Hydrodynamic nozzle for cleaning pipes and channels
    1.
    发明授权
    Hydrodynamic nozzle for cleaning pipes and channels 失效
    用于清洗管道和通道的流体动力喷嘴

    公开(公告)号:US5992432A

    公开(公告)日:1999-11-30

    申请号:US917579

    申请日:1997-06-30

    IPC分类号: B08B9/04 B08B9/053 B08B3/00

    CPC分类号: B08B9/0495 B05B1/14 B05B1/265

    摘要: A hydrodynamic nozzle for the cleaning of pipes and channels exhibits a distribution chamber (7), joining to the pressurized water-entrance opening (4), wherein the pressurized water-discharge opening (5a, 5b) join into the distribution chamber (7) through channels (6a and 6b). The distribution chamber (7) exhibits a cone-shaped water subdivider (8), to which a defined radius (r1) follows, wherein the curvature of the radius (r1) is opposite to that of the pressurized water-entrance opening (4). The channels (6a and 6b) are merging tangentially at this radius (r1). Furthermore, the nozzle body (1) can be subdivided into an upper part (2) and a lower part (3), and can exhibit a separate form element (14), which forms the water subdivider (8) and the radius (r1), in the lower part (3). The degree of effectiveness is substantially increased with the nozzle according to the invention and thus the axial pressure of the exiting beam of liquid and the cleaning effect is substantially increased.

    摘要翻译: 用于清洗管道和通道的流体动力喷嘴具有分配室(7),其连接到加压入水口(4),其中加压排水口(5a,5b)连接到分配室(7)中, 通过通道(6a和6b)。 分配室(7)呈现出锥形水分割器(8),其中限定的半径(r1)跟随其中,其中半径(r1)的曲率与加压入水口(4)的曲率相反, 。 通道(6a和6b)在该半径(r1)处切向合流。 此外,喷嘴体(1)可以分为上部(2)和下部(3),并且可以呈现形成水分割器(8)和半径(r1)的单独的成形元件(14) ),在下部(3)。 随着根据本发明的喷嘴,效率的程度显着增加,因此离开的液体束的轴向压力和清洁效果显着增加。

    Hydrodynamic tool for cleaning pipes and channels
    2.
    发明授权
    Hydrodynamic tool for cleaning pipes and channels 失效
    用于清洁管道和通道的流体力学工具

    公开(公告)号:US6089243A

    公开(公告)日:2000-07-18

    申请号:US111697

    申请日:1998-07-08

    IPC分类号: B08B9/04 B08B9/053 B08B3/02

    CPC分类号: B08B9/0495 B08B2209/045

    摘要: A hydrodynamic tool for the cleaning of pipes and channels exhibits a pressurized water-entry inlet opening (2) connected to pressurized water-discharge outlet openings (4) through water guide channels (3). The water guide channels (3) are continuously connected to the pressurized water-entry inlet opening (2) with a hose connection (2a). The water guide channels (3) exhibit a largest possible deflection radius (r) and partially converge into one another. At least two water guide channels (3) rest with the innermost point of the diameter (d.sub.W1) at the center point (M) and with their outermost point of the diameter (d.sub.W1) at the outer diameter (d.sub.E) of the pressurized water-entry inlet opening (2). The water guide channels (3), corresponding to the arrangement of the pressurized water-discharge outlet openings (4), are either merging into the end of the deflection radius (r) or into the straight line region (3.G) and in an angle (.alpha.) to the respective pressurized water-discharge outlet openings (4).

    摘要翻译: 用于清洁管道和通道的流体动力学工具具有通过导水通道(3)连接到加压排水出口(4)的加压进水口(2)。 导水通道(3)通过软管连接(2a)连续地连接到加压进水口(2)。 导水通道(3)表现出最大可能的偏转半径(r)并且部分地相互收敛。 至少两个导水通道(3)在中心点(M)处以直径(dW1)的最内点为中心,其最外点的直径(dW1)在加压水 - 入口入口(2)。 对应于加压排水出口(4)的布置的导水通道(3)或者合并到偏转半径(r)的末端或者直接进入直线区域(3.G),并且在 与相应的加压排水出口(4)的角度(α)。

    Hydrodynamic apparatus for cleaning channels and for monitoring channels
    3.
    发明授权
    Hydrodynamic apparatus for cleaning channels and for monitoring channels 失效
    用于清洁通道和监测通道的流体动力装置

    公开(公告)号:US6138697A

    公开(公告)日:2000-10-31

    申请号:US810539

    申请日:1997-03-03

    摘要: A hydrodynamic apparatus for cleaning channels and for monitoring channels is provided for pipes and channels. A disadvantage of all conventional bottom floor cleaners, flushing heads, and channel-cleaning nozzles is that during the cleaning process no observation and determination of the soiling state or, respectively, of the cleaning state of the channel and no recognition of damaged areas in the channel is possible. According to the invention, a monitoring unit (6) is installed selectively in or at the channel-cleaning apparatus. For this purpose, for example, a hollow space (11) is furnished at the bottom floor cleaner (S), wherein the monitoring unit (6) is partly integrated into the hollow space (11). The monitoring unit (6) exhibits a camera module (7) or two camera modules (7a and 7b). A video emitter (15) is coordinated to each camera module (7). The transmission to a video receiver (V) is performed without cable wireless from the video emitter (15). The cleaning process can be followed in a monitor (M). As desired, also ballast material (12) can be filled into the hollow space (11).

    摘要翻译: 为管道和通道提供清洗通道和监测通道的流体动力装置。 所有常规底层清洁剂,冲洗头和通道清洁喷嘴的缺点在于,在清洁过程中,不会观察和确定污染状态或分离通道的清洁状态,并且不识别通道清洁喷嘴中的损坏区域 渠道是可能的 根据本发明,监视单元(6)选择性地安装在通道清洁装置中或通道清洁装置中。 为此,例如,在底板清洁器(S)处设置有中空空间(11),其中监测单元(6)部分地集成到中空空间(11)中。 监视单元(6)具有相机模块(7)或两个相机模块(7a和7b)。 视频发射器(15)与每个相机模块(7)协调。 执行到视频接收器(V)的传输,无需电缆无线从视频发射器(15)。 清洁过程可以在监视器(M)中进行。 根据需要,也可以将压载材料(12)填充到中空空间(11)中。