US2017173607A1PendingUtilityA1
Electrostatic fluid delivery backpack system
Assignee: VICTORY INNOVATIONS COMPANYPriority: Dec 21, 2015Filed: Dec 21, 2016Published: Jun 22, 2017
Est. expiryDec 21, 2035(~9.4 yrs left)· nominal 20-yr term from priority
Inventors:Clifford A. Wright
B05B 7/0892B05B 5/1691B05B 15/656A61L 2202/15B05B 7/2475A61L 2202/11B05B 5/0533B05B 5/03A61L 2/22B05B 7/2416B05B 9/0861B05B 9/007B05B 15/065B05B 15/061B05B 12/002B05B 5/025
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Claims
Abstract
An electrostatic fluid delivery system is configured to deliver fluid, such as a disinfectant fluid, onto a surface by electrically charging the fluid and forming the fluid into a mist, fog, plume, or spray that can be directed onto a surface, such as a surface to be cleaned. The system atomizes the fluid using a high-pressure air stream and passes the fluid through an electrode inside a nozzle assembly to charge, such as negatively charge, droplets of the atomized fluid. The system uses a unique nozzle design that is configured to optimally atomize the fluid into various sized droplets.
Claims
exact text as granted — not AI-modified1 . An electrostatic sprayer device, comprising:
a housing; an electrostatic module inside the housing; a reservoir having a cavity adapted to contain a fluid; at least one nozzle fluidly connected to the reservoir wherein the nozzles emit fluid in a direction along a flow pathway; a pump that propels fluid from the reservoir to the at least one nozzle; a direct current battery that powers at least one of the electrostatic module and the pump; an electrode assembly that electrostatically charges the fluid, wherein the electrode assembly is at least one of:
(1) a first electrode assembly formed of a plurality electrodes electrically attached to the electrostatic module, wherein each electrode emits ions along an axis that is parallel to the flow pathway of the fluid emitted from the nozzle such that the plurality electrodes form a static electrical field through which the fluid passes; and
(2) a second electrode assembly formed of a tube that fluidly through which fluid flows from the reservoir toward the at least one nozzle, wherein at least a conductive portion of the tube is electrically attached to the electrostatic module, and wherein the conductive portion of the tube physically contacts the fluid as it flows through the tube and applies an electrical charge to the fluid;
and wherein the electrostatic module also electrostatically charges the fluid inside the reservoir such that the fluid is electrostatically at both the reservoir and at the electrode assembly.
2 . A sprayer device as in claim 1 , wherein the electrode assembly includes both the first electrode assembly and the second electrode assembly.
3 . A sprayer device as in claim 1 , wherein the electrode assembly includes only one of the first electrode assembly and the second electrode assembly.
4 . A sprayer device as in claim 1 , wherein the plurality electrodes of the first electrode assembly are positioned on a ring through which the flow pathways passes.
5 . A sprayer device as in claim 1 , wherein the plurality electrodes includes three electrodes spaced in 120 degree increments about the ring.
6 . A sprayer device as in claim 1 , wherein each electrode of the first electrode assembly is an elongated pin that extends along an electrode axis that is parallel with a direction along which the at least one nozzle emits fluid.
7 . A sprayer device as in claim 1 , wherein the at least one nozzle includes three nozzles
8 . A sprayer device as in claim 7 , wherein each of the three nozzles are movable so that a user can selectively couple a desired nozzle to the reservoir.
9 . A sprayer device as in claim 1 , wherein the at least one nozzle is positioned on a nozzle housing, and wherein the nozzle housing and the at least one nozzle is removable from the housing.
10 . A sprayer device as in claim 9 , further comprising a tool that can remove the nozzle housing.
11 . A sprayer device as in claim 10 , wherein the at least one nozzle includes three nozzles that are movable so that a user can selectively couple a desired nozzle to the reservoir, and wherein the tool can also move the nozzles.
12 . A sprayer device as in claim 1 , wherein the housing is sized and shaped to be held in a single hand of a user.
13 . A sprayer device as in claim 12 , wherein the housing includes a handle and a trigger that is actuated to active the device.
14 . A sprayer device as in claim 1 , wherein the housing at least partially forms a backpack.
15 . A sprayer device as in claim 1 , wherein each electrode of the first electrode assembly is an elongated pin, and further comprising an insulator that contacts and covers the pin such that only a tip of the pin is not insulated.
16 . A sprayer device as in claim 15 , wherein the reservoir is removably from the housing.
17 . A sprayer device as in claim 1 , wherein the pump pulls a vacuum in the housing to cause fluid to flow from the reservoir to the at least one nozzle.
18 . A sprayer device as in claim 1 , wherein the housing includes a handle and further comprising a ground wire in the handle, the ground wire positioned so that the ground wire contacts a user's hand when a user grasps the handle.Join the waitlist — get patent alerts
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