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    • 2. 发明申请
    • SYSTEMS AND METHODS FOR THERMALLY CONTROLLING WARP
    • 用于热控制温度的系统和方法
    • US20160368807A1
    • 2016-12-22
    • US15181706
    • 2016-06-14
    • CORNING INCORPORATED
    • Antoine Gaston Denis BissonKevin Patrick McNelisRohit RaiJohn Richard RidgeLjerka Ukrainczyk
    • C03B23/03
    • C03B23/0307C03B23/0235C03B23/0302C03B23/0352
    • Embodiments disclosed herein include systems and methods for controlling material warp that include placing the shaped mold in a heating device, forming a glass material into a shaped mold, and cooling the glass material and the shaped mold to a predetermined viscosity of the glass material. Some embodiments include, a predetermined time prior to removing the glass material and the shaped mold from the heating device, holding the glass at the mold in the heating device where the heating device temperature is substantially equal to mold and glass temperature just prior to exiting to ambient temperature. Some embodiments include removing the glass material and the shaped mold from the heating device to further cool the glass material and the shaped mold at ambient temperature, where after removing the glass material and the shaped mold from the heating device, the glass material will exhibit controlled or desired material warp.
    • 本文公开的实施例包括用于控制材料翘曲的系统和方法,包括将成形模具放置在加热装置中,将玻璃材料形成成型模具,并将玻璃材料和成形模具冷却至玻璃材料的预定粘度。 一些实施例包括在从加热装置移除玻璃材料和成型模具之前的预定时间,将玻璃保持在加热装置中的模具处,其中加热装置温度基本上等于在退出之前的模具和玻璃温度 环境温度。 一些实施例包括从加热装置移除玻璃材料和成型模具以在环境温度下进一步冷却玻璃材料和成型模具,其中在从加热装置移除玻璃材料和成型模具之后,玻璃材料将显示受控制 或期望的材料翘曲。
    • 8. 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。