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    • 1. 发明授权
    • Backflushable rotary melt polymer filter apparatus
    • 可逆旋转熔融聚合物过滤器
    • US5200077A
    • 1993-04-06
    • US681736
    • 1991-04-08
    • Raymond R. McNeiceRoyal R. Swanson
    • Raymond R. McNeiceRoyal R. Swanson
    • B01D29/15
    • B01D29/15
    • A continuous, self-cleaning, rotary filtering apparatus is provided having a plurality of filter elements within a rotatable filter housing adapted for rotation between an inlet plate having an inlet manifold and an outlet plate having an outlet manifold so that the liquid to be filtered is passed from the inlet manifold through the filter elements and into the outlet manifold. The apparatus is further provided with a backflushing capability whereby the filter housing can be rotated to position where one filter element in alignment with a backflush port independent of the inlet manifold so that a part of the liquid within the outlet manifold will be caused to flow backward through that filter element and backflush port to purge contaminants from the apparatus via the backflush port without interrupting liquid flow through the other filter elements. After backflushing, the filter housing is further rotated to return the backflushed filter element to service.
    • 提供连续的自清洁旋转过滤装置,其具有可旋转的过滤器壳体内的多个过滤元件,其适于在具有入口歧管的入口板和具有出口歧管的出口板之间旋转,使得要被过滤的液体为 从入口歧管通过过滤元件并进入出口歧管。 该装置还具有反冲洗能力,由此过滤器壳体可以旋转以定位其中一个过滤元件与反冲洗口对准,独立于入口歧管,使得出口歧管内的液体的一部分将被引回 通过该过滤元件和反冲洗口,以通过反冲洗口从装置中清除污染物,而不会中断通过其它过滤元件的液体流。 在反吹后,过滤器壳体进一步旋转以使反冲洗的过滤元件返回到使用状态。
    • 6. 发明授权
    • Process of making fine and ultra fine metallic fibers
    • 制作精细超细金属纤维的工艺
    • US6112395A
    • 2000-09-05
    • US190723
    • 1998-11-12
    • Nathaniel R. QuickMichael LibermanAlexander SobolevskyRaymond R. McNeice
    • Nathaniel R. QuickMichael LibermanAlexander SobolevskyRaymond R. McNeice
    • B21C37/04B22F1/00B23P17/00
    • B21C37/047B22F1/004B22F2998/00B22F2998/10Y10S29/011Y10S977/762Y10S977/84Y10S977/89Y10T29/49801Y10T29/4981Y10T29/49812
    • A process is disclosed for making fine metallic fibers comprising forming a continuous tube about a plurality of coated metallic wires for providing a first cladding. The first cladding is drawn for reducing the outer diameter and for diffusion welding the coating within the cladding. The tube is mechanically removed to provide a first remainder. The first remainder is drawn for reducing the diameter thereof to transform the plurality of metallic wires into a plurality of fine metallic fibers. In one example, the diffusion welded coating is removed for providing the plurality of fine metallic fibers. In another example, a plurality of the first remainders are assembled and a continuous tube is formed about a the first remainders for providing a second cladding. The second cladding is drawn for reducing the outer diameter. The tube is mechanically removed to provide a second remainder. The second remainder is drawn for reducing the diameter thereof to transform the plurality of fine metallic fibers into a plurality of ultra fine metallic fibers. The diffusion welded coating is removed for providing the plurality of ultra fine metallic fibers.
    • 公开了一种用于制造精细金属纤维的方法,包括围绕多个涂覆的金属线形成连续管以提供第一包层。 为了减小外径而将第一包层拉伸,并且在包层内扩散焊接涂层。 机械地去除管以提供第一余量。 绘制第一余数用于减小其直径以将多根金属线转换成多根细金属纤维。 在一个示例中,去除扩散焊接涂层以提供多个细金属纤维。 在另一示例中,多个第一余料被组装,并且围绕第一余料形成连续的管以提供第二包层。 拉伸第二包层以减小外径。 机械地移除管以提供第二余数。 绘制第二余数用于减小其直径以将多个细金属纤维转变成多个超细金属纤维。 去除扩散焊接涂层以提供多根超细金属纤维。