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    • 1. 发明授权
    • Optical fiber coating removing device
    • 光纤涂层去除装置
    • US07103253B2
    • 2006-09-05
    • US10480469
    • 2002-06-10
    • Shunichi MizunoKazunari Hattori
    • Shunichi MizunoKazunari Hattori
    • G02B6/00H02G1/12B26D1/00
    • G02B6/245Y10T83/9411
    • An object of the invention is to provide an optical fiber coating removing apparatus which can remove coating from an optical fiber preform without damaging the optical fiber surface. The apparatus is excellent in workability because positioning or the like for coating removal easily. The invention provides an optical fiber coating removing apparatus for holding coating 1b of an end portion of an optical fiber 1 between a pair of coating removing blades and removing the coating 1b from the optical fiber 1 with the pair of the blades. In each blade 11, 11′, a blade pressing plate 12, 12′, a semicircular blade 13, 13′ having a semicircular eating blade portion 13a, and a flat blade 14, 14′ having a straight-line eating blade portion 14a having a triangular section are integrally laminated onto a blade bearing plate 15, 15′ in that order. The coating 1b is removed without damaging the surface of the optical fiber.
    • 本发明的目的是提供一种可以在不损害光纤表面的情况下从光纤预制件上去除涂层的光纤涂层去除装置。 该装置的加工性优异,因为用于涂层去除的定位等容易。 本发明提供了一种用于将光纤1的端部的涂层b保持在一对涂层去除刀片之间并且用一对刀片从光纤1去除涂层1b的光纤涂层去除装置。 在每个叶片11,11'中,具有叶片压板12,12',具有半圆形吃叶片部分13a的半圆形叶片13,13'和具有直线吃进叶片部分14的扁平叶片14,14' 具有三角形截面的一个按顺序一体地层压在叶片承载板15,15'上。 去除涂层1b而不损坏光纤的表面。
    • 2. 发明申请
    • Optical fiber coating removing device
    • 光纤涂层去除装置
    • US20050002632A1
    • 2005-01-06
    • US10480469
    • 2002-06-10
    • Shunichi MizunoKazunari Hattori
    • Shunichi MizunoKazunari Hattori
    • G02B6/255B26B27/00G02B6/00G02B6/245
    • G02B6/245Y10T83/9411
    • An object of the invention is to provide an optical fiber coating removing apparatus which can remove coating from an optical fiber preform without damaging the optical fiber surface. The apparatus is excellent in workability because positioning or the like for coating removal easily. The invention provides an optical fiber coating removing apparatus for holding coating 1b of an end portion of an optical fiber 1 between-a pair of coating removing blades and removing the coating 1b from the optical fiber 1 with the pair of the blades. In each blade 11, 11′, a blade pressing plate 12, 12′, a semicircular blade 13, 13′ having a semicircular eating blade portion 13a, and a flat blade 14, 14′ having a straight-line eating blade portion 14a having a triangular section are integrally laminated onto a blade bearing plate 15, 15′ in that order. The coating 1b is removed without damaging the surface of the optical fiber.
    • 本发明的目的是提供一种可以在不损害光纤表面的情况下从光纤预制件上去除涂层的光纤涂层去除装置。 该装置的加工性优异,因为用于涂层去除的定位等容易。 本发明提供了一种光纤涂层去除装置,用于将光纤1的端部的涂层1b保持在一对涂层去除刀片之间,并用一对刀片从光纤1上去除涂层1b。 在每个叶片11,11'中,具有叶片压板12,12',具有半圆形吃入刀片部分13a的半圆形叶片13,13'和具有直线进食刀片部分14a的扁平叶片14,14'具有 三角形部分按顺序整体层压在叶片承载板15,15'上。 去除涂层1b而不损坏光纤的表面。
    • 4. 发明授权
    • Method and apparatus for fusion-splicing polarization maintaining optical fibers
    • 用于熔接偏振保持光纤的方法和装置
    • US06702481B2
    • 2004-03-09
    • US10115424
    • 2002-04-04
    • Eisuke OkiKensuke ItoShunichi Mizuno
    • Eisuke OkiKensuke ItoShunichi Mizuno
    • G02B6255
    • G02B6/2551G02B6/105
    • Each of optical fibers has a core and stress applying members disposed around the core. End portions of the optical fibers are mounted on a fusion-splicing apparatus, and aligned through the image observation from two different lateral directions of the optical fibers. Then, a distance between positions of a bright portion end and a luminance peak closest to the bright portion end is obtained on each bright portion end of a luminance distribution of the optical fiber obtained from at least one picked-up image. The optical fibers are fusion-spliced by aligning the stress applying members so that the sum of the distances is adjusted to be minimum. Alternatively, a distance between positions of the luminance peaks respectively closest to the respective bright portion ends is obtained and the optical fibers are fusion-spliced by aligning the stress applying members so that the distance is adjusted to be maximum.
    • 每个光纤具有设置在芯周围的芯和应力施加构件。 光纤的端部安装在熔接装置上,并通过来自光纤的两个不同横向方向的图像观察对准。 然后,在从至少一张拍摄图像获得的光纤的亮度分布的每个亮部端部上获得亮部端部的位置与最靠近亮部端部的亮度峰值之间的距离。 光纤通过对准应力施加部件进行熔接,使得距离之和被调整为最小。 或者,获得分别最靠近各个亮部端部的亮度峰值的位置之间的距离,并且通过使应力施加构件对准而使光纤熔接,使得距离被调节为最大。