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    • 1. 发明授权
    • Method of fabricating silica glass by sol-gel process
    • 通过溶胶 - 凝胶法制造石英玻璃的方法
    • US06299822B1
    • 2001-10-09
    • US09249482
    • 1999-02-12
    • Young-Sik YoonYoung-Min Baik
    • Young-Sik YoonYoung-Min Baik
    • C04B35624
    • C03B19/12C03B37/016Y02P40/57
    • A method of a fabricating silica glass by sol-gel process is provided. The method includes mixing silica, a binder, a dispersing agent and a gelling agent, and forming a sol without air bubbles; injecting the sol into a mold, the injection of the sol into the mold being controlled by the pressure of an inert gas; gelating the sol injected into the mold and demolding the gel; and drying the demolded gel, and thermally-treating the dried gel. Therefore, incorporation of impurities and air bubbles during injection of a sol into a mold is minimized, and injection amount and injection rate of the sol can be controlled.
    • 提供了通过溶胶 - 凝胶法制造石英玻璃的方法。 该方法包括混合二氧化硅,粘合剂,分散剂和胶凝剂,并形成无气泡的溶胶; 将溶胶注入模具中,通过惰性气体的压力将溶胶注入模具中; 将注入模具的溶胶凝胶化并脱模凝胶; 并干燥脱模的凝胶,并对干燥的凝胶进行热处理。 因此,将溶胶注入模具时的杂质和气泡的并入最小化,可以控制溶胶的注入量和注入量。
    • 3. 发明授权
    • Method for manufacturing tube-shaped silica glass product
    • 管状石英玻璃制品的制造方法
    • US06555048B1
    • 2003-04-29
    • US09642764
    • 2000-08-22
    • Young-Sik YoonYoung-Min Baik
    • Young-Sik YoonYoung-Min Baik
    • C04B3332
    • C03B19/12C04B35/14C04B2235/94
    • A silica product, method and apparatus for manufacturing a tube-shaped silica glass product using a molded green body having a hollow rod structure. A molded green body having a hollow rod structure has a uniform outer diameter and has a bore having an inner diameter increasing gradually from one end to the other. When sintered in a vertically movable sintering furnace, a tube-shaped silica glass product having a longitudinal cross section distribution less than a tolerance limit may be obtained. Optical fiber manufactured using the silica glass tube according to the present invention may have a uniform longitudinal geometrical structure, thereby exhibiting superior transmission characteristics.
    • 一种二氧化硅产品,使用具有中空棒结构的模制生坯制造管状二氧化硅玻璃产品的方法和装置。 具有中空棒结构的模制生坯具有均匀的外径,并且具有内径从一端到另一端逐渐增加的孔。 当在可垂直移动的烧结炉中烧结时,可获得纵截面分布小于公差极限的管状二氧化硅玻璃制品。 使用根据本发明的石英玻璃管制造的光纤可以具有均匀的纵向几何结构,从而表现出优异的传输特性。
    • 4. 发明授权
    • Apparatus and method for sintering a sol-gel tube using a furnace having a rotating cap
    • 使用具有旋转盖的炉烧结溶胶 - 凝胶管的装置和方法
    • US06510711B2
    • 2003-01-28
    • US09745403
    • 2000-12-22
    • Young-Sik YoonYoung-Min Baik
    • Young-Sik YoonYoung-Min Baik
    • C03B37012
    • C03B19/12
    • Disclosed is an apparatus and method for sintering an over-jacketing tube in the zone sintering phase of an optical fiber preform fabrication process using a sol-gel process. The sintering apparatus includes: a processing tube; a gel tube assembly connected to a top rotation cap positioned at the top opening of the processing tube and being rotated at a predetermined rate, a ceramic pin extending downwardly from the center axis of the rotation cap, and a gel tube suspended from the bottom of the ceramic pin and suspended along the same axle of the processing tube; and a movable furnace initially positioned at the bottom of the processing tube and translating in a vertical direction along the processing tube for thermally treating the gel tube.
