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    • 1. 发明专利
    • ROCIADOR DE BOMBA PARA LIQUIDOS VISCOSOS Y PARA LIQUIDOS CARGADOS DE SOLIDOS.
    • MX9708390A
    • 1998-02-28
    • MX9708390
    • 1996-05-03
    • PROCTER & GAMBLE
    • BUSH STEPHAN GARYEVANS STEPHEN FRANCISCOLLIAS DIMITRIS IOANNIS
    • B05B1/00B05B1/04B05B1/14B05B11/00B05B1/02B05B15/02B05B01/00B05B01/02B05B01/04
    • Se proporciona un sistema de suministro de rocío sostenible en la mano (10) para despertar un líquido relativamente viscoso y/o un liquido cargado de solidos, Este sistema de suministro de rocío (10) incluye un envase (30) adaptado para alojar al líquido. Un dispositivo de bomba (20) accionado manualmente está montado en el envase (30). El dispositivo de bomba (20) incluye un conducto de entrada (23), una cámara (28) de bomba y un conducto de descarga (27) que tiene un extremo distal conectado en comunicacion líquida, de modo que el líquido es bombeado desde dentro del envase (30), a través del conducto de entrada (23), hacia la cámara (28) de bomba y a través del conductos de descarga (27) con el accionamiento manual del dispositivo de bomba (20). También se incluye una boquilla de rocío ranurada (40) que incluye a un alojamiento (55) que tiene un lado de entrada (46) y un lado de salida (44), el alojamiento (55) tiene un rebaje interno (45) a través del lado de entrada (46) que termina en un orificio alargado (42) en el de salida (48); el rebaje interno (45) está conectado en comunicacion líquida don el extremo distal del conducto de descarga (27) de tal forma que el líquido que pasa a través del conducto de descarga (27) fluye a través del conducto de descarga (27) fluye através de la boquilla de rocío ranurada (40) y converge hacia el orificio alargado (42). El líquido se despacha desde el mismo en un rocío dispersado. La boquilla de rocío ranurada (40) puede fabricarse de un material rígido o de material elastomérico. Se genera un patron de rocío dispersado en forma de abanico cuando la boquilla (40) se fabrica utilizando un material rígido, sin embargo, cuando se utiliza un material elastomérico, la boquilla (40) es capaz de expulsar partículas más grandes que la dimension más pequeña del orificio alargado (42), reduciendo sustancialmente de esta manera la probabilidad de taponamiento. Se ilustran varias versiones del sistema de suministro de rocío (10), que incluyen a una rociador operado por gatillo y a una bomba (20) con dedo reciprocante.
    • 4. 发明申请
    • STRIPE APPLICATOR DEVICE
    • STRIPE应用器件
    • WO1997025151A1
    • 1997-07-17
    • PCT/US1997000021
    • 1997-01-03
    • KUNTZ MFG CO., INC.
    • KUNTZ MFG CO., INC.HOBERG, Ted, C.
    • B05B01/04
    • B01L3/0293G01N2035/00108Y10S242/908
    • A stripe applicator device (10) that facilitates the accurate and efficient striping of a membrane (26) with a reagent solution (R) while avoiding cross-contamination between adjacent reagent stripes (S), preferably has a pay-out assembly (20), an applicator assembly (24) having a plurality of nozzles (78) aligned along a line that forms an obtuse angle with the line of travel of a membrane material (26) from the pay-out assembly (20), a drying chamber (40) and a take-up assembly (30) having a pinch-roller assembly (36) driven by a motor (21) to draw the membrane material (26) from the pay-out assembly (20) through the applicator assembly (24) and drying chamber (40).
    • 一种有助于在避免相邻试剂条(S)之间的交叉污染的情况下,有利于试剂溶液(R)对膜(26)进行准确和有效的条纹化的条带施加器装置(10)优选地具有一个放出组件(20) 具有多个喷嘴(78)的涂抹器组件(24),所述多个喷嘴(78)沿着与所述放出组件(20)的膜材料(26)的行进线成钝角的直线对准,干燥室 40)和具有由马达(21)驱动的夹送辊组件(36)以从放出组件(20)通过涂抹器组件(24)拉出膜材料(26)的卷取组件(30) )和干燥室(40)。
    • 6. 发明申请
    • ADJUSTABLE SLIT NOZZLE
    • 可调节SLIT喷嘴
    • WO1994006566A1
    • 1994-03-31
    • PCT/US1992007991
    • 1992-09-21
    • EKHOFF, Donald, LynnSMITH, Robert, Samuel
    • B05B01/04
    • B01D43/00B05B1/046B05B1/32
    • A nozzle system for dispensing fluidic materials, or filtering particles from a material, including powder and/or liquid including an elastic tube (10) having at least one transverse slit (12). The tube (10) can include a tube formed from a tight coil of wire (70) or a tube formed from an elastomeric material and the slits (12) are formed as openings between loops in the coil or cuts in the elastomeric tube. The size of the opening of the slits (12) is determined by tension applied to the tube (10) or by bending the tube (10). One means of control includes two clamp members (18, 20) one on each side of the tube (10) wherein the clamp members (18, 20) are hinged together (22). A ram (28) between clamp members (18, 20) provides means for adjusting the bend in the tube (10) in the area of the slit (12). The ram (28) can be controlled by one of a number of means including pneumatic or a screw (30).
