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    • 11. 发明授权
    • Dispenser
    • 分配器
    • US5052585A
    • 1991-10-01
    • US552884
    • 1990-07-16
    • Lee R. Bolduc
    • Lee R. Bolduc
    • B65D83/14
    • B65D83/687B65D83/754
    • A dispenser having a transparent container for storing a propellant and a first compound under pressure. A normally closed valve is mounted on top of the container to control the dispensing of the materials from the container. An ampule containing a second material separate from the first material until the ampule is broken is positioned generally longitudinally of the length of the container with a sleeve. A push rod connected to the valve is movable to break the ampule when the valve is first moved to its open position. The materials are mixed within the container and are dispensed through a filter mounted on a dip tube leading to the valve. The dispenser is operable to dispense two component epoxy and polyester adhesives as a foam to selected locations.
    • 具有用于储存推进剂的透明容器和在压力下的第一化合物的分配器。 常闭阀安装在容器的顶部以控制从容器中分配材料。 包含与第一材料分离直到安瓿破碎的第二材料的安瓿大致沿着具有套筒的容器的长度的纵向定位。 当阀首先移动到其打开位置时,连接到阀的推杆可移动以打破安瓿。 这些材料在容器内混合,并通过安装在通向阀的汲取管上的过滤器分配。 分配器可操作以将二组分环氧树脂和聚酯粘合剂作为泡沫分配到选定的位置。
    • 12. 发明授权
    • Time release aerosol dispenser
    • 时间释放气溶胶分配器
    • US3968905A
    • 1976-07-13
    • US602718
    • 1975-08-07
    • Peter G. Pelton
    • Peter G. Pelton
    • B05B9/04A01M7/00A45D34/02B65D83/14B65D83/16B67D5/08
    • B65D83/265A45D34/02B65D83/754G01F11/08Y10T137/7878
    • Timed release of measured quantities of an aerosol spray is accomplished by attachment of an improved dispenser to a conventional aerosol container. The contents of the container are controllably passed through a porous sintered plug and a flow restricting orifice into a measuring chamber in the body of the dispenser. The exit passage of this chamber is sealed by a spring disk which is concave upward with its periphery seated against a shoulder encircling the exit orifice. As the container contents enter the chamber, the pressure therein rises until it is sufficient to overcome the spring resistance of the disk. When this occurs, the disk snaps into its stressed condition, assuming a concave downward shape. It is then supported on projections formed on the exit orifice shoulder. These projections retain the stressed disk in spaced relation to the exit orifice and allow a quantity of the chamber contents to pass around the disk and escape through a nozzle mounted on the exit orifice. As the chamber contents escape, the pressure within the chamber diminishes until the disk snaps back to its original shape. The cycle is then repeated.
    • 通过将改进的分配器附接到常规气溶胶容器来实现测量量的气溶胶喷雾的定时释放。 容器的内容物可控地通过多孔烧结塞子和流动限制孔口进入分配器主体中的测量室。 该室的出口通过一个弹簧盘密封,弹簧盘向上凹入,其周边安置在环绕出口孔的肩部上。 当容器内容物进入室时,其中的压力升高直到足以克服盘的弹性阻力。 当这种情况发生时,磁盘卡入其应力状态,假设呈凹形向下的形状。 然后将其支撑在出口孔肩上形成的突起上。 这些突出部保持与出口孔间隔开的应力盘,并允许一定数量的腔室内容物绕过盘片并通过安装在出口孔上的喷嘴逸出。 当腔室内容物逸出时,室内的压力减小,直到磁盘回到其原始形状。 然后重复循环。
    • 18. 发明授权
    • Mixing chamber for mixing together a gaseous and a liquid constituent
    • 用于混合气体和液体成分的混合室
    • US5429279A
    • 1995-07-04
    • US150198
    • 1993-12-09
    • Edgar I. M. Van Der Heijden
    • Edgar I. M. Van Der Heijden
    • B65D83/44B65D83/14
    • B65D83/48B65D83/14B65D83/66B65D83/754
    • An apparatus including a mixing chamber for mixing together pressurized gaseous and liquid constituents, the mixing chamber including a lower region and an upper region; separate feed connections for the pressurized constituents of a mixture to be formed; a discharge connection for discharging a formed mixture to a chamber, wherein at least one of the separate feed connections includes passages in a wall of the mixing chamber; a spring located in the lower region of the mixing chamber biased against a pressure element located in the upper region of the mixing chamber, wherein the pressure element and an inner wall of the upper region of the mixing chamber define an annular space around the pressure element, wherein the passages comprise a porous part in the wall of the mixing chamber that open into the annular space around the pressure element in the upper region of the mixing chamber, and comprises an inlet for a pressurized gaseous constituent; and wherein the lower region of the mixing chamber comprises an inlet for a pressurized liquid component.
