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    • 3. 发明授权
    • Use of amalgams in solenoidal electric field lamps
    • 在汞电场灯中使用汞合金
    • US4410829A
    • 1983-10-18
    • US400326
    • 1982-07-21
    • John M. AndersonPeter D. Johnson
    • John M. AndersonPeter D. Johnson
    • H01J7/14H01J9/395H01J61/24H01J65/04H01J19/28B23K31/00
    • H01J65/048H01J61/24H01J7/14H01J9/395
    • A lead-tin-bismuth alloy is disposed within a solenoidal electric field lamp to control the mercury vapor pressure. In accordance with one embodiment of the present invention, the alloy is placed within the tip-off region of the lamp envelope. The alloy is fixed within the tip-off region by a means of wetting the alloy to a metal wire structure such as a helix or a cylindrical screen. Alternatively, the alloy may be placed on an interior surface of the envelope by first wetting the glass with a layer of indium. Additionally, methods for wetting the lead-tin-bismuth alloy to the metal wire include firing the alloy in contact with the wire in a hydrogen atmosphere at a sufficiently high temperature to wet the alloy to the wire. The present invention permits the control of mercury vapor pressure in solenoidal electric field discharge lamps.
    • 铅 - 锡 - 铋合金设置在螺线管电场灯内以控制汞蒸汽压力。 根据本发明的一个实施例,合金被放置在灯壳的倾斜区域内。 通过将合金润湿到诸如螺旋或圆柱形筛网的金属丝结构,将合金固定在脱落区域内。 或者,可以通过首先用铟层润湿玻璃,将合金放置在外壳的内表面上。 此外,将铅锡 - 铋合金润湿到金属线的方法包括在足够高的温度下在氢气氛中烧结与线接触的合金,以将合金润湿至线。 本发明允许控制螺线管电场放电灯中的汞蒸汽压力。
    • 4. 发明授权
    • Use of amalgams in solenoidal electric field lamps
    • 在汞电场灯中使用汞合金
    • US4528209A
    • 1985-07-09
    • US647325
    • 1984-09-04
    • John M. AndersonPeter D. Johnson
    • John M. AndersonPeter D. Johnson
    • H01J7/14H01J9/395H01J65/00H01J61/28
    • H01J65/00H01J7/14H01J9/395
    • A lead-tin-bismuth alloy is disposed within a solenoidal electric field lamp to control the mercury vapor pressure. In accordance with one embodiment of the present invention, the alloy is placed within the tip-off region of the lamp envelope. The alloy is fixed within the tip-off region by a means of wetting the alloy to a metal wire structure such as a helix or a cylindrical screen. Alternatively, the alloy may be placed on an interior surface of the envelope by first wetting the glass with a layer of indium or other metallic wetting agent. Additionally, methods for wetting the lead-tin-bismuth alloy to the metal wire include firing the alloy in contact with the wire in a hydrogen atmosphere at a sufficiently high temperature to wet the alloy to the wire. The present invention permits the control of mercury vapor pressure in solenoidal electric field discharge lamps.
    • 铅 - 锡 - 铋合金设置在螺线管电场灯内以控制汞蒸汽压力。 根据本发明的一个实施例,合金被放置在灯壳的倾斜区域内。 通过将合金润湿到诸如螺旋或圆柱形筛网的金属丝结构,将合金固定在脱落区域内。 或者,可以通过首先用铟或其它金属润湿剂润湿玻璃来将合金放置在外壳的内表面上。 此外,将铅锡 - 铋合金润湿到金属线的方法包括在足够高的温度下在氢气氛中烧结与线接触的合金,以将合金润湿至线。 本发明允许控制螺线管电场放电灯中的汞蒸汽压力。
    • 6. 发明授权
    • Helical wire coil in solenoidal lamp tip-off region wetted by alloy
forming an amalgam with mercury
    • 螺旋灯灯泡区域中的螺旋线圈由合金形成汞合金制成
    • US4262231A
    • 1981-04-14
    • US954411
    • 1978-10-25
    • John M. AndersonPeter D. Johnson
    • John M. AndersonPeter D. Johnson
    • H01J7/14H01J9/395H01J65/04H01J63/02H01J17/26
    • H01J9/395H01J65/048H01J7/14
    • A lead-tin-bismuth alloy is disposed within a solenoidal electric field lamp to control the mercury vapor pressure. In accordance with one embodiment of the present invention, the alloy is placed within the tip-off region of the lamp envelope. The alloy is fixed within the tip-off region by a means of wetting the alloy to a metal wire structure such as a helix or a cylindrical screen. Alternatively, the alloy may be placed on an interior surface of the envelope by first wetting the glass with a layer of indium. Additionally, methods for wetting the lead-tin-bismuth alloy to the metal wire include firing the alloy in contact with the wire in a hydrogen atmosphere at a sufficiently high temperature to wet the alloy to the wire. The present invention permits the control of mercury vapor pressure in solenoidal electric field discharge lamps.
    • 铅 - 锡 - 铋合金设置在螺线管电场灯内以控制汞蒸汽压力。 根据本发明的一个实施例,合金被放置在灯壳的倾斜区域内。 通过将合金润湿到诸如螺旋或圆柱形筛网的金属丝结构,将合金固定在脱落区域内。 或者,可以通过首先用铟层润湿玻璃,将合金放置在外壳的内表面上。 此外,将铅锡 - 铋合金润湿到金属线的方法包括在足够高的温度下在氢气氛中烧结与线接触的合金,以将合金润湿至线。 本发明允许控制螺线管电场放电灯中的汞蒸汽压力。
    • 8. 发明授权
    • Automatic food slicing machine
    • 自动食品切片机
    • US5271304A
    • 1993-12-21
    • US876123
    • 1992-04-29
    • Gary L. WygalPeter D. Johnson
    • Gary L. WygalPeter D. Johnson
    • B26D1/143B26D3/22B26D5/22B26D7/01B26D7/02B26D7/06B26D9/00
    • B26D3/22B26D5/22B26D7/01B26D7/02B26D7/0625B26D9/00B26D1/143B26D2210/02B26D7/0683Y10S83/932Y10T83/6491Y10T83/6579Y10T83/6588Y10T83/6633Y10T83/6668
    • A conveying system for an automatic food slicing machine is disclosed. The conveying system has a floating upper conveyor positioned above a lower conveyor. The conveyors cooperatively feed the food item to be sliced an incremental length into the slicing knives during the feed cycle and retain the remainder of the food item during the cut-off cycle. An indexing mechanism, adjustable to provide different feed length increments and timed to the rotational cycle of the cut-off knife, drives the conveyors. The indexing mechanism only drives the conveyors during the feed cycle and the conveyors remain static during the cut-off cycle. The food item to be sliced is captively held between the upper and lower conveyors during both the feed cycle and the cut-off cycle. Small diameter rollers at the exit end of the conveyors are utilized and are positioned in close proximity to the travel path of the cut-off knife providing retentive capability throughout the feed length range.
    • 公开了一种自动食品切片机的输送系统。 输送系统具有位于下输送机上方的浮动上输送机。 在进料循环期间,输送机协同地将食品加入到切片刀中,并在切断循环期间保留食物的其余部分。 可调整以提供不同进给长度增量并且与切断刀的旋转周期定时的分度机构驱动输送机。 分度机构仅在进给循环期间驱动输送机,并且输送机在切断循环期间保持静止。 在进料循环和切断循环期间,要切片的食品都被夹持在上下传送带之间。 使用输送机出口端的小直径辊,并且定位成紧邻切割刀的行进路径,在整个进给长度范围内提供保持性能。