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    • 2. 发明授权
    • Measuring system for the control of residual dust in safety vacuum cleaners
    • 用于控制安全吸尘器中残留灰尘的测量系统
    • US06779380B1
    • 2004-08-24
    • US09869614
    • 2001-08-07
    • Wolfgang Nieuwkamp
    • Wolfgang Nieuwkamp
    • G01N3064
    • A47L9/2894A47L9/19A47L9/2831A47L9/2857A47L9/2889G01N1/2205G01N15/0656G01N27/60G01N2001/2223
    • A safety vacuum cleaner including a measuring system for residual dust monitoring, including a housing having an air passage with an inlet, an outlet, and a flow cross section. A turbine is disposed within the air passage and is rotatable to move an air stream through the air passage, the air stream containing dust particles. The turbine is electrically grounded such that electrical charges associated with the particles are removed upon contact of the particles with the turbine. A filter element is disposed within the air passage, and at least one electrode is disposed within the air passage downstream of the turbine, the electrode shaped as a grid covering the flow cross section of the air passage. The electrode conducts an electrical current responsive to contact with uncharged particles and emits a measurement signal indicative of the amount of the particles in the air stream.
    • 一种安全吸尘器,包括用于残留灰尘监测的测量系统,包括具有入口,出口和流动横截面的空气通道的壳体。 涡轮机设置在空气通道内并且可旋转以使空气流通过空气通道,空气流含有灰尘颗粒。 涡轮机电接地,使得与颗粒与涡轮接触时,与颗粒相关联的电荷被去除。 过滤元件设置在空气通道内,并且至少一个电极设置在涡轮机下游的空气通道内,该电极形成为覆盖空气通道的流动横截面的格栅。 电极响应于与不带电粒子的接触而传导电流,并发出指示空气流中颗粒量的测量信号。
    • 3. 发明授权
    • Hollow cone nozzle for atomization of liquids
    • 用于雾化液体的中空锥形喷嘴
    • US4125226A
    • 1978-11-14
    • US725771
    • 1976-09-23
    • Wolfgang Nieuwkamp
    • Wolfgang Nieuwkamp
    • B05B1/34
    • B05B1/3436B05B1/3426
    • A hollow cone nozzle for atomizing liquids, which is provided with a housing having a tangential inlet and a mouthpiece containing the nozzle discharge which is to be detachably fastened in the housing; a ring-shaped swirl insert with an opening disposed coaxial to the nozzle discharge and with several inlet channels directed transversely to the axis of the opening is thereby arranged in the nozzle housing between the inlet and the mouthpiece whereby the inlet channels of the swirl insert have cross sections that decrease in the flow direction.
    • 一种用于雾化液体的中空锥形喷嘴,其具有壳体,该壳体具有切向入口和容纳可拆卸地紧固在壳体中的喷嘴排出口的接口管; 因此,具有与喷嘴排出口同轴设置的开口和横向于开口轴线的多个入口通道的环形涡旋插入件设置在入口和接口之间的喷嘴壳体中,由此涡流插入件的入口通道具有 在流动方向上减小的截面。
    • 4. 发明授权
    • High-pressure cleaning apparatus
    • 高压清洁装置
    • US5174730A
    • 1992-12-29
    • US613525
    • 1990-11-08
    • Wolfgang NieuwkampHorst Bauer
    • Wolfgang NieuwkampHorst Bauer
    • B05B9/00B05B9/04B08B3/00B08B3/02
    • B08B3/00B05B9/002B05B9/0423B08B3/026B08B2203/007B08B2203/0205B08B2203/0223B08B2203/0235B08B2203/027
    • In a high-pressure cleaning apparatus with a high-pressure pump for a cleaning liquid connected on the suction side to a preliminary tank with a feed pipe for cleaning liquid and having in the pressure pipe a bypass pipe branching off from this pressure pipe and leading to the preliminary tank, and with an electromotor driving the high-pressure pump and having a coolant pipe through which cleaning liquid flows, in order to also ensure effective cooling of the electromotor in the recirculation mode without loss of coolant, it is proposed that the feed pipe to the preliminary tank have a greater conveying capacity than the coolant pipe and that the coolant pipe lead into the preliminary tank in which there is a means for limiting the filling level.