    • PCT No.PCT / NL92 / 00089 Sec。 371日期1993年12月9日第 102(e)日期1993年12月9日PCT提交1992年5月25日PCT公布。 出版物WO92 / 22477 一种包括用于将加压的气体和液体成分混合在一起的混合室的装置,所述混合室包括下部区域和上部区域; 用于要形成的混合物的加压组分的单独的进料连接; 用于将形成的混合物排放到室的排放连接,其中至少一个单独的进料连接包括在混合室的壁中的通道; 位于所述混合室的下部区域中的弹簧被偏置抵靠位于所述混合室的上部区域中的压力元件,其中所述压力元件和所述混合室的上部区域的内壁围绕所述压力元件限定环形空间 ,其中所述通道包括在所述混合室的壁中的多孔部分,所述多孔部分通向所述混合室的上部区域内的压力元件周围的环形空间,并且包括用于加压气体成分的入口; 并且其中所述混合室的下部区域包括用于加压液体组分的入口。
    • 19. 发明授权
    • Open mesh filter element
    • 打开网格过滤元件
    • US4035303A
    • 1977-07-12
    • US649906
    • 1976-01-16
    • Roger K. Ufferfilge
    • Roger K. Ufferfilge
    • B65D83/14B01D25/04
    • B65D83/75B65D83/754
    • A valve structure for a fluid dispenser primarily of the type known in the art as an aerosol dispenser incorporating a filter assembly comprising one or more filter elements each formed from an apertured, open mesh material of nylon or like synthetic fiber. At least one of the filter elements is mounted on a filter housing in the form of an auxiliary valve body attached to the primary valve body of the valve structure wherein the path of fluid flow is established from the interior of the dispenser to the valve chamber and the one or more filter elements are disposed in interruptive disposition relative to the path of fluid flow so as to cause filtering of any undesirable particles from the product or propellant as the product is being dispensed.
    • 一种用于流体分配器的阀结构,主要是本领域已知的类型的气溶胶分配器,其包括一个过滤器组件,该过滤器组件包括一个或多个过滤器元件,每个过滤器元件均由尼龙或类似合成纤维的开孔网孔材料形成。 过滤器元件中的至少一个安装在过滤器壳体上,辅助阀体的形式附接到阀结构的主阀体,其中流体流动的路径从分配器的内部建立到阀室, 一个或多个过滤元件相对于流体流动的路径设置成中断的设置,以便随着产品被分配而从产品或推进剂中过滤任何不期望的颗粒。
    • 20. 发明授权
    • Micro-emitter
    • 微型发光二极管
    • US3756472A
    • 1973-09-04
    • US3756472D
    • 1971-10-18
    • HOHNSOM & SON INC S
    • VOS K
    • B05B9/04B65D83/14B65D83/16
    • B65D83/205B65D83/24B65D83/754
    • A micro-emitter for pressure packages comprises an apertured member disposed across the nozzle opening through which a fluid product in the pressure package is expelled. The apertured member has at least one aperture which is from 0.5 to 15 Mu in diameter. In one instance, propellant pressure is used to force the fluid through the aperture and break it into small drops. In a second instance a high velocity stream of vapor is used to assist the break up of the liquid either before the apertured member or after the fluid is forced through the apertures.
    • 用于压力包装的微型发射器包括跨过喷嘴开口设置的有孔构件,压力包装中的流体产品通过喷射口被排出。 有孔构件具有至少一个直径为0.5至15μm的孔。 在一种情况下,推进剂压力用于迫使流体通过孔并将其分解成小滴。 在第二种情况下,使用高速蒸气流来辅助液体在有孔构件之前或在流体被迫穿过孔之后分解液体。