Dispenser
09707575 ยท 2017-07-18
Assignee
Inventors
Cpc classification
B05B9/03
PERFORMING OPERATIONS; TRANSPORTING
B05B1/26
PERFORMING OPERATIONS; TRANSPORTING
B65D83/285
PERFORMING OPERATIONS; TRANSPORTING
B65D83/384
PERFORMING OPERATIONS; TRANSPORTING
B05B1/267
PERFORMING OPERATIONS; TRANSPORTING
A01M1/2038
HUMAN NECESSITIES
A01M1/2044
HUMAN NECESSITIES
B65D83/141
PERFORMING OPERATIONS; TRANSPORTING
A61L9/14
HUMAN NECESSITIES
A61L2209/111
HUMAN NECESSITIES
International classification
B05B1/30
PERFORMING OPERATIONS; TRANSPORTING
B65D83/28
PERFORMING OPERATIONS; TRANSPORTING
B05B1/26
PERFORMING OPERATIONS; TRANSPORTING
B65D83/14
PERFORMING OPERATIONS; TRANSPORTING
B05B9/03
PERFORMING OPERATIONS; TRANSPORTING
A61L9/14
HUMAN NECESSITIES
Abstract
A dispensing device includes a housing, a substrate having a surface and disposed within the housing, a reservoir disposed within the housing and having a volatile active, and an activator operatively connected to the reservoir. When the activator is activated, the volatile active is released from the reservoir onto the surface to create a first quantity of volatile active having a first emanation rate and a second quantity of volatile active having a second emanation rate.
Claims
1. A dispensing device, comprising: a housing including at least one sidewall and an open top defined by the at least one sidewall; a substrate having a surface and disposed within the housing; a reservoir disposed entirely within the housing and comprising a volatile active; and an activator operatively connected to the reservoir, wherein when the activator is activated, the volatile active is released from the reservoir onto the surface to create a first quantity of volatile active having a first emanation rate and a second quantity of volatile active having a second emanation rate, and wherein the first quantity of volatile active is deflected upwardly from the surface of the substrate and out of the open top of the housing into the environment.
2. The dispensing device of claim 1, wherein the substrate comprises a plastic, a polymer, a metal, a fabric, a nonwoven, a cellulosic material, glass, and combinations thereof.
3. The dispensing device of claim 1, wherein the reservoir comprises an aerosol container.
4. The dispensing device of claim 1, wherein the volatile active is chosen from the group consisting of a fragrance, insecticide, a deodorizer, a fungicide, a bacteriocide, a sanitizer, a pet barrier, and combinations thereof.
5. The dispensing device of claim 1, wherein the volatile active is an insecticide.
6. The dispensing device of claim 1, wherein the activator comprises a manual push button.
7. A dispensing device, comprising: a housing comprising an impermeable first surface and a second surface; a reservoir disposed entirely within the housing and comprising a composition; and an activator operatively connected to the reservoir, wherein when the activator is activated, the composition is released from the reservoir onto the impermeable first surface to create a first quantity of the composition deflected off of the impermeable first surface into the environment and having a first emanation rate, a second quantity of the composition deposited onto the impermeable first surface having a second emanation rate, and a third quantity of the composition deflected off of the impermeable first surface onto the second surface having a third emanation rate.
8. The dispensing device of claim 7, wherein the dispenser comprises a plurality of impermeable first surfaces and second surfaces and the activator comprises a plurality of nozzles.
9. The dispensing device of claim 8, wherein upon activation of the activator, a plurality of streams of the composition are released from the plurality of nozzles onto the plurality of impermeable first surfaces, each stream creating the first, second, and third quantities of composition.
10. A dispensing device, comprising: a housing comprising at least one sidewall and an open top defined by an upper edge of the at least one sidewall; a substrate; a reservoir disposed entirely within the housing, the reservoir holding a composition comprising a volatile active and a liquid carrier; and an activator operatively connected to the reservoir, wherein the activator includes at least two apertures, wherein when the activator is activated, at least one stream of the composition is released from each of the at least two apertures to impact a surface of the substrate, wherein upon impact of the composition a first portion of the composition is deflected off of the substrate and a second portion of the composition is deposited onto the substrate, and wherein the first quantity of volatile active is deflected upwardly from the substrate and out of the open top of the housing into the environment.
11. The dispensing device of claim 10, wherein the activator includes three or more apertures and the three or more apertures produce three or more streams of composition upon the activation of the activator.
12. The dispensing device of claim 10, wherein the at least one stream released from each of the at least two apertures is pointed in a different direction.
13. The dispensing device of claim 10, wherein the second portion of the composition provides a source for passive emanation of the volatile active from the substrate into the surrounding environment.
