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    • 3. 发明授权
    • Integral chopped fiber reinforced glass or glass-ceramic structures
    • 整体短切纤维增强玻璃或玻璃陶瓷结构
    • US4913953A
    • 1990-04-03
    • US289110
    • 1988-12-23
    • Karl M. PrewoEric Minford
    • Karl M. PrewoEric Minford
    • C03B19/09C03C14/00
    • C03B19/09C03C14/002C03C2214/02C03C2214/20Y10T428/24273Y10T428/24322Y10T428/24331Y10T428/30
    • A chopped fiber reinforced glass or glass-ceramic matrix integral stgructure having no bond lines. The structure comprises a face plate, a back plate, and a grid array of chamber walls. The face plate connects to the back plate through the chamber walls forming a grid array of chambers. The back plate has an array of apertures that lead to the chambers. The structure is fabricated by disposing at least two mold inserts in a mold housing having a bottom and sides. The mold inserts are in contact and in an array that follows the surface contours of the mold. The mold inserts and mold insert array is not capable of lateral movement. Heated chopped glass or glass ceramic impregnated fibers are displaced into the mold under pressure to form a composite. The composite is cooled and the mold inserts are removed by chemical dissolution.
    • 不具有结合线的短切纤维增强玻璃或玻璃 - 陶瓷基体整体结构。 该结构包括面板,背板和室壁的格栅阵列。 面板通过室壁连接到后板,形成一个格子阵列。 背板具有通向腔室的孔阵列。 通过将至少两个模具插入件设置在具有底部和侧面的模具壳体中来制造结构。 模具插件与模具的表面轮廓相接触并且呈阵列状。 模具插入件和模具插入件阵列不能横向移动。 加热的短切玻璃或玻璃陶瓷浸渍纤维在压力下移入模具中以形成复合材料。 将复合材料冷却,并通过化学溶解除去模具插入物。
    • 6. 发明授权
    • Method for producing integral chopped fiber reinforced glass or
glass-ceramic structures
    • 一体型短切纤维增强玻璃或玻璃 - 陶瓷结构的生产方法
    • US4857093A
    • 1989-08-15
    • US124324
    • 1987-11-23
    • Karl M. PrewoEric Minford
    • Karl M. PrewoEric Minford
    • C03B19/09C03C14/00
    • C03B19/09C03C14/002C03C2214/02C03C2214/20
    • A chopped fiber reinforced glass or glass-ceramic matrix integral structure having no bond lines. The structure comprises a face plate, a back plate, and a grid array of chamber walls. The face plate connects to the back plate through the chamber walls forming a grid array of chambers. The back plate has an array of apertures that lead to the chambers. The structure is fabricated by disposing at least two mold inserts in a mold housing having a bottom and sides. The mold inserts are in contact and in an array that follows the surface contours of the mold. The mold inserts and mold insert array is not capable of lateral movement. Heated chopped glass or glass ceramic impregnated fibers are displaced into the mold under pressure to form a composite. The composite is cooled and the mold inserts are removed by chemical dissolution.
    • 不具有结合线的短切纤维增强玻璃或玻璃 - 陶瓷基体一体结构。 该结构包括面板,背板和室壁的格栅阵列。 面板通过室壁连接到后板,形成一个格子阵列。 背板具有通向腔室的孔阵列。 通过将至少两个模具插入件设置在具有底部和侧面的模具壳体中来制造结构。 模具插件与模具的表面轮廓相接触并且呈阵列状。 模具插入件和模具插入件阵列不能横向移动。 加热的短切玻璃或玻璃陶瓷浸渍纤维在压力下移入模具中以形成复合材料。 将复合材料冷却,并通过化学溶解除去模具插入物。
    • 9. 发明申请
    • Feed gas contaminant control in ion transport membrane systems
    • 离子传输膜系统中的进料气体污染物控制
    • US20070079703A1
    • 2007-04-12
    • US11247504
    • 2005-10-11
    • Michael CarolanEric MinfordWilliam Waldron
    • Michael CarolanEric MinfordWilliam Waldron
    • B01D53/22
    • B01J19/2475C01B3/36C01B13/0251C01B13/0255C01B2203/025
    • Ion transport membrane oxidation system comprising an enclosure having an interior and an interior surface, inlet piping having an internal surface and adapted to introduce a heated feed gas into the interior of the enclosure, and outlet piping adapted to withdraw a product gas from the interior of the enclosure; one or more planar ion transport membrane modules disposed in the interior of the enclosure, each membrane module comprising mixed metal oxide material; and a preheater adapted to heat a feed gas to provide the heated feed gas to the inlet piping, wherein the preheater comprises an interior surface. Any of the interior surfaces of the enclosure, the inlet piping, and the preheater may be lined with a copper-containing metal lining. Alternatively, any of the interior surfaces of the inlet piping and the preheater may be lined with a copper-containing metal lining and the enclosure may comprise copper.
    • 离子传输膜氧化系统,其包括具有内部和内部表面的外壳,入口管道具有内表面并适于将加热的进料气体引入外壳的内部,以及出口管道,其适于将产物气体从内部和内部 外壳; 设置在外壳内部的一个或多个平面离子传递膜组件,每个膜组件包括混合金属氧化物材料; 以及预热器,其适于加热进料气体以将加热的进料气体提供给入口管道,其中预热器包括内表面。 外壳,入口管道和预热器的任何内表面可以衬有含铜金属衬里。 或者,入口管道和预热器的任何内表面可以衬有含铜金属衬里,并且外壳可以包括铜。