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    • 63. 发明申请
    • Submerged water inlet strainer for a water hose
    • 用于水管的浸入式进水过滤器
    • US20040164031A1
    • 2004-08-26
    • US10762184
    • 2004-01-21
    • Larry F. Reber
    • B01D029/00
    • A62C33/00B01D35/02E03B3/04
    • An apparatus, a system and a method for obtaining sieved water, for fighting fires, from a source of water having foreign objects are disclosed. A strainer is connected to a tank via a hose such that water may be pumped from the strainer to the tank. The strainer includes a water inlet having a sieve-like material over it and a water outlet connector where the hose connects. The strainer is submerged in a source of water such as a pond or stream. As water enters the strainer via the water inlet, the sieve-like material prevents foreign objects such as rocks and leaves from entering the strainer. Therefore, the foreign objects never reach the tank. A pan may be connected to the bottom of the strainer to elevate the strainer above the bottom of the source of water. Such elevating helps achieve desired flow rates without stirring or roiling foreign objects such as sand or gravel that may be at the bottom of the source of water.
    • 公开了一种从具有异物的水源获得用于扑灭火灾的过筛水的装置,系统和方法。 过滤器通过软管连接到罐,使得水可以从过滤器泵送到罐中。 过滤器包括在其上具有筛子材料的进水口和软管连接的出水连接器。 过滤器浸没在诸如池塘或水流的水源中。 当水通过进水口进入过滤器时,筛状材料可防止异物如岩石和叶子进入过滤器。 因此,异物从不到达坦克。 过滤器的底部可以连接锅,以将过滤器提升到水源底部。 这种升高有助于实现期望的流速,而不会搅拌或滚动可能位于水源底部的诸如沙子或砾石的异物。
    • 66. 发明申请
    • Filtrating filter
    • 过滤过滤器
    • US20030234216A1
    • 2003-12-25
    • US10265671
    • 2002-10-08
    • Morimura Kosan Kabushiki Kaisha
    • Tadaki Morimura
    • B01D024/00B01D029/00
    • B01D39/04
    • Large diameter nodes integrally formed on a linear fiber at an appropriate interval to form a fiber body, so that multiple fiber bodies are attached to a support member in a state where slits are formed between adjoining fibers due to the large diameter nodes by arranging multiple fiber bodies in parallel with one another or laminating the multiple fiber bodies with one another. It is preferable that a thickness of the fiber of the fiber body is set to range from 0.003 to 0.05 mm, and an outer diameter of each large diameter node is set to be 1.03 to 1.50 times as large as the thickness of the fiber, and an interval of the large diameter nodes is set to be 5 to 100 times as large as the thickness of the fiber. With such a construction, it is possible to obtain the filtrating filter which is simple in construction and manufactured with ease, particularly capable of easily forming slits to have an arbitrary size through which liquid or gas to be suitably filtrated.
    • 大直径节点以适当的间隔一体地形成在线性光纤上以形成纤维体,使得由于大直径节点而在相邻纤维之间形成狭缝的状态下,多个纤维体连接到支撑构件,通过布置多根纤维 主体彼此平行或彼此层叠多个纤维体。 优选将纤维体的纤维的厚度设定为0.003〜0.05mm的范围,将各大直径节点的外径设定为纤维的厚度的1.03〜1.50倍, 大直径节点的间隔设定为纤维厚度的5〜100倍。 通过这样的结构,可以获得结构简单,制造容易的滤液过滤器,特别是能够容易地形成狭缝以具有适当过滤液体或气体的任意尺寸。
    • 69. 发明申请
    • Fluid filter
    • 流体过滤器
    • US20030141240A1
    • 2003-07-31
    • US10349862
    • 2003-01-23
    • Inoac Corporation
    • Teruo ShiraishiFuminori Horio
    • B01D029/00
    • B01D46/10B01D35/30B01D2201/06B01D2201/188B01D2275/203B01D2275/305B01D2275/403Y10S55/42
    • A fluid filter is provided with a case body defining therein a holder and having pressing portions formed on the internal wall surface of the case body. The pressing portions can compress a filter medium housed in the holder. The pressing portions are pressed against the filter medium housed in the holder to compress it and form a compressed region at a desired position of the filter medium, where the rate of capturing extraneous substances is increased. Thus, even if various sizes of the extraneous substances are contained in a fluid introduced through the inlet into the holder, the filter medium can capture the extraneous substances in its entirety. The degree of compression of the compressed region in the filter medium changes depending on the height of each pressing portion.
    • 流体过滤器设置有壳体,其中限定有保持器,并且具有形成在壳体的内壁表面上的按压部。 按压部分可以压缩容纳在保持器中的过滤介质。 按压部分被压靠在容纳在保持器中的过滤介质上,以将其压缩并在过滤介质的期望位置处形成压缩区域,其中捕获外来物质的速率增加。 因此,即使在通过入口进入保持器的流体中含有各种尺寸的外来物质,过滤介质也可以全部捕获外来物质。 过滤介质中的压缩区域的压缩程度根据每个按压部分的高度而变化。