    • 公开了一种用于在使用溶胶 - 凝胶法的光纤预制棒制造工艺的区域烧结阶段中烧结外套管的装置和方法。 烧结装置包括:处理管; 连接到位于处理管的顶部开口处并以预定速率旋转的顶部旋转帽的凝胶管组件,从旋转帽的中心轴向下延伸的陶瓷针和从底部延伸的凝胶管 陶瓷销并沿着处理管的同一轴悬挂; 以及可移动炉,其最初位于加工管的底部并沿着处理管的垂直方向平移,用于热处理凝胶管。
    • 5. 发明授权
    • Apparatus and method for fabricating tube-shaped glass monolith using
sol-gel process
    • 使用溶胶 - 凝胶法制造管状玻璃整体的装置和方法
    • US5922099A
    • 1999-07-13
    • US037525
    • 1998-03-10
    • Young-Sik YoonYoung-Min BaikSun-Uk KimMyung-Chul Jun
    • Young-Sik YoonYoung-Min BaikSun-Uk KimMyung-Chul Jun
    • C03B37/018C03B8/02C03B19/12C03B37/016C03C1/00
    • C03B37/016C03B19/12C03C1/006Y10S65/09Y10S65/90Y10S65/901
    • There are provided tube-shaped glass monolith fabricating apparatus and method using a sol-gel process. In the tube-shaped glass monolith fabricating method using a tube-shaped glass monolith fabricating apparatus which has an upper mold including cylindrical portions of different sizes, a lower mold including a first lower cylindrical portion inclined toward the center thereof by a predetermined degree and a second lower cylindrical portion having a vacuum releasing hole, a cylindrical central mold for forming a tube-shaped glass, and a rod-shaped rod, the lower mold, the central mold, and the rod are assembled and a sol is poured in the central mold. Then, an unmixable liquid is poured on the sol, and the upper mold is assembled to the central mold. The sol is gelled in the central mold, the upper mold is removed, a cap is opened to release vacuum, and the rod is removed. A small amount of the unmixable liquid remains in a gel hole formed in the center of the gel and the vacuum releasing hole is plugged with the cap. An upper portion of the gel hole is sealed with a sealing paper. Subsequently, the gel is dried for a predetermined time, the central mold is removed from the gel, and the gel is dried until the gel completely shrinks. Finally, the sealing paper and the unmixable liquid are removed from the gel. Thus, a tube-shaped dried gel is formed.
    • 提供了使用溶胶 - 凝胶法的管状玻璃整料制造装置和方法。 在使用管状玻璃整体制造装置的管状玻璃整体制造方法中,所述管状玻璃整体制造装置具有包括不同尺寸的圆筒部的上模,下模具包括以预定程度向其中心倾斜的第一下圆筒部, 具有真空释放孔的第二下部圆柱形部分,用于形成管状玻璃的圆柱形中心模具和棒状杆,下部模具,中心模具和杆组装,并将溶胶倒入中心 模子。 然后,将不可混合的液体倒在溶胶上,将上模组装到中心模具上。 溶胶在中心模具中凝胶化,去除上模具,打开盖子以释放真空,并且去除棒材。 少量的不可混合的液体保留在形成于凝胶中心的凝胶孔中,并且真空释放孔与盖堵塞。 凝胶孔的上部用密封纸密封。 随后,将凝胶干燥预定时间,将中心模具从凝胶中除去,并将凝胶干燥直到凝胶完全收缩。 最后,将密封纸和不可混合的液体从凝胶中除去。 因此,形成管状干凝胶。
    • 8. 发明授权
    • Micro-bubble analyzing apparatus for high-purity glass tube using laser light scattering
    • 用于使用激光散射的高纯度玻璃管的微气泡分析装置
    • US06822735B2
    • 2004-11-23
    • US10298982
    • 2002-11-18
    • Byoung-Sam KimYoung-Min BaikMi-Kyung LeeHyung-Min Lee
    • Byoung-Sam KimYoung-Min BaikMi-Kyung LeeHyung-Min Lee
    • G01N2100
    • G01N21/958
    • Enclosed is an apparatus for analyzing micro-bubbles inside a high-purity glass tube by using a laser light dispersion. The apparatus includes: an optical base having a sample stage in a substantially horizontal orientation; a glass tube rotably mounted on the optical base in a substantially vertical orientation, the glass tube being rotated and translated in a vertical direction at a predetermined speed via the sample stage; a light generator disposed at one side of the glass tube for selectively irradiating a laser light onto an outer surface of the glass tube at a prefixed angle; and, a detector disposed at the other side of the glass tube for detecting the distribution and amount of micro-bubbles of the glass tube using the laser light passed through the glass tube.
    • 封闭的是通过使用激光分散体来分析高纯度玻璃管内的微气泡的装置。 该装置包括:具有大致水平取向的样品台的光学基座; 玻璃管以大致垂直的方向可旋转地安装在光学基座上,玻璃管经由样品台以预定速度在垂直方向上旋转和平移; 设置在所述玻璃管的一侧的光发生器,用于以预定角度选择性地将激光照射到所述玻璃管的外表面上; 以及检测器,设置在玻璃管的另一侧,用于检测使用穿过玻璃管的激光的玻璃管的微气泡的分布和数量。