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    • 41. 发明授权
    • Aerosol generating and dispensing system
    • 气溶胶发生和分配系统
    • US6068198A
    • 2000-05-30
    • US274705
    • 1999-03-23
    • Umesh Gupta
    • Umesh Gupta
    • B05B9/047B05B17/06B05B17/00
    • B05B17/0615A61M11/001A61M15/025B05B17/06B05B17/0638B05B9/047
    • A generator/dispenser for mono-dispersed aerosol, with droplet size precisely controlled by a stepper motor and a nozzle array having a great number of operational micro-vias, and with fluid volume dosage control. A specified dose is delivered over an accurately controlled interval of time, by decrementing the volume of a fluid reservoir upon each of a specified number of control pulses to a stepper motor, which moves a ball screw linear actuator with great precision on each control pulse. The reservoir is closed at the aerosol delivery position by a nozzle array, which is a thin sheet with myriad micro-via holes. The micro-vias are of the same dimensions and orientation, producing for a medical inhaler the desired micro-droplet volume, for example the volume of a 3-.mu.m diameter droplet from each micro-via, for each pulse. The step sizes of the micro-stepper are selected so that, upon each pulse to the micro-stepper, the linear actuator diminishes the volume of the reservoir just enough to drive one droplet each through the operational micro-vias. The system is compact and simple in design, and can be refilled after use by dipping the fill valve end in the liquid and reversing the linear actuator. The aerosol nozzle array can easily be replaced, either separately or as a part of an integral demountable reservoir housing.
    • 用于单分散气溶胶的发生器/分配器,具有由步进电机精确控制的液滴尺寸和具有大量操作微通孔的喷嘴阵列以及具有流体体积剂量控制的发生器/分配器。 通过在每个指定数量的控制脉冲上将流体储存器的体积减小到步进电机,在精确控制的时间间隔内递送指定剂量,该步进电机在每个控制脉冲上高精度地移动滚珠丝杠线性致动器。 储存器在气溶胶输送位置通过喷嘴阵列封闭,喷嘴阵列是具有无数微通孔的薄片。 微通孔具有相同的尺寸和取向,为医疗吸入器产生所需的微液滴体积,例如每个脉冲从每个微通孔的3μm直径液滴的体积。 选择微步进器的步长,使得在微步进器的每个脉冲上,线性致动器刚好足以将储存器的体积逐渐减小以驱动每个通过操作微通孔的一个液滴。 该系统结构紧凑,设计简单,使用后可将填充阀端部浸入液体中并反转线性执行器。 气溶胶喷嘴阵列可以容易地单独地替换或作为整体可拆卸储存器壳体的一部分来更换。
    • 43. 发明授权
    • Method and system for fluid transfer and non-contact sensor for use
therein
    • 用于流体传递和非接触传感器的方法和系统
    • US5293911A
    • 1994-03-15
    • US32621
    • 1993-03-17
    • Hadi A. Akeel
    • Hadi A. Akeel
    • G01B7/00B05B5/16B05B12/14G01B21/00G01D5/06B05B9/047
    • G01D5/06B05B12/14B05B5/1625B05B5/1675B05B13/0431B05B13/0452Y10T137/87981
    • A method and system for transfer of fluids, such as paint, using a fluid canister carried by a transfer device, such as a robot, instead of having paint lines connected to a delivery device, such as a spray gun, carried by the robot. A novel mechanism for initially docking and then filling the canister from a fluid outlet of a pressurized source of fluid without straining the robot is provided. Also, a novel mechanism for cleaning the canister between canister fillings is provided so that paint colors can be changed without loss of productive robot time. In one embodiment, the canister is integrated with the robot. Also, a novel, non-contact sensor is provided for providing a signal to allow the metering of the paint entering or/and discharged from the canister.
    • 使用由诸如机器人之类的转移装置承载的流体罐而不是具有连接到由机器人携带的输送装置(例如喷枪)的油漆线的流体,例如油漆的转移的方法和系统。 提供了一种用于初始对接并随后从加压流体源的流体出口填充罐而不使机器人变紧的新型机构。 此外,提供了一种用于在罐填充物之间清洁罐的新型机构,使得可以改变涂料颜色而不损失生产性机器人时间。 在一个实施例中,罐与机器人集成。 而且,提供了一种新颖的非接触传感器,用于提供信号以允许油漆进入或排出的油漆的计量。
    • 45. 发明授权
    • Spray applicator for spraying coatings and other fluids in space
    • 用于在空间喷涂涂层和其他流体的喷涂机
    • US4519545A
    • 1985-05-28
    • US392094
    • 1982-06-25
    • Jerome F. KumineczMerlyn F. Lausten
    • Jerome F. KumineczMerlyn F. Lausten
    • B05B1/28B05B9/08B05B9/047
    • B05B1/28B05B9/0838Y10S239/23Y10S55/42
    • The object of the invention is to provide a self-contained spray applicator for one handed operation in a zero gravity vacuum environment by a free-flying astronaut not attached to any spacecraft while avoiding contamination of the operator by back spray.Said applicator includes a rigid accumulator (12) for containment of a fluid (17) within a flexible bladder (16), the fluid being urged out of the accumulator under pressure through a spray gun (13). The spray gun includes a spring loaded lockable trigger (47) which controls a valve (56). When in an open position, the fluid passes through the valve into the ambient environment in the form of a spray. A spray shield (14) is provided which directs the flow of the spray from the applicator by trapping errant particles of spray yet allowing the passage of escaping gases through its material. This reduces the reactive force exerted by the escaping spray on the operator of the applicator. The spray shield consists of two concentric layers of open celled urethane foam with the inner layer consisting of a coarser grain than the outer, thereby trapping progressively finer particles of spray.
