Thermo-mechanical reforming method and system and mechanical reforming tool
    5.
    发明授权
    Thermo-mechanical reforming method and system and mechanical reforming tool 有权
    热机械重整方法及系统及机械重整工具

    公开(公告)号:US08833106B2

    公开(公告)日:2014-09-16

    申请号:US13622067

    申请日:2012-09-18

    IPC分类号: C03B23/023 C03B29/02

    摘要: A reformable area and a non-reformable area of a sheet of glass material are heated to a first temperature corresponding to a first viscosity. The reformable area is subsequently locally heated to a second temperature corresponding to a second viscosity, where the second viscosity is lower than the first viscosity. A bend is formed in the reformable area during the local heating of the reformable area by contacting a first pusher with the non-reformable area and translating the first pusher along a linear path to apply a pushing force to the non-reformable area that results in the bend in the reformable area or by contacting a second pusher with an edge area of the reformable area and rotating the pusher along a circular path to apply a pushing force to the edge area of the reformable area that results in the bend in the reformable area.

    摘要翻译: 将一片玻璃材料的可重整区域和不可重整区域加热到对应于第一粘度的第一温度。 然后将可重整区域局部加热至对应于第二粘度的第二温度,其中第二粘度低于第一粘度。 在可重整区域的局部加热期间,通过使第一推动器与不可重新形成的区域接触并沿着线性路径平移第一推动器,在可重新形成的区域中形成弯曲,以将推力施加到不可重新形成的区域,从而导致 可重新形成区域的弯曲或者通过使第二推动器与可重整区域的边缘区域接触并沿着圆形路径旋转推动器以将推力施加到可重整区域的边缘区域,导致可重整区域的弯曲 。

    THERMO-MECHANICAL REFORMING METHOD AND SYSTEM AND MECHANICAL REFORMING TOOL
    6.
    发明申请
    THERMO-MECHANICAL REFORMING METHOD AND SYSTEM AND MECHANICAL REFORMING TOOL 有权
    热机械改造方法与系统与机械改造工具

    公开(公告)号:US20140075996A1

    公开(公告)日:2014-03-20

    申请号:US13622067

    申请日:2012-09-18

    IPC分类号: C03B23/023

    摘要: A reformable area and a non-reformable area of a sheet of glass material are heated to a first temperature corresponding to a first viscosity. The reformable area is subsequently locally heated to a second temperature corresponding to a second viscosity, where the second viscosity is lower than the first viscosity. A bend is formed in the reformable area during the local heating of the reformable area by contacting a first pusher with the non-reformable area and translating the first pusher along a linear path to apply a pushing force to the non-reformable area that results in the bend in the reformable area or by contacting a second pusher with an edge area of the reformable area and rotating the pusher along a circular path to apply a pushing force to the edge area of the reformable area that results in the bend in the reformable area.

    摘要翻译: 将一片玻璃材料的可重整区域和不可重整区域加热到对应于第一粘度的第一温度。 然后将可重整区域局部加热至对应于第二粘度的第二温度,其中第二粘度低于第一粘度。 在可重整区域的局部加热期间,通过使第一推动器与不可重新形成的区域接触并沿着线性路径平移第一推动器,在可重新形成的区域中形成弯曲,以将推力施加到不可重新形成的区域,从而导致 可重新形成区域的弯曲或者通过使第二推动器与可重整区域的边缘区域接触并沿着圆形路径旋转推动器以将推力施加到可重整区域的边缘区域,导致可重整区域的弯曲 。

    Injector Assemblies and Microreactors Incorporating The Same
    7.
    发明申请
    Injector Assemblies and Microreactors Incorporating The Same 有权
    注射器组件和包含它的微反应器

    公开(公告)号:US20090297410A1

    公开(公告)日:2009-12-03

    申请号:US12396114

    申请日:2009-03-02

    IPC分类号: B01J10/00 B01L5/00

    摘要: A microreactor assembly (100) is provided comprising a fluidic microstructure (10) and an injector assembly (20). The injector assembly (20) comprises a liquid inlet (22), a gas inlet (24), a liquid outlet (26), a gas outlet (28), a liquid flow portion (30) extending from the liquid inlet (22) to the liquid outlet (26), and a gas flow portion (40) extending from the gas inlet (24) to the gas outlet (28). Further, the injector assembly (20) defines an injection interface with a microchannel input port (14) of the fluidic microstructure (10). The injector assembly (20) is configured such that the gas outlet (28) of the gas flow portion (40) is positioned to inject gas into the liquid flow portion (30) upstream of the liquid outlet (26), into the liquid flow portion (30) at the liquid outlet (26), or into an extension (35) of the liquid flow portion (30) downstream of the liquid outlet (26). Further, the injector assembly (20) is configured such that gas is injected into the liquid flow portion (30) or the extension thereof as a series of gas bubbles. The resulting microreactor assembly (100), and the injector assemblies utilized therein, which can be used with a variety of microreactor designs, effectively improves the interfacial surface area within the microstructure without requiring excessive reduction of microchannel dimensions.

