the tension of the support wire, or the tension of said optical cable body at an inlet portion of said extruder is reduced by a tension reducing device.
    • 在制造自支撑光缆的方法中,并联配置的支撑线和光缆体, 通过挤出机挤压成8形的护套,以一体地用护套将支撑线和光缆体的外周共同地覆盖,然后在固化之前将自支撑光缆冷却,同时电缆穿过 多个导向轮,使得光缆体具有多余的长度。 在这种方法中,引导轮设置在冷却水箱中,使得导向轮与自支撑光缆的一侧接触,其中护套处于软化状态,另一个导轮与另一侧的 具有软化状态的护套的自支撑光缆在输出方向上交替布置,所述多余长度基于支撑线的张力或所述光缆体的入口部分的张力来控制 所述挤出机由减压装置减少。