SPRAYER DEVICES AND RELATED METHODS
20190143353 ยท 2019-05-16
Inventors
Cpc classification
B05B9/0816
PERFORMING OPERATIONS; TRANSPORTING
B05B9/0888
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
Sprayer devices and related methods. The sprayer devices can be of a type that may be carried or worn on the back of a user. Each sprayer device has a tank, a spray outlet (e.g., a spray nozzle or spray wand) and either a manual or power pump. The sprayers may also incorporate one or more of the following: a) a brace member for deterring bending or deformation of a bottom bracket on the sprayer, b) a pump axle with redundant rotation-limiting stop members useable for either right-handed or left-handed operation, c) system for selective and/or controlled agitation or non-agitation of liquid within the sprayer tank and/or d) an information card holding niche with removable information card.
Claims
1.-24. (canceled)
25. sprayer device comprising: a tank having an inner space within which a quantity of liquid may be stored such that the liquid forms an upper liquid level within the inner space of the tank; a spray emitting apparatus connected to the tank; a piston pump for pumping liquid from the tank through the spray emitting apparatus; a collection chamber below the tank within which liquid collects; and one or more conduits for returning liquid that has collected in the collection chamber back into the inner space of the tank, said one or more conduits being operable to cause the returning liquid to re-enter the inner space of the tank either a) below the liquid level or b) above the liquid level, as selected by a user of the device.
26. A sprayer device according to claim 25 wherein the piston pump pumps liquid from the tank out of the spray emitting apparatus and also pumps liquid that has collected in the collection chamber through said one or more conduits and back into the inner space of the tank.
27. A sprayer device according to claim 26 wherein the pump causes back and forth motion of the returning liquid.
28. A sprayer device according to claim 27 wherein the back and forth motion of the returning liquid causes agitation of liquid stored within the inner space of the tank when the returning liquid is caused to re-enter the inner space of the tank below the liquid level.
29. A sprayer device according to claim 27 wherein the back and forth motion of the returning liquid does not cause agitation of liquid stored within the inner space of the tank when the returning liquid is caused to re-enter the inner space of the tank above the liquid level.
30. A sprayer device according to claim 25 wherein: the tank has an agitation port and a recirculation port; said one or more conduits comprises a return conduit that is alternately connectable to either the agitation port or the recirculation port; when the return conduit is connected to the agitation port, returning liquid is caused to re-enter the inner space of the tank below the liquid level thereby causing agitation; and when the return conduit is connected to the recirculation port, returning liquid is caused to re-enter the inner space of the tank above liquid level thereby not causing agitation.
31. A sprayer device according to claim 25 wherein: the tank has an agitation port and a recirculation port; said one or more conduits connect the collection chamber to both the agitation port and the recirculation port; the device further comprises a valve for selectively directing the returning liquid into either the agitation port or the recirculation port; when the valve is set to direct the returning liquid into the agitation port, the returning liquid is caused to re-enter the inner space of the tank below the liquid level thereby causing agitation; and when the valve is set to direct the returning liquid into the recirculation port, the returning liquid is caused to re-enter the inner space of the tank above liquid level thereby not causing agitation.
32. A sprayer device according to claim 25 wherein: the tank has an agitation port and a recirculation port; said one or more conduits connect the collection chamber to both the agitation port and the recirculation port; the device further comprises a valve for selectively directing a desired portion of the returning liquid into one of said agitation port or recirculation ports and any remaining portion of the returning liquid into the other of said agitation port or recirculation ports; wherein, whatever portion of the returning liquid that enters the agitation port will be caused to re-enter the inner space of the tank below the liquid level thereby causing agitation and whatever portion of the returning liquid enters the recirculation port will be caused to re-enter the inner space of the tank above liquid level thereby not causing agitation.
33. A sprayer device according to claim 32 wherein the valve is adjustable to control the amount of agitation.
34. A sprayer device according to claim 30 wherein the recirculation port leads into a stand pipe having an open top end located within the inner space of the tank near a top end of the tank.
35. A sprayer device according to claim 30 wherein the agitation port leads into the inner space of the tank near a bottom end of the tank.
36.-41. (canceled)
Description
BRIEF DESCRIPTION OF THE FIGURES
[0010] The detailed description and examples set forth below refers to
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DETAILED DESCRIPTION OF EXAMPLES
[0028] The following detailed description and the accompanying drawings to which it refers are intended to describe some, but not necessarily all, examples or embodiments of the invention. The described embodiments are to be considered in all respects only as illustrative and not restrictive. The contents of this detailed description and the accompanying drawings do not limit the scope of the invention in any way.
