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    • 1. 发明授权
    • Optical fiber fusion splice method and optical fiber fusion splicer used for the same
    • 光纤熔接法和光纤熔接机相同
    • US06439782B1
    • 2002-08-27
    • US09510373
    • 2000-02-22
    • Taku OtaniAkito IshiguroKenji TakahashiNoriyuki KawanishiJunichi SuzukiShounosuke Yaguchi
    • Taku OtaniAkito IshiguroKenji TakahashiNoriyuki KawanishiJunichi SuzukiShounosuke Yaguchi
    • G02B6255
    • G02B6/2551
    • The object of the present invention is to provide an optical fiber fusion splice method in which two optical fibers having different mode field diameters are fusion spliced with a low splice loss without complicated words and special equipment other than a fusion splice device, and an optical fiber fusion splicer which is suitably used for the optical fiber fusion method; in order to achieve the object, the present invention provides an optical fiber fusion splice method for splicing two optical fibers having different mode field diameters comprising the steps of: arranging a first optical fiber having a small mode field diameter and a second optical fiber having a large mode field diameter so that the cut surfaces thereof face each other, heating by an electric discharge and fusion splicing the cut surfaces, shifting the heating position by an electric discharge in the first optical fiber by shifting integrally the first and second optical fibers in the longitudinal direction of the optical fibers, and additional heating the first optical fiber by an electric discharge.
    • 本发明的目的是提供一种光纤熔接方法,其中具有不同模场直径的两根光纤熔接而不需要复杂的字拼接和熔接装置以外的专用设备,而光纤 适用于光纤熔接法的熔接机; 为了实现该目的,本发明提供了一种用于拼接具有不同模场直径的两根光纤的光纤熔接方法,包括以下步骤:布置具有小模场直径的第一光纤和具有 大模场直径,使得其切割面彼此面对,通过放电进行加热并熔融切割表面,通过在第一光纤中的放电来移动加热位置,通过使第一和第二光纤在 光纤的长度方向,通过放电对第一光纤进行附加加热。
    • 5. 发明授权
    • Optical fiber reinforcing method and optical fiber reinforcing device
    • 光纤增强方法和光纤加固装置
    • US07128478B2
    • 2006-10-31
    • US10834849
    • 2004-04-30
    • Kenji TakahashiNoriyuki KawanishiManabu Fujisawa
    • Kenji TakahashiNoriyuki KawanishiManabu Fujisawa
    • G02B6/255
    • G02B6/2558G02B6/2551G02B6/2553
    • In an optical fiber fusion reinforcing device, a distance from an end face 723 to a mid point C6 of a reinforcing device 7 is set equal to a distance from a fusion splicing point M to an end face of a fusion splicing device 6 where optical fibers 3, 3 are inserted. The fusion splicing device 7 includes: positioning member 72 for aligning a mid point C7 of a heat shrinkable reinforcing member 13, which is slidably mounted on the fusion spliced optical fibers, and the fusion splicing point M of the optical fibers 3, 3 with each other; housing portion for housing the optical fibers 3, 3 and the heat shrinkable reinforcing member 13 so that the fusion splicing point M and the mid point of the heat shrinkable reinforcing member 13 are aligned, and heater for melting the heat shrinkable reinforcing member 13 in the housing portion.
    • 在光纤熔融加强装置中,从加固装置7的端面723到中点C 6的距离设定为与熔接点M到熔接装置6的端面的距离,其中光纤 纤维3,3插入。 熔接装置7包括:定位构件72,用于将可滑动地安装在熔接光纤上的可热收缩加强构件13的中点C 7与光纤3,3的熔接点M对准, 彼此; 用于容纳光纤3,3和热收缩加强构件13的容纳部分,使得熔接点M和热收缩加强构件13的中点对准,并且在热收缩加强构件13中熔化加热器 住房部分。