    摘要翻译: 提供了包括流体微结构(10)和喷射器组件(20)的微反应器组件(100)。 喷射器组件(20)包括液体入口(22),气体入口(24),液体出口(26),气体出口(28),从液体入口(22)延伸的液体流动部分(30) 到液体出口(26)和从气体入口(24)延伸到气体出口(28)的气体流动部分(40)。 此外,喷射器组件(20)限定与流体微结构(10)的微通道输入端口(14)的注入界面。 喷射器组件(20)构造成使得气体流动部分(40)的气体出口(28)定位成将气体喷射到液体出口(26)上游的液体流动部分(30)中,进入液体流 在液体出口(26)处的部分(30),或液体出口(26)下游的液体流动部分(30)的延伸部(35)中。 此外,喷射器组件(20)构造成使得气体作为一系列气泡被喷射到液体流动部分(30)或其延伸部分中。 可以与各种微反应器设计一起使用的所得微反应器组件(100)和其中使用的喷射器组件有效地改善了微结构内的界面表面积,而不需要过度减小微通道尺寸。

    IN-LINE CONTACTLESS PRESSURE SENSORS AND METHODS OF MEASURING PRESSURE
    8.
    发明申请
    IN-LINE CONTACTLESS PRESSURE SENSORS AND METHODS OF MEASURING PRESSURE 有权
    在线无连接压力传感器和测量压力的方法

    公开(公告)号:US20130247675A1

    公开(公告)日:2013-09-26

    申请号:US13989261

    申请日:2011-11-22

    申请人: Stephane Poissy

    发明人: Stephane Poissy

    IPC分类号: G01L7/08

    摘要: A pressure sensor includes a housing that includes an interior surface and an axially symmetric liner disposed along the interior surface of the housing, where the liner includes an interior surface and an exterior surface. The pressure sensor further includes a sensing member that includes an interior surface and an exterior surface, where the interior surface of the sensing member is adjacent to the exterior surface of the liner, and the sensing member is configured to expand with the liner. The pressure sensor further includes a strain gauge affixed to the exterior surface of the sensing member.

    摘要翻译: 压力传感器包括壳体,其包括沿着壳体的内表面设置的内表面和轴向对称的衬套,其中衬套包括内表面和外表面。 压力传感器还包括感测构件,其包括内表面和外表面,其中感测构件的内表面与衬垫的外表面相邻,并且感测构件构造成与衬套一起膨胀。 压力传感器还包括固定到感测构件的外表面的应变仪。

    PROCESS AND SYSTEM FOR PRECISION GLASS SHEET BENDING
    10.
    发明申请
    PROCESS AND SYSTEM FOR PRECISION GLASS SHEET BENDING 有权
    精密玻璃板弯曲的工艺和系统

    公开(公告)号:US20130125589A1

    公开(公告)日:2013-05-23

    申请号:US13303685

    申请日:2011-11-23

    IPC分类号: C03B23/023

    摘要: An apparatus and method for precision bending a glass sheet that includes an oven for heating the glass sheet to a temperature near the softening temperature of the glass sheet. A stage for supporting the glass sheet. A pair of reference surfaces on the stage for precisely locating the glass sheet on the stage. At least one bending mechanism on a pair of arms inside the oven for bending an edge portion of the glass sheet. Inward facing first stop surfaces on the arms that contact reference surfaces on the stage for precisely locating the bending mechanism on the arms relative to the stage and the glass sheet.

    摘要翻译: 一种精密弯曲玻璃板的装置和方法,所述玻璃板包括用于将所述玻璃板加热到接近所述玻璃板的软化温度的温度的炉。 支撑玻璃板的舞台。 舞台上的一对参考表面,用于将玻璃板精确定位在舞台上。 在烤箱内的一对臂上的至少一个弯曲机构,用于弯曲玻璃板的边缘部分。 向内面对臂上的第一止动表面,该表面接触平台上的参考表面,用于将弯曲机构相对于平台和玻璃板精确地定位在臂上。