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    • 1. 发明授权
    • Manufacturing apparatus of porous glass base material and glass base material for optical fiber
    • 多孔玻璃基材和光纤玻璃基材的制造装置
    • US07694536B2
    • 2010-04-13
    • US10593233
    • 2005-03-09
    • Makoto YoshidaTakeshi Kamio
    • Makoto YoshidaTakeshi Kamio
    • C03B37/01C03B37/00C03B37/018
    • C03B37/0144
    • A manufacturing apparatus of a porous glass base material is provided. The manufacturing apparatus includes a burner repeatedly moving back and forthreciprocating in a direction along a longitudinal direction of an axis-rotating base member glass rod, where the burner ejects and deposits glass particles onto the base member glass rod, and an exhaust hood positioned above a porous glass soot formed by the deposition of the glass particles, where the exhaust hood repeatedly moves back and forth reciprocates in a same direction as the burner in synchronization with the burner. Here, the exhaust hood surrounds a portion of the porous glass soot corresponding to an angle θ of 100° or more with respect to an axial centera central axis of the porous glass soot. To be more specific, the angle θ may be preferably 180° or more.
    • 提供一种多孔玻璃基材的制造装置。 该制造装置包括:燃烧器,沿着旋转基座部件玻璃棒的长度方向反复进行往复运动,在该方向上,燃烧器将玻璃粒子喷出并将玻璃粒子沉积在基体部件玻璃棒上,排气罩位于 通过沉积玻璃颗粒形成的多孔玻璃烟炱,其中排气罩与燃烧器同步地沿与燃烧器相同的方向反复地往复运动。 这里,排气罩围绕对应于角度的多孔玻璃烟灰的一部分; 相对于多孔玻璃烟炱的轴心中心轴线为100°以上。 更具体地说,角度和角度; 可以优选为180°以上。
    • 3. 发明申请
    • Manufacturing Apparatus Of Porous Glass Base Material And Glass Base Material For Optical Fiber
    • 多孔玻璃基材和光纤玻璃基材的制造装置
    • US20070256456A1
    • 2007-11-08
    • US10593233
    • 2005-03-09
    • Makoto YoshidaTakeshi Kamio
    • Makoto YoshidaTakeshi Kamio
    • C03B37/018C03B8/04
    • C03B37/0144
    • A manufacturing apparatus of a porous glass base material is provided. The manufacturing apparatus includes a burner repeatedly moving back and forth reciprocating in a direction along a longitudinal direction of an axis-rotating base member glass rod, where the burner ejects and deposits glass particles onto the base member glass rod, and an exhaust hood positioned above a porous glass soot formed by the deposition of the glass particles, where the exhaust hood repeatedly moves back and forth reciprocates in a same direction as the burner in synchronization with the burner. Here, the exhaust hood surrounds a portion of the porous glass soot corresponding to an angle θ of 100° or more with respect to an axial centera central axis of the porous glass soot. To be more specific, the angle θ may be preferably 180° or more.
    • 提供一种多孔玻璃基材的制造装置。 该制造装置包括:燃烧器,沿着旋转基座部件玻璃棒的长度方向往复移动,在该方向上,燃烧器将玻璃粒子喷出并将玻璃粒子沉积在基部玻璃棒上;排气罩,位于上方 通过沉积玻璃颗粒形成的多孔玻璃烟炱,其中排气罩与燃烧器同步地沿与燃烧器相同的方向反复地往复运动。 这里,排气罩围绕相对于多孔玻璃烟炱的轴心中心轴线的角度θ为100°以上的多孔玻璃烟炱的一部分。 更具体地说,角度θ可优选为180°以上。
    • 4. 发明申请
    • Sintering method and sintering apparatus of porous glass base material
    • 多孔玻璃基材的烧结方法和烧结装置
    • US20070193306A1
    • 2007-08-23
    • US10593268
    • 2005-03-07
    • Makoto YoshidaTakeshi KamioHiroyuki Koide
    • Makoto YoshidaTakeshi KamioHiroyuki Koide
    • C03B37/10C03C25/10
    • C03B37/01446C03B37/0146
    • There are provided a sintering method and a sintering apparatus of a porous glass base material for sintering a porous glass base material to be dehydrated and vitrified into a transparent glass without causing core displacement and cross-sectional shape deformation. In detail, an aspect of the present invention is a sintering method of a porous glass base material for sintering a rod-like porous glass base material by hanging and moving the rod-like porous glass base material though a heating furnace. Here, the porous glass base material is lowered into a heating furnace heated to a sintering temperature, and after every part of the porous glass base material is moved through a preheated region extending from an upper edge of an insulating member to an upper edge of a heater in a heating furnace body in 4.5 hours or longer, the porous glass base material is sintered by the heater to be vitrified into a transparent glass.
    • 提供一种多孔玻璃基材的烧结方法和烧结装置,用于将要脱水和玻璃化的多孔玻璃基材烧结成透明玻璃而不引起芯部位移和横截面形状变形。 具体地说,本发明的一个方面是通过使棒状多孔玻璃基材通过加热炉悬挂移动的多孔玻璃基材的烧结方法。 这里,将多孔玻璃基材降低到加热到烧结温度的加热炉中,并且在多孔玻璃基材的每一部分移动通过从绝缘构件的上边缘延伸到上部边缘的预热区域 在加热炉体内加热4.5小时以上,多孔玻璃基材由加热器烧结成玻璃化成透明玻璃。