[0029]
A. Brace Member
[0030]
[0031] In the particular example shown, the base bracket 14 has a transverse portion 24 which is not directly affixed to the tank 12 and the brace member 22 extends between the approximate midpoint of the transverse portion 24 of the base bracket 14 and the tank 12. A brace-engaging structure 26 is formed on or in the wall of the tank 12 to facilitate substantially locking engagement (e.g., a snap fit, hook-over fit, undercut abutment, etc.) of the top end of the brace member 22 with the wall of the tank 12, while the bottom end of the brace member 22 is mounted on or affixed to the base bracket 14. In this particular non-limiting example, the bottom end of the brace member 22 has a transverse arcuate portion 28 that pivotally mounts on the upper surface of the transverse portion 24 of the base bracket 14. With this arcuate portion 28 pivotally mounted on the transverse portion 24 of the base bracket 14, the top end of the brace member 22 is then pivoted toward the tank 12 to cause the top end of the brace member 22 to move into substantially locking engagement with the brace-engaging structure 26. In this manner, the brace member 22 is firmly installed such that it provides vertical support between the tank 12 and the transverse portion 24 of the base bracket 14. With the brace member 22 installed in this manner, if downward pressure is applied to the top of the tank 12 while the base bracket 14 is sitting on an underlying surface such as a floor or the ground, the brace member 22 will prevent the base bracket 14 from bending or deforming upwardly toward the tank 12.
[0032] In the non-limiting example shown, the brace-engaging structure 26 comprises an indentation 30 that has a stepped inner surface 32 and the top end of the brace member 22 is configured to snap fit within the indentation 30 in abutment with a portion of the stepped surface 32 so that it will not inadvertently pivot back out of the indentation. More particularly, in this example, the top end of the brace member 22 has a retainer projection 34 that protrudes from the upper end of the brace member 22 and abuts against the underside of the tank 12 (as seen in
[0033] Although the example provided above uses a snap-fitting arrangement for engagement of the brace member 22 with the wall of the tank 12, it is to be appreciated that various alternative arrangements may be used to secure the brace member 22 in its desired position, such as adhesive, solvent welding, fasteners (e.g., screws or rivets), etc. Also, in some embodiments, the brace member 22 may be formed as an integral portion of either the base bracket 14 or the tank 12. Also, in some embodiments, more than one brace member 22 may be provided. All of these variations are to be deemed within the scope of the present invention.
B. Pump Axle with Redundant Rotation-Limiting Stop Members Useable for Either Right-Handed or Left-Handed Operation
[0034] Referring to
[0035] In this example, the pump axle 320 comprises a right axle portion 320R and a left axle portion 320L. Axle guides 310R, 310L are formed below the tank 120 on either side of the pump 150. During assembly, the right axle portion 320R is inserted, inner end first, through the right axe guide 310R which is located to the right of the pump 150. The left axle portion 320L is inserted, inner end first, through the left axle guide 310L located to the left of the pump 150.
[0036] As seen in the views of
[0037] As may be appreciated from the showing of
[0038] After the axle 320 has been fully installed, the pump handle 160 is attached to either the right or left end of the axle 320. Pump handle connector fittings 370R and 370L are formed on the outer ends of the right and left axle portions 320R, 320L, respectively. In this example, the pump handle connector fittings 370R and 370L comprise short sections of metal tubing affixed on the outer end of each axle portion 320R, 320L at a slight angle such that when the bottom end of the pump handle 16 is inserted into the desired pump handle connector fitting 370R or 370L, the pump handle 160 will extend opwardily and slightly outwardly to one side of the tank 120. In this example, through holes are formed in the bottom of the pump handle 16 and in each pump handle connector fitting 370R, 370L so that a locking pin or bolt may be placed to firmly and non-rotatably lock the pump handle 160 in the desired pump handle connector fitting 370R or 370L.
[0039] In use, the device will typically be worn on the users back and the user will repetitively move the pump handle 160 up and down between stopping points dictated by concurrent abutment of the stop members 330R, 330L with their respective abutment surfaces 350. This will allow effective pumping of liquid from the tank 120 out of the spray emitting apparatus 180 by either a right-handed or left-handed user.
