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    • 74. 发明授权
    • Ultrasonic atomizer, ultrasonic inhaler and method of controlling same
    • 超声波雾化器,超声波吸入器及其控制方法
    • US06651650B1
    • 2003-11-25
    • US08313249
    • 1994-10-04
    • Hirohito YamamotoKei AsaiMasaru Obata
    • Hirohito YamamotoKei AsaiMasaru Obata
    • A61M1100
    • B05B17/0638A61M15/0083A61M15/0085B05B9/03B05B17/0623B05B17/063
    • A bush (31) is fitted into a housing (10) and an ultrasonic pump (12) is supported liquid tightly by the bush (31). The ultrasonic pump (12) is constituted by a pump shaft (21) formed to include a pump bore (22) passing through it axially and having upper and lower ends which are open, and an ultrasonic vibrator (23) mounted on the pump shaft (21) in the vicinity of the midpoint thereof in terms of the axial direction. A liquid vessel (16) is mounted in the housing (10) in a freely attachable and detachable manner, and the lower end portion of the pump shaft (21) is received inside the liquid vessel (16). A cap (15) is freely detachably attached to the upper end portion of the housing (10) so as to cover the upper end portion of the pump shaft (21). The top side of the cap (15) is provided with a spray port (51), and a step portion (57) is formed for supporting a mesh plate (14) at the periphery thereof at a position below the spray port (51). A compression spring (42) is provided between a portion of the top side of the cap and the mesh plate. The mesh plate (14) is formed to have a multiplicity of minute holes (14a) and is held in pressured contact with the upper end face of the pump shaft (21) by the compression spring (42).
    • 衬套(31)装配到壳体(10)中,超声波泵(12)由衬套(31)液体地支撑。 超声波泵(12)由泵轴(21)构成,泵轴(21)形成为包括轴向穿过其的泵孔(22),并且具有开口的上端和下端;以及安装在泵轴上的超声波振动器 (21)在轴向方向的中点附近。 液体容器(16)以可自由拆卸的方式安装在壳体(10)中,泵轴(21)的下端部被容纳在液体容器(16)的内部。 盖(15)可以可拆卸地附接到壳体(10)的上端部,以覆盖泵轴(21)的上端部。 盖(15)的上侧设置有喷射口(51),并且形成台阶部(57),用于在其喷嘴(51)下方的位置的周围支撑网板(14) 。 压盖弹簧(42)设置在盖顶部的一部分与网板之间。 网板(14)形成为具有多个微孔(14a),并通过压缩弹簧(42)与泵轴(21)的上端面保持压力接触。
    • 75. 发明申请
    • Multiple horn atomizer with high frequency capability
    • 多喇叭雾化器具有高频能力
    • US20030048038A1
    • 2003-03-13
    • US09944643
    • 2001-08-30
    • Shirley Cheng Tsai
    • B05B017/04
    • B05B17/063B05B17/0623
    • The present invention comprises a nozzle type atomizer with two or more aligned nullhornnull stages. The definition of a nullhornnull stage is well known in the prior art as an effectively half wavelength length and a tapering shape with a central conduit. The present invention uses two to five, or more, horn stages integrally attached end to end. The dramatic improvement in amplitude of the vibration at the tip of the nozzle is without precedence in the prior art. The present invention makes application of transducer vibration at greater than 200 kHz possible. The present invention reduces the required applied energy for generating the necessary amplitude at the tip by the discovery of amplitude multiplication with two or more horn stages.