    • 一种用于分配流体材料或从包括粉末和/或液体的过滤颗粒的喷嘴系统,包括具有至少一个横向狭缝(12)的弹性管(10)。 管(10)可以包括由线(70)的紧密线圈或由弹性体材料形成的管形成的管,并且狭缝(12)形成为线圈中的环之间的开口或在弹性管中切割。 狭缝(12)的开口的尺寸由施加到管(10)的张力或通过弯曲管(10)确定。 一种控制装置包括在管(10)的每一侧上的两个夹紧构件(18,20),其中夹紧构件(18,20)铰接在一起(22)。 夹紧构件(18,20)之间的冲头(28)提供用于在狭缝(12)的区域中调节管(10)中的弯曲的装置。 压头(28)可以通过包括气动或螺钉(30)的多种装置中的一种来控制。
    • 8. 发明公开
    • A sprayer cap structure
    • 喷雾器盖结构
    • EP0140626A3
    • 1986-02-05
    • EP84307004
    • 1984-10-12
    • Siseido Co., Ltd.Yoshino Kogyosho Co., Ltd.
    • Hamaguchi, MasamiTaguchi, ToshioNozawa, TakamitsuOgawa, Riichi
    • B05B01/04
    • B05B1/1645B05B11/043
    • This invention relates to an improved sprayer cap structure associated with a neck portion (6) of a bottle-shaped container (1) which comprises an inner plug (10) integrally formed adjacently with first and second hollow cylindrical portions (18, 19) in a top-walled cylindrical section (11) perforated with a first hole (20) communicating with the bottom of the container through a pipe (24), also formed with a first valve chamber (26) provided with a blocking valve at the upper position thereof and with a check valve at the lower position thereof, perforated with a second hole (21) and a third hole (22) spaced longitudinally, and formed with a second valve chamber (27) under the second hole (21), provided with a blocking valve at the upper position thereof; a nozzle unit (35) formed with a spinner slot (44) capable of communicating with the first and second holes (20, 21) of the inner plug (10), perforated with a first nozzle hole (42) substantially at the center of the spinner slot (44) of the inner cylindrical section (36), further perforated with a second nozzle hole (43) capable of communicating with the third hole (22) of the inner plug (10) adjacent to the first nozzle hole (42); and a cylindrical cover unit (48) associated I immovably with the container body (1). Thus, the spraying operation and the streaming operation can be simply and reliably switched.
    • 10. 发明申请
    • FLAT-JET NOZZLE FOR A HIGH-PRESSURE CLEANING DEVICE
    • FLAT喷嘴的高压清洁单元
    • WO1994017921A1
    • 1994-08-18
    • PCT/EP1994000330
    • 1994-02-05
    • ALFRED KÄRCHER GMBH & CO.EISENMANN, Wilhelm
    • ALFRED KÄRCHER GMBH & CO.
    • B05B01/04
    • B05B1/048B05B1/042
    • In order to obtain a flat jet with a particularly uniform pressure distribution in a flat-jet nozzle for a high-pressure cleaning system with an outlet opening (6) and a jet channel (3) which opens into the latter, arranged upstream thereof, the invention provides that the jet channel (3) and the outlet opening (6) have, transversely to the direction of flow, a circular cross-section and are arranged concentrically to one another, so that the jet channel in the direction of flow converges and changes into a circularly cylindrical section (5) located upstream of the outlet opening, the ends of said section forming the outlet opening (6). The invention also provides that on diametrically-opposed sides of the jet channel in the region of transition of the converging section (4) of the jet channel (3) are arranged well-like widened sections (10) of the jet channel (3) which are designed and arranged symmetrically to one another, extending substantially over the entire diameter of the circularly cylindrical section (5) and having a deflection surface (11) which introduces a part of the liquid flowing through the converging section (4) essentially transversely into the circularly cylindrical section (5).