C. System for Selective and/or Controlled Agitation or Non-Agitation of Liquid within the Sprayer Tank
[0040] In use, the tank 120 of the sprayer device has an inner space or cavity that is typically filed with liquid up to some liquid level (e.g., the upper surface of the liquid within the tank). As the pump 150 is used to pump liquid from the tank out of the spray emitting apparatus 180, some blow-by or leakage from the pump 150 may occur. The about of such leakage may increase as the pump 150 become worn. The prior art has included a system wherein the sprayer uses a combined piston and diaphragm pump with a collection chamber below the pump 150 to collect leaking liquid. Liquid that collects within that collection chamber then flows through a recirculation loop and back into the tank. This is described in Applicant's prior U.S. Pat. No. 4,798,333, the entire disclosure of which is expressly incorporated by reference. In this prior art system, the re-circulated liquid enters the bottom of the tank (i.e., blow the liquid level). Because the action of the diaphragm pump causes back and forth movement of the liquid, this results in agitation of the liquid within the tank. While some agitation of liquid may be desirable for certain types of chemical, there are situations where agitation is undesirable, such as with chemical solutions that tend to froth or foam when agitated.
[0041] The present invention provides an improved system for re-circulating collected liquid back into the tank such that some or all of the re-circulating liquid may be alternatively channeled through a conduit that delivers the liquid into the inner space of the tank above the liquid level, thereby not causing substantial agitation of the tanked liquid. In some embodiments, this may be accomplished by providing separate agitation and non-agitation ports on the tank so that the user can simply connect the recirculation conduit to the agitation port (if agitation is desired) or to the non-agitation port (if no agitation is desired). In other embodiments a valve may be provided for selectively channeling a desired portion (e.g., 1 to 100%) of the re-circulated liquid into either the agitation port or the non-agitation port.
[0042] As may be appreciated from
[0043] If and when agitation of the tanked liquid is desired, the recirculation conduit 440 may be connected (e.g., by a hose clamp) to the agitation port 400 and the cap 410 may be connected (e.g., by a hose clamp) to the non-agitation port 420. In such alternative configuration, liquid would be pumped, in pulsating or back and forth fashion, from the collection chamber 46, through conduit 440 and through agitation port 420. When the tank 120 is in its usual upright position (as when worn on the back of an operator) this will result in pulsating or back and forth movement of the re-circulating liquid (along with any entrained gas) through an opening in the bottom of the tank 120 thereby entering directly into the standing liquid within the tank 120 at a location below the tanked liquid's upper surface or liquid level. This will result in agitation of the tanked liquid concurrently with mixing of the re-circulated liquid with the mass of liquid contained within the inner space of the tank 120.
[0044] In some embodiments, the simple moveable recirculation conduit 440 shown in this example may be replaced with duplicate recirculation lines or a single bifurcated or branched (e.g., a Y or T) recirculation line, so as to maintain constant fluidic connection between the collection chamber 46o and both ports 400, 420. A suitable type of manually-actuatable or power-actuatable diverter device (e.g., a flow splitter, manifold, diverter valve, three way valve, three-way stop cock, mixing valve, etc) may be provided for selectively channeling desired portion(s) (e.g., between 0% and 100%) of the re-circulated liquid into either the agitation port 400 or the non-agitation port 420. In some embodiments, this would allow the user to easily switch back and forth between an agitation mode (where all of the re-circulated liquid enters the agitation port 400) and a non-agitation mode (where all of the re-circulated liquid enters the non-agitation port 420). Or, in embodiments where a variable mixing valve apparatus is used, this may allow the operator to make adjustments to the amount or degree of agitation by adjusting the relative portions (e.g., 60% agitation/40% non-agitation; 10% agitation/90% non-agitation, etc . . . , etc. . . . ).
D. Information Card Holding Niche with Removable Information Card
[0045] Optionally, any sprayer device may, in accordance with the present invention, incorporate a card-holding niche for holding an information card (e.g., a small placard with information printed on it). Such information card may, in at least some instances, comprise a resilient, wear and/or liquid resistant card that flexes of deforms in a manner that facilitates its stowage in the card-holding niche. A non-limiting example of this is seen in
[0046] It is to be appreciated that, although the invention has been described hereabove with reference to certain examples or embodiments of the invention, various additions, deletions, alterations and modifications may be made to those described examples and embodiments without departing from the intended spirit and scope of the invention. For example, any elements, steps, members, components, compositions, reactants, parts or portions of one embodiment or example may be incorporated into or used with another embodiment or example, unless otherwise specified or unless doing so would render that embodiment or example unsuitable for its intended use. Also, where the steps of a method or process have been described or listed in a particular order, the order of such steps may be changed unless otherwise specified or unless doing so would render the method or process unsuitable for its intended purpose. Additionally, the elements, steps, members, components, compositions, reactants, parts or portions of any invention or example described herein may optionally exist or be utilized in the absence or substantial absence of other elements, steps, members, components, compositions, reactants, parts or portions, unless otherwise noted. All reasonable additions, deletions, modifications and alterations are to be considered equivalents of the described examples and embodiments and are to be included within the scope of the following claims.