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    • 6. 发明授权
    • Methods and systems for forming continuous glass sheets
    • 用于形成连续玻璃板的方法和系统
    • US08875543B2
    • 2014-11-04
    • US13319422
    • 2010-05-11
    • Thierry Luc Alain DannouxRonan Tanguy
    • Thierry Luc Alain DannouxRonan Tanguy
    • C03B17/06C03B23/047C03B40/04
    • C03B17/06C03B23/0476C03B33/0215C03B33/06C03B33/091C03B40/04Y02P40/57
    • A method for forming a continuous glass sheet from a tube of glass includes expanding and thinning the tube of glass by drawing the tube of glass over susceptor bearing comprising a porous sidewall defining an internal chamber. The diameter of the susceptor bearing may increase between a top portion and a bottom portion. The tube of glass may be maintained at a temperature above a softening point of the glass as the tube of glass is drawn over the susceptor bearing. The tube of glass is suspended over the susceptor bearing by blowing the tube of glass away from the susceptor bearing in a radial direction with a pressurized fluid supplied to the internal chamber and emitted from the porous sidewall as the tube of glass is drawn over the susceptor bearing. Thereafter, the tube of glass is cooled and sectioned to form a continuous glass sheet.
    • 从玻璃管形成连续玻璃板的方法包括通过在包括限定内部室的多孔侧壁的基座轴承上拉制玻璃管来使玻璃管膨胀和变薄。 基座轴承的直径可以在顶部和底部之间增加。 当玻璃管拉过基座轴承时,玻璃管可以保持在高于玻璃软化点的温度。 玻璃管悬挂在基座轴承上,当玻璃管沿径向吹动时,加压流体被供应到内部腔室并从多孔侧壁发射,因为玻璃管被拉过基座 轴承。 此后,将玻璃管冷却并分段以形成连续的玻璃板。
    • 7. 发明申请
    • METHODS OF FORMING A GLASS WIRING BOARD SUBSTRATE
    • 形成玻璃接线板基板的方法
    • US20130239617A1
    • 2013-09-19
    • US13989563
    • 2011-11-29
    • Thierry Luc Alain Dannoux
    • Thierry Luc Alain Dannoux
    • C03B23/26
    • C03B23/26C03B23/02H01L2224/16225H01L2224/73253H01L2924/15174H01L2924/15311H01L2924/16152H01L2924/19106
    • Disclosed is a method or process for forming a glass wiring board substrate for integrated circuit wiring boards, including providing a first molding surface (20) positioned on a first mold (22) having truncated conical pins (24) protruding therefrom, the pins (24) having a diameter at the top end (26) thereof of 150 micrometers or less, and a minimum pitch (28) of 400 micrometers or less, providing a glass sheet (30) having first and second surfaces (32,34) on opposite major sides thereof, pressing the first surface (32) of the glass sheet against the molding surface (20), heating the glass sheet (30) and the first molding surface (20) together to a temperature sufficient to soften a glass of which the glass sheet (30) is comprised, such that the pattern of the first molding (20) surface is replicated in the first surface (32) of the glass sheet (30), thereby producing a formed glass sheet (30′) having an array of holes (40) therein, cooling the formed glass sheet (30′) and the molding surface (20) together to a temperature below the softening point of said glass, and separating the formed glass sheet (30) from the molding surface (20). The forming may press the glass sheet using one mold surface or two mold surfaces simultaneously. For embodiments using a single mold, the holes may be blind holes after pressing, and may then be opened to form through-holes by back side lapping. Alternatively, the glass is pressed up to through-hole formation, avoiding the need of back side lapping.
