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    • 13. 发明申请
    • VEHICLE WASHING APPARATUS
    • 车辆洗衣机
    • US20160375878A1
    • 2016-12-29
    • US14748620
    • 2015-06-24
    • JAMES STECKLER
    • JAMES STECKLER
    • B60S3/04B05B7/04B05B1/08B08B3/02
    • B60S3/04B01F3/0865B01F3/088B01F5/0428B01F5/0498B05B1/08B05B1/323B05B7/0408
    • A vehicle washing apparatus can include a fluid mixing circuit, a distribution conduit, and a first plurality of spray nozzles. The fluid mixing circuit can have a first inlet, a second inlet, and an outlet in fluid communication with both of the first inlet and the second inlet. The distribution conduit can extend in a u-shape with first and second vertical sections and a horizontal section extending transverse to and between the first and second vertical sections. The distribution conduit can have an interior passageway defining a flow path washing and detergent liquid and a third inlet in fluid communication with the outlet. The first plurality of spray nozzles can each be mounted on the distribution conduit and be in fluid communication with the interior passageway. Each of the first plurality of spray nozzles can be a fluidic oscillator.
    • 车辆洗涤装置可以包括流体混合回路,分配管道和第一多个喷嘴。 流体混合回路可以具有与第一入口和第二入口两者流体连通的第一入口,第二入口和出口。 分配导管可以以第一和第二垂直部分的U形延伸,以及横向于第一和第二垂直部分之间并且在第一和第二垂直部分之间延伸的水平部分。 分配导管可以具有限定流路清洗和洗涤剂液体的内部通道和与出口流体连通的第三入口。 第一组多个喷嘴可分别安装在分配导管上并与内部通道流体连通。 第一多个喷嘴中的每一个可以是流体振荡器。
    • 19. 发明授权
    • Foaming of liquids
    • 发泡液体
    • US09399200B2
    • 2016-07-26
    • US14516040
    • 2014-10-16
    • TURBULENT ENERGY, LLC
    • David LivshitsLester Teichner
    • B01F3/04C02F1/24B01F5/06B01F3/08B01F15/00B08B3/10B03D1/14B03D1/24B03D1/02
    • B01F5/0603B01F3/04992B01F3/0865B01F3/088B01F15/00207B01F2215/0052B03D1/028B03D1/1412B03D1/1462B03D1/1493B03D1/24B03D1/242B08B3/102C02F1/24
    • A foaming mechanism configured to receive a plurality of streams of gas and generate a foamed liquid, having an aerodynamic component and an aerodynamic housing disposed around at least a portion of the aerodynamic component. The aerodynamic housing includes a plurality of first channels and a plurality of second channels connected to the plurality of first channels at regular intervals on a distributed plane. The distributed plane is about perpendicular to the plurality of first channels, wherein the plurality of first channels and the plurality of second channels are configured to transform an axial stream of the gaseous working agent into a plurality of radial high-speed streams of the gaseous working agent by channeling the gaseous working agent through the plurality of first channels and into the plurality of second channels on the distributed plane. A hydrodynamic conical reflector and a hydrodynamic housing form a ring channel in an area between the hydrodynamic conical reflector and the hydrodynamic housing. An accumulation mechanism is configured to disperse the plurality of radial highspeed streams of the gaseous working agent into the ring channel and create turbulence to foam the liquid.
    • 一种发泡机构,其构造成接收多个气流并产生泡沫液体,其具有空气动力学部件和围绕所述空气动力学部件的至少一部分设置的空气动力学壳体。 空气动力学壳体包括多个第一通道和在分布式平面上以规则间隔连接到多个第一通道的多个第二通道。 所述分布式平面垂直于所述多个第一通道,其中所述多个第一通道和所述多个第二通道被配置成将所述气态工作剂的轴向流转换成气态工作的多个径向高速流 通过将气态工作剂引导通过多个第一通道并进入分布平面上的多个第二通道中。 流体动力锥形反射器和流体动力壳体在流体动力学锥形反射器和流体动力壳体之间的区域中形成环形通道。 累积机构构造成将气态工作剂的多个径向高速流分散到环形通道中并产生湍流以使液体发泡。
    • 20. 发明授权
    • Swept membrane emulsification
    • 扫过膜乳化
    • US09393532B2
    • 2016-07-19
    • US14761327
    • 2014-01-27
    • Rohm and Haas CompanyDow Global Technologies LLC
    • Santhosh K. RamalingamAaron Sarafinas
    • B01F5/06B01F5/04B01F7/00B01F3/08B29B9/10
    • B01F5/0665B01F3/0807B01F3/0865B01F5/0465B01F5/0468B01F7/00908B29B9/10
    • A method for making an emulsion using a rotating membrane device (10) including: i) a membrane assembly (12) including a cylindrical porous surface (14) enclosing an inner chamber (16) concentrically positioned about an axis (X), ii) a vane assembly (18) including a plurality of vanes (20) extending along the axial length (L) of the porous surface (14) of the membrane assembly (12), wherein the vanes (24) comprise a shear surface (24) located within 1 mm of the porous surface (14), and iii) a vessel (22) enclosing the membrane and vane assemblies (12, 18); wherein the method includes the step of moving a dispersible liquid phase (26) through the porous surface (14) into a continuous liquid phase (28) while rotating at least one of the vane assembly (18) or membrane assembly (12) relative to the other about the axis (X) such that the shear surfaces (24) exert shear forces upon the dispersible liquid phase (26) passing through the porous surface (14) to form droplets (30) of a dispersed liquid phase having a size of 1 to 500 μm within the continuous liquid phase (28).
    • 一种使用旋转膜装置(10)制造乳液的方法,包括:i)膜组件(12),其包括围绕轴线(X)同心定位的围绕内室(16)的圆柱形多孔表面(14),ii) 叶片组件(18),其包括沿膜组件(12)的多孔表面(14)的轴向长度(L)延伸的多个叶片(20),其中叶片(24)包括剪切表面(24) 位于多孔表面(14)的1mm内,以及iii)封闭膜和叶片组件(12,18)的容器(22); 其中所述方法包括将可分散液相(26)穿过所述多孔表面(14)移动到连续液相(28)中的步骤,同时相对于所述叶片组件(18)或膜组件(12)中的至少一个相对于 另一个围绕轴线(X),使得剪切表面(24)对通过多孔表面(14)的可分散液相(26)施加剪切力,以形成分散液相的液滴(30),其具有大小为 在连续液相(28)内为1〜500μm。