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    • 5. 发明申请
    • GAS FIRED RADIANT HEATER FOR FURNACE FLOOR
    • 燃烧地板燃烧辐射加热器
    • WO1991011397A1
    • 1991-08-08
    • PCT/US1991000456
    • 1991-01-23
    • GLASSTECH, INC.
    • GLASSTECH, INC.BALESTRA, Ben, M.
    • C03B27/04
    • C03B29/08F23C3/002F23D14/22F27B9/068
    • A radiant heater (12) is disclosed for heating a glass sheet heating furnace (10) and includes a base (40) having a horizontally extending heating passage (28) therein and a cover plate (42) mountable over said base (40). A horizontal flame burner (30) supplies a horizontal flame in heating passage (28) to heat radiant heater (12) and furnace (10) thereby. The burner (30) includes a combustion air and fuel inlet (54) located beneath the floor (22). A vertical intermediate portion (56) extends upwardly from the inlet (54) into the floor (22) and a horizontally extending outlet (58) extends from the vertical intermediate portion (56) into a heating passage (28) extending horizontally between upper and lower floor surfaces (24, 26). The combustion air and fuel are mixed and ignited within the horizontally extending outlet (58) to propagate a horizontally extending flame within heating passage (28) to heat furnace (10).
    • 公开了一种用于加热玻璃板加热炉(10)的辐射加热器(12),并且包括其中具有水平延伸的加热通道(28)的基座(40)和可安装在所述基座(40)上的盖板(42)。 水平火焰燃烧器(30)在加热通道(28)中提供水平火焰,从而加热辐射加热器(12)和炉(10)。 燃烧器(30)包括位于地板(22)下方的燃烧空气和燃料入口(54)。 垂直中间部分(56)从入口(54)向上延伸到地板(22)中,并且水平延伸的出口(58)从垂直中间部分(56)延伸到加热通道(28) 下部地板表面(24,26)。 燃烧空气和燃料在水平延伸的出口(58)内混合并点燃,以将加热通道(28)内的水平延伸的火焰传播到加热炉(10)。
    • 7. 发明申请
    • APPARATUS AND METHOD FOR POSITIONING GLASS SHEETS
    • 玻璃片定位装置及方法
    • WO1995007863A1
    • 1995-03-23
    • PCT/US1994010095
    • 1994-09-09
    • GLASSTECH, INC.MCMASTER, Ronald, A.
    • GLASSTECH, INC.
    • C03B23/035
    • C03B23/0357C03B23/03C03B23/24C03B35/16C03B2225/02
    • Apparatus (10) for positioning a heated glass sheet (G) includes a longitudinally extending air flotation conveyor (12) for receiving and floating the heated glass sheet, a glass sheet vacuum mold (14) movably mounted above the air flotation conveyor for receiving the heated glass sheet, a glass sheet positioner (16) mounted relative to the mold for peripherally engaging and laterally and longitudinally positioning the glass sheet with respect to the mold and an array of lift jets (18) interspersed amongst the air flotation conveyor and located beneath the mold for lifting the glass sheet onto the vacuum mold through the application of lifting air on the bottom surface of the glass sheet.
    • 用于定位加热的玻璃板(G)的装置(10)包括用于接收和浮动加热的玻璃板的纵向延伸的气浮输送机(12),可移动地安装在空气浮选输送机上方的玻璃板真空模具(14) 加热的玻璃板,相对于模具安装的玻璃板定位器(16),用于相对于模具周向地接合和横向和纵向地定位玻璃板,以及散布在空气浮选输送机之间并位于下方的升降机(18)的阵列 用于通过在玻璃板的底表面上施加提升空气将玻璃板提升到真空模具上的模具。
    • 9. 发明申请
    • METHOD AND APPARATUS FOR WASTE VITRIFICATION
    • 废弃物维修的方法和装置
    • WO1991016715A1
    • 1991-10-31
    • PCT/US1991002637
    • 1991-04-17
    • GLASSTECH, INC.RICHARDS, Ray, S.
    • GLASSTECH, INC.
    • G21F09/16
    • G21F9/305C03B5/005C03B5/027C03B5/033C03B5/1875C03B5/26C03B5/265Y02P40/52Y02P40/57
    • A waste vitrification apparatus (10) having rotatable mixer impeller (16) functioning as a shaft electrode (60) and metallic vessel (14) functioning as a vessel electrode (62). A stream (12) of waste material and vitrifiable material are mixed and melted in the vessel (14) for vitrification. The waste vitrification method converts a feed stream (12) by mixing the feed stream into a glass melt (13) and melting glass batch of the feed stream (12) to form a foamy mass. The stream is dispersed by the impeller (16) to form a foam which is then densified in a settling zone (22), recovered through a spout (24) and solidified in storage containers. Means are provided to adjust the location of the mixing impeller (16) in the vessel (14) to change the depth of the settling zone (22). The impeller (16) is mounted on a drive shaft (18) having a recirculating coolant flow.
    • 一种具有用作轴电极(60)的旋转混合器叶轮(16)和用作容器电极(62)的金属容器(14)的废玻璃化装置(10)。 将废物和玻璃化物质的料流(12)混合并熔化在容器(14)中用于玻璃化。 废玻璃化方法通过将进料流混合到玻璃熔体(13)中并将进料流(12)的熔融玻璃批料混合以形成泡沫体来转化进料流(12)。 流由叶轮(16)分散以形成泡沫,然后在沉降区(22)中致密化,通过喷口(24)回收并固化在储存容器中。 提供了用于调节容器(14)中的混合叶轮(16)的位置以改变沉降区(22)的深度的装置。 叶轮(16)安装在具有循环冷却剂流的驱动轴(18)上。