    • 本发明的目的是提供一种独立的喷涂机,用于在零重力真空环境中通过未连接到任何航天器的自由飞行的宇航员进行单手操作,同时避免操作者通过反向喷雾而污染。 所述施加器包括用于将柔性气囊(16)内的流体(17)容纳的刚性蓄能器(12),所述流体在压力下通过喷枪(13)被推出所述蓄能器。 喷枪包括控制阀(56)的弹簧加载的可锁定触发器(47)。 当处于打开位置时,流体以喷雾的形式通过阀进入周围环境。 提供了一种喷雾屏蔽(14),其通过捕获错误的喷雾颗粒引导来自施加器的喷雾的流动,从而允许逸出的气体通过其材料。 这减少了由逸出的喷雾施加在施加器的操作者上的反作用力。 喷涂护罩由两个同心层的开孔聚氨酯泡沫组成,内层由比外层更粗的颗粒组成,从而捕获逐渐更细的喷雾颗粒。
    • 46. 发明授权
    • Pressurized dispensing container with liner
    • 带衬垫的加压分配容器
    • US4153182A
    • 1979-05-08
    • US693701
    • 1976-06-07
    • Arnold E. Loeliger
    • Arnold E. Loeliger
    • B65D83/38B05B9/047B65D83/14B65D25/14
    • B65D83/62Y10T29/49872
    • A can for housing and dispensing liquid or pasty masses under pressure, comprising a substantially dimensionally stable, pressure-tight outer container having an opening edge upon which there is sealingly secured a valve plate equipped with a dispensing valve. An at least partially deformable inner container includes a neck portion whose opening edge is sealingly secured at the valve plate or at the part of the dispensing valve protruding into the interior of the can. The neck portion of the inner container is dimensionally stable, but elastically deformable in radial direction and equipped beneath its opening edge with peripheral cams protruding radially from the neck portion and dimensioned such that the inner container, during introduction into the outer container, sealingly bears initially by means of these cams upon the opening edge of the outer container and only after overcoming a resistance dependent upon the shape of the cams and the elasticity of the neck portion is further insertable into the outer container.
    • 用于在压力下容纳和分配液体或糊状物质的罐,包括基本尺寸稳定的耐压外部容器,其具有开口边缘,密封地固定配备有分配阀的阀板。 至少部分可变形的内部容器包括颈部,其开口边缘密封地固定在阀板处或突出到罐体内部的分配阀的部分处。 内容器的颈部尺寸稳定,但是在径向方向上可弹性变形并且在其开口边缘下方设置有从颈部部分径向突出的周向凸轮,其尺寸使得内容器在引入外部容器期间最初密封地承载 通过这些凸轮在外部容器的开口边缘上并且仅在克服了取决于凸轮的形状的阻力之后,并且颈部的弹性进一步可插入到外部容器中。
    • 49. 发明授权
    • Pressurized container-dispensers and filling method
    • 加压容器分配器和灌装方法
    • US4049158A
    • 1977-09-20
    • US631772
    • 1975-11-13
    • Vincent LoKenneth D. VosGermane M. Suchla
    • Vincent LoKenneth D. VosGermane M. Suchla
    • B05B9/047B65D83/14B65D35/28
    • B65D83/625B65D83/663
    • A pressurized container-dispenser characterized by a separate pressure source chamber containing a gas-adsorbent solid and an adsorbable gas and having means to transmit source chamber pressure to a product chamber for dispensing of a product therefrom. Preferred transmission means include a moveable wall separating the product and source chambers, a check valve, a constant pressure valve, and a membrane of the type allowing passage of gas but resisting passage of non-gaseous fluid. In a preferred embodiment the source chamber is defined by an enclosure of substantially fixed volume secured adjacent the product chamber. In another, the source chamber is defined by an unsupported enclosure free within the product chamber.
    • 一种加压容器分配器,其特征在于包含气体吸附剂固体和可吸附气体的单独的压力源室,并且具有将源室压力传递到产品室以便从其分配产品的装置。 优选的传输装置包括分离产物和源室的活动壁,止回阀,恒压阀和允许气体通过但阻止非气态流体通过的膜。 在优选实施例中,源室由邻近产品室固定的基本固定体积的外壳限定。 另一方面,源室由产品室内没有支撑的外壳限定。