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    • 2. 发明授权
    • Increasing the cladding-to-core ratio (D/d) of low D/d ratio core rods in optical fiber performs
    • 提高光纤中低D / d比芯棒的包层比(D / d)
    • US07836728B2
    • 2010-11-23
    • US11801365
    • 2007-05-09
    • Eric L. BarishJoseph P. Fletcher, IIIFengqing Wu
    • Eric L. BarishJoseph P. Fletcher, IIIFengqing Wu
    • C03B37/01C03B37/012C03B37/02
    • C03B37/01211C03B37/01245C03B37/014
    • An optical fiber preform is fabricated by inserting a number of core body pieces end-to-end inside a glass cylinder, wherein the pieces may have a cladding-to-core diameter (D/d) ratio within the range of one to four. The cylinder with the inserted core body pieces is mounted vertically on a furnace and heated so that the cylinder becomes elongated and its outside diameter collapses to form a core rod from which core rod sections with D/d ratios greater than five, can be cut. A soot overcladding is deposited on the circumference of a core rod section until the diameter of the deposited soot builds to a determined value. The core rod section with the deposited soot overcladding is consolidated to obtain a finished optical fiber preform. The preform preferably has a D/d ratio of about 15 or more, and an optical fiber may be drawn directly from the preform.
    • 光纤预制棒是通过在玻璃圆筒内端到端插入多个芯体片来制造的,其中,所述片可以具有在1至4的范围内的包芯到芯直径(D / d)比。 具有插入的芯体件的气缸垂直安装在炉子上并加热,使得气缸变长并且其外径塌陷以形成芯棒,从而可以切割D / d比大于5的芯棒部分。 烟炱外包层沉积在芯棒部分的圆周上,直到沉积的烟炱的直径建立到确定的值。 具有沉积的烟灰包层的芯棒部分被固结以获得成品的光纤预制件。 预成型体优选具有约15或更大的D / d比,并且可以从预成型件直接拉制光纤。
    • 3. 发明申请
    • Increasing the cladding-to-core ratio (D/d) of low D/d ratio core rods in optical fiber performs
    • 提高光纤中低D / d比芯棒的包层比(D / d)
    • US20080276651A1
    • 2008-11-13
    • US11801365
    • 2007-05-09
    • Eric L. BarishJoseph P. Fletcher, IIIFengqing Wu
    • Eric L. BarishJoseph P. Fletcher, IIIFengqing Wu
    • C03B37/15
    • C03B37/01211C03B37/01245C03B37/014
    • An optical fiber preform is fabricated by inserting a number of core body pieces end-to-end inside a glass cylinder, wherein the pieces may have a cladding-to-core diameter (D/d) ratio within the range of one to four. The cylinder with the inserted core body pieces is mounted vertically on a furnace and heated so that the cylinder becomes elongated and its outside diameter collapses to form a core rod from which core rod sections with D/d ratios greater than five, can be cut. A soot overcladding is deposited on the circumference of a core rod section until the diameter of the deposited soot builds to a determined value. The core rod section with the deposited soot overcladding is consolidated to obtain a finished optical fiber preform. The preform preferably has a D/d ratio of about 15 or more, and an optical fiber may be drawn directly from the preform.
    • 光纤预制棒是通过在玻璃圆筒内端到端插入多个芯体片来制造的,其中,所述片可以具有在1至4的范围内的包芯到芯直径(D / d)比。 具有插入的芯体件的气缸垂直安装在炉子上并加热,使得气缸变长并且其外径塌陷以形成芯棒,从而可以切割D / d比大于5的芯棒部分。 烟炱外包层沉积在芯棒部分的圆周上,直到沉积的烟炱的直径建立到确定的值。 具有沉积的烟灰包层的芯棒部分被固结以获得成品的光纤预制件。 预成型体优选具有约15或更大的D / d比,并且可以从预成型件直接拉制光纤。
    • 6. 发明授权
    • VAd process improvements
    • VAd流程改进
    • US5281248A
    • 1994-01-25
    • US20951
    • 1993-02-22
    • Eric L. BarishDavid E. Schoonmaker
    • Eric L. BarishDavid E. Schoonmaker
    • G02B6/00C03B37/014C03B37/018C03B37/023
    • C03B37/01446C03B37/01466Y02P40/57
    • In a VAD method for making optical fiber preforms, the yield is increased by terminating or significantly reducing the supply of glass raw material to the torch (24) just after glass jacket soot (23, FIG. 4) has been deposited at the bottom end of the glass rod (20). The fuel supply to the torch is maintained, however, and the flame continues to be projected from the torch toward the deposited soot boule (23). The rate of vertical movement of the glass rod is increased until the flame is directed at the bottom end (27') of the soot boule. The flame is then allowed to dwell for a sufficient period to increase significantly the temperature of the bottom end of the soot boule and to consolidate partially the bottom end of the soot boule. This has the effect of containing the soot and countering the effects of gravity on the delicate soot boule that might otherwise cause it to crack.
    • 在用于制造光纤预制棒的VAD方法中,通过在玻璃夹套烟炱(图4)已经沉积在底端之后终止或显着减少玻璃原料供给到焊炬(24)的产量而提高了产率 的玻璃棒(20)。 然而,维持火炬的燃料供应,并且火焰继续从割炬投射到沉积的烟灰le(23)。 玻璃棒的垂直运动速率增加,直到火焰指向烟炱块的底端(27')。 然后允许火焰持续足够的时间以显着增加烟炱底部的底部的温度并且部分地固化烟炱底部的底端。 这具有含有烟灰和抵抗重力对微细烟炱焦的影响,否则可能导致其破裂。