Abstract:
A conformal, cup-shaped fluidic oscillator spray nozzle member (100, 200, 300, 400, 500) is configured to generate one or more oscillating sprays from fluid flowing into a substantially open proximal end and distally into a substantially closed distal end wall with one or more centrally located orifices defined therein. A multi-input, multi-output cup-shaped fluidic oscillator (200, 300, 400) is configured to generate a selected fluid spray from a plurality of (e.g., 2-8) fluid product inlets which are configured in interacting pairs and feed into a common interaction region of the fluidic nozzle geometry. Optionally, an outlet “A” can be positioned in the interaction region and allow for air entrainment into the interaction region or external oscillating spray streams to generate a foamed spray of fluid product.
Abstract:
A multichannel printhead for mixing purposes is presented, comprising a first set of fluid outlets each outlet discharging an amount of a first fluid, a second set of fluid outlets each outlet discharging an amount of a second fluid, whereby corresponding outlets of the first and second set are configured to internally or externally lead together and mix the fluids, and whereby at least the fluid discharge of the first set of fluid outlets is controlled by drop-on-demand fluid ejectors responsive to control signals.
Abstract:
A synthetic jet includes a first backer structure, one and only one actuator, a wall member coupled to and positioned between the first backer structure and the one and only one actuator to form a cavity, and wherein the wall member has an orifice formed therethrough, and wherein the orifice fluidically couples the cavity to an environment external to the cavity.
Abstract:
A nozzle comprising a thin, flexible substantially planar polymeric film having a plurality of pores with structures allowing for generation of an aerosol at reduced extrusion pressure is disclosed. The pores can comprise at least two sections, or steps, in which the thickness of the membrane is reduced in stepwise fashion, or the pores can be tapered. Nozzles formed comprising pores having such structures permit aerosol generation at lower extrusion pressures, thereby allowing for decreased weight of aerosolization devices, increased efficiency, increased portability and increased battery life. The pore structures also allow for the use of thicker, more easily processed polymeric films in manufacturing while having a thinner, more efficient aerosolization area. The use of decreased extrusion pressures also results in increased uniformity in aerosol generation and improved reliability of other components.
Abstract:
A device and a hydrodynamic nozzle for a generation of a high pressure pulsating jet of a liquid without cavitation and saturated vapour The device for the adjustment of surfaces and dividing of materials with the hydrodynamic nozzle for the generation of high pressure pulsating jet of liquid without cavitation and presence of saturated vapours. The device for adjustment of surfaces and dividing of materials with the hydrodynamic nozzle generates pulsating jet, which is able to perform a very effective cleaning or removing surfaces of materials or dividing the given bodies of materials. The device could be composed of the bearing body (2) and the body of nozzle (1), which are mutually sealed by the sealing (3). The hydrodynamic nozzle, which consists of input openings (22) of oscillatory chamber (20), the oscillatory chamber (20) and the output neck (21), allows constructing a very small, effective and reliable device for the cleaning of surfaces, removing of surfaces and for dividing of materials by pressure liquid. A high efficiency and reliability is also achieved, because in the whole device, in the input opening of device (25), in the input channel (24), in the relief opening and in others parts it does not come to the formation of cavitation or to the formation of saturated vapours, even at a very high operating power supply pressures.
Abstract:
An electronic spray device comprising a spray generator and a spray controller for providing a drive signal to the spray generator, wherein the spray generator includes a perforate membrane which vibrates ultrasonically in response to the drive signal, said vibration causing liquid droplets to be ejected from one side of the perforate membrane, wherein the spray controller is adapted to modulate the drive signal sent to the spray generator, wherein such modulation of the drive signal is arranged to set the mean power level supplied to the spray generator to a target level.
Abstract:
A jetting device comprising: a fluid chamber connected to a nozzle and containing a fluid to be jetted, and an electrically conductive medium; a magnetic field source arranged to create a magnetic field in the electrically conductive medium; a pair of electrodes contacting the electrically conductive medium; and a controller arranged to control a flow of an electric current through the electrodes and the electrically conductive medium, characterized in that the pair of electrodes is configured to constitute a sonode for generating an ultrasonic acoustic wave in the electrically conductive medium, and the controller is arranged to activate the sonode during a time at which the jetting device does not perform a jetting operation.
Abstract:
A massage water outlet mechanism has a rotor component and an annular outlet cavity, which is disposed with a bottom wall with several spaced outlet holes. The outlet cavity has a rotor component, which can slide along the outlet cavity. The rotor component includes several rotors which close the outlet holes in cycles. The rotor includes a close plate and a connection plate, the rear portion of the bottom surface of the connection plate is fixed to the front portion of the top surface of the close plate, the top surface of the close plate is disposed with a pivot shaft, the connection plate is disposed with a pivot hole; in each two adjacent rotors, the connection plate of the latter rotor is contacted on the close plate of the previous rotor, and the pivot hole of the latter rotor is sleeved on the pivot shaft of the previous rotor.
Abstract:
An apparatus for dispensing droplets comprises a dispensing tip with an orifice having a cross sectional area in the range of 0.00002 mm2 to 0.03 mm2. An actuator assembly comprising an actuator element engages with and disengage from the tip and, when engaged, couples acoustic energy to liquid in the tip to expel the liquid through the orifice as a droplet. The actuator assembly includes one or more piezo elements, which may be in the form of piezo stacks. In some embodiments, the actuator assembly comprises a plurality of jaws adapted to move to engage with the dispensing tip for dispensing. This allows side loading of the tip followed by movement of the actuator assembly to engage the tip.
Abstract:
A liquid material is discharged in a flying mode at a high tact by moving a needle (12) at a high speed with a small-sized drive device. A liquid droplet discharge device includes a liquid chamber (51) that is communicated with a discharge opening (60), and that is supplied with the liquid material, a needle (12) having a tip that is advanced and retracted within the liquid chamber, a drive device (2) that operates the needle (12) to advance and retract, and a displacement magnifying mechanism (3), wherein liquid droplets are discharged in a flying mode from the discharge opening (60). Even number of drive devices are disposed in a left-right symmetric relation, and the displacement magnifying mechanism (3) includes an elastically deformable U-shaped member (5, 6, 7, 8, 9) having a bottom portion to which the needle (12) is coupled.