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    • 2. 发明授权
    • Controlled collapse of depressed index optical fiber preforms
    • 凹陷指数光纤预制棒的控制崩溃
    • US06802191B2
    • 2004-10-12
    • US09837983
    • 2001-04-19
    • Yoram De HazanJohn Burnette MacChesneyEric M. MonbergThomas Edward Stockert
    • Yoram De HazanJohn Burnette MacChesneyEric M. MonbergThomas Edward Stockert
    • C03C2560
    • C03B37/01446C03B2201/12C03B2201/31C03B2203/22
    • The doped silica core region of a core rod for an optical fiber preform is protected against unwanted fluorine doping during fluorine doping of the outer silica layer by selectively consolidating the core region prior to fluorine doping. Due to dopants in the core region, the soot in the core region consolidates before the soot in the outer undoped region. This inherent property allows the entire core rod to be heated prior to fluorine doping resulting in selective partial consolidation and preventing fluorine doping of the doped center core region. The process time required may be reduced by using incremental fluorine doping. In the incremental doping process the doping step is separated into a deposit step, where “excess” fluorine is deposited on the silica particles, and a drive-in step where atomic fluorine is distributed into the silica particles. The drive-in step is conveniently combined with the sintering or consolidation step to further enhance the efficiency of the doping process.
    • 用于光纤预制棒的芯棒的掺杂二氧化硅芯区域通过在氟掺杂之前选择性地固化芯区域来保护外氟化硅层的氟掺杂期间的不需要的氟掺杂。 由于核心区域中的掺杂剂,核心区域中的烟灰在外部未掺杂区域内的烟灰之前固结。 这种固有性质允许在氟掺杂之前将整个芯棒加热,从而导致选择性部分固结并防止掺杂中心芯区域的氟掺杂。 可以通过使用增量氟掺杂来减少所需的处理时间。 在增量掺杂过程中,掺杂步骤被分离成沉积步骤,其中“过量的”氟沉积在二氧化硅颗粒上,以及将原子氟分布到二氧化硅颗粒中的驱入步骤。 驱入步骤方便地与烧结或固结步骤组合以进一步提高掺杂过程的效率。
    • 8. 发明授权
    • Chemical powder deposition method for the manufacture of optical fiber preforms and optical fibers
    • 用于制造光纤预制棒和光纤的化学粉末沉积方法
    • US07874180B2
    • 2011-01-25
    • US11975882
    • 2007-10-22
    • John Burnette MacChesneyThomas Edward StockertPatrick William WiskMan Fei Yan
    • John Burnette MacChesneyThomas Edward StockertPatrick William WiskMan Fei Yan
    • C03C25/16
    • C03C13/00C03B37/0128C03C25/00
    • The specification describes the production of optical fibers and optical fiber preforms using Chemical Powder Deposition (CPD). In this process a slurry of silica powders and dopant powders in a liquid carrier is prepared and the inside surface of a silica glass starter tube is coated with the slurry, then dried. The coating is then consolidated and the tube collapsed as in the conventional MCVD process. Multiple coatings, and coatings with varying compositions, can be used to produce any desired profile. In an alternative embodiment, doped silica glass of the desired final composition is prepared, and then pulverized to form the powder for the slurry. In both embodiments, the use of powders of known composition in the slurry allows direct control over the final glass composition, as compared with conventional processes in which the composition in the final glass is indirectly controlled by control of the thermodynamics of a vapor phase reaction.
    • 该规范描述了使用化学粉末沉积(CPD)制造光纤和光纤预制棒。 在该方法中,制备液体载体中的二氧化硅粉末和掺杂剂粉末的浆料,并且将石膏玻璃起始管的内表面涂覆有浆料,然后干燥。 然后将涂层固化,并且管如同传统的MCVD工艺那样折叠。 可以使用具有不同组成的多个涂层和涂层来产生任何所需的轮廓。 在替代实施例中,制备所需最终组成的掺杂二氧化硅玻璃,然后粉碎以形成用于浆料的粉末。 在两个实施方案中,与其中通过控制气相反应的热力学间接控制最终玻璃中的组成的常规方法相比,在浆料中使用已知组合物的粉末允许直接控制最终的玻璃组合物。