    • 本发明包括具有两个或多个排列“喇叭”级的喷嘴型雾化器。 “喇叭”阶段的定义在现有技术中作为有效的半波长长度和具有中心导管的锥形形状是众所周知的。 本发明使用两到五个或更多个一体地并排连接的喇叭台。 在现有技术中喷嘴尖端的振动振幅的显着改善是不优先的。 本发明使传感器振动的应用可能大于200kHz。 本发明通过发现与两个或更多个喇叭级的幅度相乘来减少用于在尖端产生必要幅度的所需的施加能量。
    • 76. 发明授权
    • Method of producing thin resin films
    • 薄树脂薄膜的制造方法
    • US06475571B1
    • 2002-11-05
    • US09830538
    • 2001-07-06
    • Noriyasu EchigoKazuyoshi HondaMasaru OdagiriNobuki SunagareToru MiyakeTomonori Sato
    • Noriyasu EchigoKazuyoshi HondaMasaru OdagiriNobuki SunagareToru MiyakeTomonori Sato
    • B05D104
    • B05D1/60B05B7/0012B05B13/0207B05B13/0228B05B17/0623B05B17/063B29C41/26G11B5/73H01G4/18
    • A method for manufacturing a resin thin film of the present invention includes supplying a liquid resin material and a gas to a two-fluid nozzle by pressure; ejecting the resin material in the form of atomized particles toward a heating member by the two-fluid nozzle, thereby adhering the resin material to the heating member; or mixing a liquid resin material with a gas; ejecting the resin material in form of atomized particles toward a heating member that is provided under reduced pressure, thereby adhering the resin material to the heating member; and evaporating the resin material on the heating member to obtain the evaporated resin material. Thus, the present invention can provide a resin thin film having a uniform thickness stably with simple means at a low cost. The resin thin film obtained by the present invention can be used in a wide range, for example a magnetic recording medium such as a magnetic tape, a wrapping material, and an electronic component.
    • 本发明的树脂薄膜的制造方法包括:通过压力将液体树脂材料和气体供给到双流体喷嘴; 通过双流体喷嘴将雾化颗粒形式的树脂材料喷射到加热构件,从而将树脂材料粘附到加热构件; 或将液体树脂材料与气体混合; 将以雾化颗粒的形式的树脂材料朝向减压设置的加热构件喷射,从而将树脂材料粘附到加热构件; 并蒸发加热部件上的树脂材料,得到蒸发的树脂材料。 因此,本发明可以以简单的方式以低成本稳定地提供具有均匀厚度的树脂薄膜。 通过本发明获得的树脂薄膜可以在宽范围内使用,例如磁记录介质,例如磁带,包装材料和电子部件。
    • 78. 发明授权
    • Ultrasonic dispersion nozzle with internal shut-off mechanism having
barrier-fluid separation means incorporated therewith
    • 具有内部截止机构的超声波分散喷嘴具有并入其中的阻隔流体分离装置
    • US5104042A
    • 1992-04-14
    • US501215
    • 1990-03-29
    • Clem S. McKown
    • Clem S. McKown
    • B05B17/06
    • B05B17/063B05B17/0623
    • An ultrasonic nozzle includes an atomizing surface for producing an atomized liquid spray, a liquid-feed passageway for supplying process liquid to the atomizing surface, the passageway having a first-diameter section and a second fluidly connected smaller-diameter section, with a shoulder defined therebetween; an internal shut-off assembly for controlling the supply of process liquid to the atomizing surface, the shut-off assembly including a shut-off rod slidably positioned within the passageway and having a sealing end adapted to cooperate with the shoulder, an actuator piston connected with the opposite end of the shut-off rod and slidable within a cylinder bore which is in fluid communication with the passageway, and a valve actuator for slidably moving the piston and shut-off rod in the passageway between a first closed position and a second open position, by which operation the supply of liquid to the atomizing surface is controlled. A barrier fluid provided in the cylinder bore between the passageway and the piston at a pressure higher than that of the process fluid in the passageway prevents the process fluid from adversely affecting the shut-off assembly, and a substantially frusto-conical air guide in concentric surrounding relation to the atomizing surface at the tip of the nozzle directs and diffuses the spray formed at the atomizing surface.
    • 超声波喷嘴包括用于产生雾化液体喷雾的雾化表面,用于向雾化表面供给处理液体的液体供给通道,具有第一直径部分和第二流体连接的较小直径部分的通道,其具有限定的肩部 之间; 用于控制向雾化表面供应处理液体的内部关闭组件,所述关闭组件包括可滑动地定位在通道内的切断杆,并且具有适于与肩部配合的密封端,连接的致动器活塞 其中所述关闭杆的相对端并且可在与所述通道流体连通的气缸孔内滑动;以及阀致动器,用于在所述通道内滑动地将所述活塞和截止杆在第一关闭位置和第二闭合位置之间移动 打开位置,通过该操作可以控制向雾化表面供应液体。 设置在通道和活塞之间的气缸孔中的阻挡流体的压力高于通道中的过程流体的压力,防止过程流体对断流组件产生不利影响,并且基本上截头圆锥形的空气引导件同心 与喷嘴尖端的雾化表面的周围关系引导并扩散在雾化表面处形成的喷雾。