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    • 63. 发明申请
    • METHOD AND APPARATUS FOR MAKING A PROFILED TUBING AND A SLEEVE
    • 用于制造型材管材和套筒的方法和装置
    • US20150225279A1
    • 2015-08-13
    • US14422462
    • 2013-08-29
    • Corning Incorporated
    • Antoine Gaston Denis BissonPatrick Joseph CimoThierry Luc Alain DannouxRonan Tanguy
    • C03B23/07C03B33/06C03B23/045
    • C03B23/07C03B17/04C03B23/045C03B23/0476C03B33/06C03B40/04Y10T428/131
    • An apparatus (100) for making glass tubing (200) of a desired non-circular cross-sectional profile (cf FIG. 3) includes a mandrel (101) adapted for positioning proximate heat-softened tubing. The mandrel (101) has a nose (102) and a nozzle section (120) with a chosen profile that will define a final cross-sectional profile of the tubing. The nozzle section (120) has a feed chamber (140) for receiving a gas from a source (207) and a porous and/or foraminous circumferential surface (132,134) through which the gas can be discharged to an exterior of the mandrel. The gas discharges to the exterior of the mandrel, forming a film of pressurized gas in the gap (314, 318) between the porous circumferential surface (132,134) and the heat-softened tubing (200). A method of forming tubing having a non-circular cross-sectional profile using the apparatus is also provided. A glass sleeve made from the reshaped or formed tubing is also disclosed: a monolithic sleeve made of parallel, opposite, flat and smooth front and back covers for use in an electronic device (cf FIG. 13). Some glass-ceramic materials may also be suitable for the tubing, such as transparent beta spodumene.
    • 用于制造具有期望的非圆形横截面轮廓(参见图3)的玻璃管(200)的设备(100)包括适于定位靠近热软管的心轴(101)。 心轴(101)具有鼻部(102)和具有选定轮廓的喷嘴部分(120),其将限定管道的最终横截面轮廓。 喷嘴部分(120)具有用于从源(207)和多孔和/或有孔圆周表面(132,134)接收气体的进料腔(140),气体可以通过该进料腔排出到心轴的外部。 气体排放到心轴的外部,在多孔圆周表面(132,134)和热软管(200)之间的间隙(314,318)中形成加压气体薄膜。 还提供了使用该装置形成具有非圆形横截面轮廓的管道的方法。 还公开了由重塑或形成的管制成的玻璃套管:由用于电子设备(参见图13)的由平行的,相对的,平坦且光滑的前盖和后盖制成的整体式套筒。 一些玻璃陶瓷材料也可能适用于管道,如透明β锂辉石。
    • 66. 发明申请
    • METHOD AND APPARATUS FOR DRAWING A QUARTZ GLASS STRAND
    • 用于绘制QUARTZ玻璃条的方法和装置
    • US20130305784A1
    • 2013-11-21
    • US13981874
    • 2012-01-26
    • Boris GromannChristian Neumann
    • Boris GromannChristian Neumann
    • C03B7/098C03B17/04
    • C03B7/098C03B5/0336C03B17/04
    • In a known process for drawing a quartz glass strand, SiO2 particles are fed to a melting crucible and softened therein to form a quartz glass mass, and the softened quartz glass mass is pulled vertically downward as a quartz glass strand via a drawing nozzle which is provided in the bottom region of the melting crucible and has a gap-like drawing nozzle opening. In order, on the basis thereof, to make it easier to reproducibly produce a quartz glass strand with a minor deviation from the nominal wall thickness profile, and in particular to avoid irregularly occurring indentations and protrusions of the wall thickness profile, it is proposed according to the invention that the wall thickness profile of the quartz glass strand is detected, and that the drawing nozzle is heated by means of a plurality of heating elements which are distributed around the drawing nozzle opening and can be electrically actuated independently of one another, and that the quartz glass mass is locally heated by means of the heating elements within the gap-like drawing nozzle opening depending on measurement results of the wall thickness profile.