    • 公开了一种用于形成用于集成电路布线板的玻璃布线板基板的方法或工艺,其包括提供位于具有从其突出的截头锥形销(24)的第一模具(22)上的第一模制表面(20),销(24 ),其顶端(26)的直径为150微米或更小,最小间距(28)为400微米或更小,提供在相对的第一表面和第二表面(32,34)上具有第一和第二表面(32,34)的玻璃板(30) 将玻璃板的第一表面(32)压靠在模制表面(20)上,将玻璃板(30)和第一模制表面(20)加热到足以软化玻璃板 包括玻璃板(30),使得第一成型体(20)表面的图案被复制在玻璃板(30)的第一表面(32)中,从而制造具有阵列的成形玻璃板(30') 的孔(40),冷却所形成的玻璃板(30')和模具 g表面(20)一起处于低于所述玻璃的软化点的温度,并将成形的玻璃板(30)与模制表面(20)分离。 成形可以使用一个模具表面或两个模具表面同时挤压玻璃板。 对于使用单个模具的实施例,孔可以是压制后的盲孔,然后可以通过背面研磨打开以形成通孔。 或者,玻璃被压制成通孔形成,避免了背面研磨的需要。
    • 9. 发明申请
    • STACK PROGRESSIVE PRESSING FOR MAKING SHAPED ARTICLES
    • 用于制作形状文章的堆叠渐进式压力
    • US20100300152A1
    • 2010-12-02
    • US12774177
    • 2010-05-05
    • Thierry Luc Alain Dannoux
    • Thierry Luc Alain Dannoux
    • C03B11/00C03B29/06
    • C03B23/0305
    • A method for forming shaped articles (28′) includes preparing a stack (26) having at least an adjacent set (27) of preformed material (28) and forming mold (30), where the preformed material (28) has an edge portion (34) that extends beyond a periphery of the forming mold (30), and the forming mold (30) has an external surface (32) with a desired surface profile of a shaped article. The stack (28) is heated. The stack (28) is advanced through a constriction (56) that has an internal surface configured to fold the edge portion (34) of the preformed material (28) into contact with the external surface (32) of the forming mold (30) as the edge portion (34) passes through the constriction (56), thereby forming a shaped article (28′) from the preformed material (28). The shaped article (28′) is then separated from the forming mold (30).
    • 一种用于形成成形制品(28')的方法包括制备具有至少相邻的预成型材料(28)的组件(27)和成型模具(30)的叠层(26),其中预成型材料(28)具有边缘部分 (34),其延伸超过成形模具(30)的周边,并且成形模具(30)具有具有成形制品的期望表面轮廓的外表面(32)。 堆叠(28)被加热。 堆叠(28)通过收缩部(56)推进,该收缩部(56)具有内表面,该内表面构造成将预成型材料(28)的边缘部分(34)折叠成与成形模具(30)的外表面(32)接触, 因为边缘部分(34)通过收缩部(56),从而与预成型材料(28)形成成形制品(28')。 然后将成形制品(28')与成型模具(30)分离。
    • 10. 发明申请
    • Thermoelectric Device
    • 热电装置
    • US20090277489A1
    • 2009-11-12
    • US12376886
    • 2006-12-08
    • Thierry Luc Alain DannouxChristophe GoupilPaulo Gaspar Jorge Marques
    • Thierry Luc Alain DannouxChristophe GoupilPaulo Gaspar Jorge Marques
    • H01L35/34H01L35/00
    • H01L35/34H01L35/32
    • A thermoelectric device is provided which comprises a plurality of elements of a thermoelectric material, which are preferably either all of n-type material or all p-type. In this preferred device, each element has a first end region for exposure to a first temperature, and a second end region for exposure to a second temperature, with the temperature gradient being in the same direction in each of the elements, so each element develops a voltage between its end regions in the same direction. The first end regions of the elements are mounted on a substrate, but the second end regions of the elements are at least substantially free to move with respect to one another. The elements are connected electrically in series, so that the series connection produces a net voltage, the electrical connections being designed to produce only a small amount of heat conduction.
    • 提供了一种热电装置,其包括热电材料的多个元件,其优选地是n型材料或全部是p型。 在该优选装置中,每个元件具有用于暴露于第一温度的第一端部区域和用于暴露于第二温度的第二端部区域,其中温度梯度在每个元件中沿相同的方向,因此每个元件产生 其端部区域之间的电压在相同方向。 元件的第一端部区域安装在基板上,但是元件的第二端部区域至少基本上相对于彼此自由移动。 这些元件串联电连接,使得串联连接产生净电压,电连接被设计成仅产生少量的热传导。