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    • 21. 发明申请
    • TRIGGER SPRAYER AND VALVE SYSTEM
    • 触发式喷雾器和阀门系统
    • US20130056499A1
    • 2013-03-07
    • US13697553
    • 2011-05-13
    • Steven L. Sweeton
    • Steven L. Sweeton
    • B67D7/58
    • B05B11/3011B05B11/3018B05B11/3045B05B11/3073B05B11/3074
    • A valve system for a trigger sprayer including a valve forming an air spring with a portion of the trigger sprayer and being made of a flexible or elastomeric material. The trigger sprayer may include an air-spring valve system wherein the air-spring valve system provides precompression during a pump stroke. The precompression forces developed in the valve system during a pump stroke may originate from an air valve or air pocket trapped between a portion of a valve body and a part of the valve system. For example, a valve may be inserted in a tube retainer which is connected to a valve body of a trigger sprayer. Air trapped in a chamber or space between a portion of the valve and the tube retainer may provide a force against the valve such that a certain force must be applied to the valve before it allows product to be released.
    • 一种用于触发式喷雾器的阀门系统,其包括形成具有触发式喷雾器的一部分并由柔性或弹性体材料制成的空气弹簧的阀。 触发式喷雾器可以包括空气弹簧阀系统,其中空气弹簧阀系统在泵冲程期间提供预压缩。 在泵冲程期间在阀系统中产生的预压力可以源于被截留在阀体的一部分和阀系统的一部分之间的空气阀或气袋。 例如,阀可以插入连接到扳机喷雾器的阀体的管保持器中。 被捕获在阀的一部分和管保持器之间的室或空间中的空气可以提供抵抗阀的力,使得在允许产品被释放之前必须施加一定的力到阀。
    • 26. 发明授权
    • Fluid sprayer employing piezoelectric pump
    • 采用压电泵的流体喷涂机
    • US07219848B2
    • 2007-05-22
    • US11153831
    • 2005-06-15
    • Steven L. Sweeton
    • Steven L. Sweeton
    • B05B1/08B05B9/043B05B1/34F04B17/00
    • B05B7/2464B05B7/0025B05B7/2491B05B9/0861B05B11/3057B05B17/0607
    • An electrically-powered fluid sprayer employs a piezoelectric fluid pump that includes an inlet port, an outlet port, a pump chamber, and a piezoelectric element that is deformed and displaced by electrical signals supplied thereto to vary the volume of the pump chamber. Such displacement pumps fluid into the inlet port and into the pump chamber and discharges fluid from the pump chamber out the outlet port. The inlet port is in fluid-communication with a fluid reservoir. Spin mechanics may be disposed downstream from the outlet port of the fluid pump and upstream from the discharge nozzle. The piezoelectric fluid sprayer may be extended to include a dual chamber piezoelectric pump that pumps different fluids (e.g., a liquid and air). The output of the dual chamber pump is mixed in a manifold and supplied downstream to the discharge nozzle. Spin mechanics may be employed in the fluid stream upstream from the discharge nozzle after the mixing.
    • 电动液体喷雾器采用压电流体泵,其包括入口端口,出口端口,泵室和压电元件,该压电元件通过供给其的电信号而变形和位移以改变泵室的体积。 这种位移将流体泵送入入口并进入泵室,并将来自泵室的流体从出口端口排出。 入口端口与流体储存器流体连通。 旋转力学可以设置在流体泵的出口的下游并且在排放喷嘴的上游。 压电流体喷雾器可以被扩展成包括泵送不同流体(例如液体和空气)的双室压电泵。 双室泵的输出在歧管中混合并在下游供应到排放喷嘴。 在混合之后,旋转力学可以用于从排放喷嘴上游的流体流。