    • 在已知的用于拉制石英玻璃线的方法中,将SiO 2颗粒进料到熔化坩埚中并在其中软化以形成石英玻璃块,并且将软化的石英玻璃物质作为石英玻璃束通过拉丝喷嘴垂直向下拉, 设置在熔融坩埚的底部区域中,并且具有间隙状的喷嘴开口。 为了在其基础上,为了更容易地以与标称壁厚分布稍微偏离的方式重复地生产石英玻璃绞线,并且特别是为了避免壁厚分布的不规则发生的凹陷和突起, 本发明中,检测到石英玻璃纤维束的壁厚分布,并且通过分布在拉伸喷嘴开口周围的多个加热元件来加热拉丝喷嘴,并可彼此独立地电致动, 根据壁厚分布的测量结果,石英玻璃体通过加热元件局部加热在间隙状拉丝喷嘴孔内。
    • 68. 发明申请
    • STRENGTHENED GLASS ENCLOSURES AND METHOD
    • 加强玻璃外壳和方法
    • US20130258569A1
    • 2013-10-03
    • US13877469
    • 2011-10-03
    • Jaymin AminDavid John McEnroeWendell P. Weeks
    • Jaymin AminDavid John McEnroeWendell P. Weeks
    • C03B23/047H05K5/02C03B17/02
    • C03B23/047C03B17/025C03B17/04H05K5/0217Y02P40/57Y10T428/131
    • Disclosed are methods for making an enclosure having a three-dimensionally shaped glass wall portion comprising an initial step of shaping a glass charge into a preform having a preform cross-section corresponding in shape to a smaller cross-sectional shape for the three-dimensional glass wall portion. At least a surface portion of the preform is then finished if necessary to remove any visible optical surface defects therefrom and/or to meet geometric tolerances, and the preform is drawn along an elongation axis perpendicular to the preform cross-section to reduce or draw down the preform in size to the smaller cross-sectional shape for the three dimensional glass wall portion. The smaller cross-sectional shape or sections thereof are then tempered to provide a strengthened glass wall portion having a compressively stressed surface layer thereon.
    • 公开了一种用于制造具有三维形状的玻璃壁部分的外壳的方法,其包括将玻璃电荷成形为预型件的初始步骤,所述预成型件具有对应于形状的预制件横截面以用于三维玻璃的较小横截面形状 壁部分。 如果需要,至少预成型件的表面部分被完成,以从其中除去任何可见的光学表面缺陷和/或满足几何公差,并且预成型件沿着垂直于预成型件横截面的伸长轴被拉伸以减少或拉伸 预成型件尺寸相对于三维玻璃壁部分的较小横截面形状。 然后对其较小的横截面形状或其部分进行回火,以提供其上具有压应力表面层的强化玻璃壁部分。
    • 69. 发明申请
    • Method and apparatus for manufacturing glass tubes having a predetermined inner profile, preferably for continuously manufacturing such glass tubes
    • 用于制造具有预定内部轮廓的玻璃管的方法和装置,优选用于连续制造这种玻璃管
    • US20130186143A1
    • 2013-07-25
    • US13551920
    • 2012-07-18
    • Michael ZieglerRainer EichholzErhard Zemsch
    • Michael ZieglerRainer EichholzErhard Zemsch
    • C03B17/04
    • C03B17/04C03B33/06
    • The invention relates to a method and apparatus for manufacturing glass tubes having a predetermined inner profile according to a Vello-method or Down-Draw-method, wherein molten glass 6 emerges from an outlet orifice 12 of a melt feed 2 and is drawn over a shaping body 3 so as to form a hollow drawing bulb 50, and the drawing bulb 50 is drawn over a profile forming body 4 positioned downstream of the shaping body 3 to form the predetermined inner profile.In order to enable a reliable and riskless positioning of the profile forming body 4 in an operational position within the drawing bulb 50, according to the invention the profile forming body 4 is moved in axial direction either from below the shaping body 3 via the inner space of the glass tube 5; 5′ or via an inner bore 31 of a shaft 30 supporting said shaping body until reaching an operational position in the inner space of said glass tube 5; 5′.
    • 本发明涉及一种用于制造具有根据Vello方法或下拉法的预定内部轮廓的玻璃管的方法和装置,其中熔融玻璃6从熔体进料2的出口孔12排出并被拉过 成形体3以形成中空的拉丝灯泡50,并且将拉伸灯泡50拉伸到位于成型体3下游的轮廓形成体4上以形成预定的内部轮廓。 为了使轮廓成形体4可靠且无风险地定位在拉丝灯泡50内的操作位置,根据本发明,轮廓成形体4在成形体3的下方经由内部空间 的玻璃管5; 5'或通过支撑所述成形体的轴30的内孔31,直到达到所述玻璃管5的内部空间中的操作位置; 5'。