    • PCT No.PCT / EP89 / 00564 Sec。 371日期1990年11月8日第 102(e)日期1990年11月8日PCT提交1989年5月23日PCT公布。 公开号WO89 / 11345 日本特开1989年11月30日。在具有用于清洗液的高压泵的高压清洗装置中,所述高压泵在吸入侧连接到具有用于清洗液体的进料管的初级罐,并且在压力管中具有旁通管分支 离开该压力管并通向初级罐,并且通过电动机驱动高压泵并具有清洁液体流过的冷却剂管道,以便确保电动机在再循环模式下的有效冷却而不损失 冷却剂,建议到预备罐的进料管具有比冷却剂管更大的输送能力,并且冷却剂管道进入其中存在用于限制填充水平的装置的初级罐。
    • 5. 发明授权
    • Binary atomizing nozzle
    • 二进制雾化喷嘴
    • US4558822A
    • 1985-12-17
    • US524345
    • 1983-08-18
    • Wolfgang NieuwkampSepp Mezger
    • Wolfgang NieuwkampSepp Mezger
    • B05B7/04B05B7/06B05B7/08B05B7/10
    • B05B7/066Y10S239/07
    • A binary atomizing nozzle includes a housing having a liquid insert and a gas insert. The liquid insert has an interior chamber and a liquid inlet and a liquid discharge communicate with the chamber. A spin insert is positioned in the chamber so that liquid flowing from the chamber is given a rotational spin and exits the liquid discharge as a hollow cone. The spin insert is threadedly engaged with the wall of the chamber so that the liquid discharge constantly wets the wall portion of the flaring discharge. The liquid insert has an outer portion spaced from the gas insert and provides an axially extending annular chamber having a gas discharge. The liquid discharge is axially spaced a preselected distance from the gas discharge so that gas exiting the gas discharge flows along the outer portion of the liquid insert according to the Coanda effect and thereby atomizes the liquid exiting the liquid discharge.
    • 二元雾化喷嘴包括具有液体插入件和气体插入件的壳体。 液体插入物具有内部室和液体入口,液体排出物与室连通。 旋转插入件定位在腔室中,使得从腔室流出的液体被给予旋转旋转并作为空心锥体离开液体排出口。 旋转插入件与腔室的壁螺纹接合,使得液体排出物不断地润湿扩口排出口的壁部分。 液体插入件具有与气体插入件间隔开的外部部分,并提供具有气体放电的轴向延伸的环形室。 液体排放物与气体排放物轴向间隔预定距离,使得排出气体排出口的气体根据柯恩达效应沿着液体插入物的外部流动,从而雾化离开液体排放物的液体。
    • 7. 发明授权
    • Dual-material atomizing nozzle
    • 双材料雾化喷嘴
    • US4483482A
    • 1984-11-20
    • US344941
    • 1982-02-02
    • Martin JungerWolfgang Nieuwkamp
    • Martin JungerWolfgang Nieuwkamp
    • B01F5/04B05B1/26B05B7/04F23J15/00F23J15/06B05B17/06
    • B05B7/0483B01F5/0473B05B1/265F23J15/003F23J15/06
    • A dual-material atomizing nozzle comprises a housing (10) with a gas intake (13), a liquid intake (14) and with a mixing chamber (11) for the gaseous and liquid components; a rod-like insert (16) flaring into a saucer-shape opposite the nozzle exit extends through the mixing chamber (11) along its longitudinal axis (15); the end of the housing (10) which is at the nozzle exit side is thus covered while forming an approximately radial, annular-gap shaped nozzle exit slot (23).At least one convergent/divergent tube-path (28, 29; 25, 24) based on the Laval principle is provided within the mixing chamber (11) no farther than the nozzle exit (12). Thereby, and especially when a second convergent/divergent tube path (25, 24) is present behind the liquid intake (14), first the gas and also the mixture of gas and liquid will be accelerated within the nozzle housing (10) to supersonic speed. In this manner a dual-material atomizing nozzle is created with an adequately large angle of jet and providing fine droplets, being insensitive to soiling and requiring only a slight ratio of gas to liquid, being resistant to wear and clogging.
    • 双材料雾化喷嘴包括具有气体入口(13)的壳体(10),液体进口(14)和用于气体和液体组分的混合室(11) 与喷嘴出口相对的碟状插入件(16)沿其纵向轴线(15)延伸穿过混合室(11); 因此,在形成大致径向的环形间隙形状的喷嘴出口槽(23)的同时,在喷嘴出口侧的壳体(10)的端部被覆盖。 至少一个基于拉瓦尔原理的收敛/扩散管路径(28,29; 25,24)设置在混合室(11)内,不比喷嘴出口(12)更远。 因此,特别是当在液体进口(14)后面存在第二收敛/扩散管路径(25,24)时,首先将气体以及气体和液体的混合物在喷嘴壳体(10)内加速至超音速 速度。 以这种方式,产生双材料雾化喷嘴,其具有足够大的喷射角度并且提供细小的液滴,对污染不敏感,并且仅需要气体与液体的轻微比例,耐磨损和堵塞。