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    • 6. 发明授权
    • Pool cleaning tool
    • 游泳池清洁工具
    • US06951311B1
    • 2005-10-04
    • US10653137
    • 2003-09-03
    • James Moran
    • James Moran
    • B05B15/06E04H4/16
    • E04H4/1618
    • A pool cleaning tool for producing one water jet directed toward an area to be cleaned and a second water jet directed away from the area to be cleaned includes a substantially rigid water conduit having an upper end and a lower end. The lower end has an opening therein defining an outlet and an inlet extends into the water conduit and is positioned generally adjacent to the upper end. A coupler is fluidly coupled to the inlet for releasably coupling a water supply hose to the water conduit. A tubular member is fluidly coupled to the lower end of the water conduit. The tubular member has a first aperture and a second aperture therein. The first and second apertures are positioned on generally opposite sides of the tubular member. Each of the first and second apertures is angled downward.
    • 用于产生朝向待清洁区域的一个水射流的池清洁工具和远离待清洁区域的第二水射流包括具有上端和下端的基本刚性的水导管。 下端具有限定出口的开口,入口延伸到水导管中并且大致与上端相邻。 联接器流体地联接到入口以将供水软管可释放地联接到水管道。 管状构件流体地联接到水导管的下端。 管状构件在其中具有第一孔和第二孔。 第一和第二孔位于管状构件的大致相对的两侧。 第一和第二孔中的每一个都向下倾斜。
    • 7. 发明申请
    • System for cleaning underwater surfaces, improvements and variations
    • 清洁水下表面的系统,改进和变化
    • US20020073493A1
    • 2002-06-20
    • US09739912
    • 2000-12-19
    • Charles A. Walton
    • E04H004/16
    • E04H4/1618
    • A system for cleaning underwater surfaces, comprised of an assembly which includes a brush or abrasive component which presses and scrubs against the surface to be cleaned, and further comprising a fluid jet which drives water away from the surface, consequently producing force against the surface. The brush is a stationary brush, with a handle for guidance by an underwater diver or from an arm at the surface; or the brush may be rotary or oscillatory to aid the scrubbing action. The water jet may be incorporated into a tube which guides the water away from the surface. The tube produces a Venturi or Bernoulli effect which increases the water thrust and thus additional force against the surface.
    • 一种用于清洁水下表面的系统,包括一个组件,该组件包括刷子或研磨部件,该刷子或研磨部件按压和擦洗待清洁的表面,并且还包括驱动水从表面移开的流体射流,从而产生抵抗表面的力。 刷子是固定的刷子,具有用于由水下潜水员或从表面的臂引导的手柄; 或者刷子可以是旋转的或振荡的以帮助洗涤动作。 水射流可以结合到将水从表面引导的管中。 管产生文丘里或伯努利效应,这增加了水推力,从而增加了对表面的附加力。
    • 10. 发明申请
    • UNDERWATER CLEANER
    • 水下清洁剂
    • US20170073989A1
    • 2017-03-16
    • US15257344
    • 2016-09-06
    • Andrés Fränkel
    • Andrés Fränkel
    • E04H4/16
    • E04H4/1654B63B59/08B63B2059/082E04H4/1618E04H4/1636
    • The invention relates to an underwater cleaner (1), especially for a swimming pool, comprising a housing (2) in which an especially battery-powered pump having an electric motor (4) and an impeller (3) is arranged, wherein the housing (2) comprises an inlet opening (23) and an outlet opening (22) for a flow path, said flow path forming a first channel section (13) originating from the first inlet opening (23) and a second channel section (14) accommodating the impeller (3), wherein the second channel section (14) is arranged in an inclined manner in relation to the first channel section (13), and wherein the impeller axis (18) is arranged in an inclined manner in relation to a normal (24) to the opening cross-section of the inlet opening (23). The ratio A/B of a first cross-sectional surface A to a second cross-sectional surface B is less than 2.8, wherein the first cross-sectional surface A is defined by the smallest flow cross-section in the first channel section (13) and the second cross-sectional surface B by the smallest flow cross-section of the second channel section (14) directly at the pump inlet.In order to obtain the simplest possible underwater cleaner (1) with the lowest production costs, which offers high suction power with low flow losses even in the case of impellers (3) of relatively large diameters, the first channel section (13) converges continuously into the second channel section (14).
    • 为了获得尽可能最低的生产成本的最简单的水下清洁器(1),即使在具有较大直径的叶轮(3)的情况下,即使在低流量损失的情况下,第一通道部分(13)连续地会聚 进入第二通道部分(14)。