14. The dispensing device of claim 12, wherein the amount of composition deposited onto the substrate is relative to an angle A between a surface of the substrate and the streams of composition.
15. The dispensing device of claim 10, wherein the substrate comprises at least one of a fabric, a non-woven material, and a cellulosic material.
16. The dispensing device of claim 10, wherein the volatile active comprises an insect repellent.
17. The dispensing device of claim 10, wherein the substrate is integral with the housing.
18. The dispensing device of claim 12, wherein the at least two apertures are positioned to release streams in opposing directions.
19. The dispensing device of claim 12, wherein the at least two apertures are equally spaced around the activator.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(8) The present disclosure is directed toward dispensers for dispensing volatile active-containing compositions. The dispensers described herein may be used either as stand alone dispenser devices, which may be placed on a table, shelf or other flat surface, or as personal devices that may be carried on a person or animal.
(9) The dispenser 10 is configured to discharge a composition from one or more reservoirs 14 disposed within the housing 12 upon the occurrence of a particular condition. The condition could be the manual activation of the dispenser 10 by way of the activator 16, which may include a manual push button 16a that opens a valve of the reservoir that may be depressed by a user. In another embodiment, the activator 16 may include additional and/or alternate mechanisms to release the composition from the reservoir. For example, the activator 16 may include a solenoid 16b operatively connected to the reservoir valve.
(10) The condition could also be an automatic activation of the activator by, for example, a mechanical or electromechanical system that activates the device in response to an elapsed time interval or signal from a sensor, such as a motion sensor or other type of sensor. In one implementation, a sensor 16c may be a light-sensing element, such as a photodetector or photodiode light detector, photoresistor, photodiode, phototransistor, or a passive infra-red sensor. For example, automatic activation of the activator may activate a solenoid powered by batteries held within the housing that depresses a valve in the reservoir to release the composition therein.
(11) The reservoir may be an aerosol container and the like. Additional examples of reservoirs, activation mechanisms, compositions, substrates, and the like that may be used herein include those disclosed in U.S. Pat. Nos. 7,837,065, 8,061,562, and U.S. patent application Ser. Nos. 11/801,554, 11/893,456, 11/893,489, 11/893,476, 11/805,976, and 11/893,532.
(12) In another embodiment, the reservoir may include a chamber for holding the volatile active-containing composition, a Venturi throat or chamber in fluid communication with the composition within the chamber, and an air compressor. In this embodiment, activation of the reservoir 14 by the activator 16 causes compressed air to be forced through the Venturi chamber, thereby releasing an aerosolized volatile active-containing composition.
(13) Upon activation of the activator 16, a stream 20 of the composition held within the reservoir 14 is released onto a substrate 22. The stream 20 may have spray patterns that are typically in the form of dispersions, and the spray emitted from a nozzle will form a dispersed spray pattern angle when viewed from the side (as depicted in
(14) The substrate 22 may be made of any suitable material including a plastic, a polymer, a metal, a fabric, a nonwoven, a cellulosic material, glass, and combinations thereof. In one embodiment, the substrate 22 is a polyethylene terephthalate non-woven substrate. In another embodiment, the substrate 22 is an aluminum substrate. In a further embodiment, the substrate 22 is a multilayered substrate, for example, with a nonabsorptive bottom layer and an absorbent top layer. Any number of layers with varying degrees of absorptiveness and/or permeability are contemplated.
(15) Further, the substrate 22 may have various textures and/or surface patterns, such as a rough surface, a smooth surface, a channeled surface, and combinations thereof. Thus, once the stream 20 impacts the surface 22a of the substrate 22, a first portion 24 of the stream may be deflected off of the substrate to create a plume and a second potion 26 may be partially absorbed into the substrate and/or distributed over the surface of the substrate by means of the surface features and/or properties of the substrate. Deflection in this context means the rebound of the composition off of the substrate, which may be affected by one or more of the velocity of the stream 20 at impact with the substrate 22, the angle A of the stream relative to the substrate surface 22a, the composition of the substrate, the texture of the substrate, the variations in the rheological characteristics of the composition, and the like. Therefore, upon activation of the dispenser 10, a volatile active contained within the composition is simultaneously charged onto a substrate 22 and deflected off of the substrate to form a plume of the volatile active. The plume may thus provide a burst of volatile active into the environment that quickly permeates the environment where the dispenser 10 is located. The second portion 26 that is deposited on and/or in the substrate 22 provides a source for passive emanation of the volatile active, which has a slower, more prolonged release of the volatile active, which may be attributed, in part, to the more protected environment within the dispenser 10. It is further envisioned that a portion of the plume may settle on surfaces surrounding the dispenser 10 to thereby create a secondary passive system that has an emanation rate potentially higher than that of the deposited composition within the dispenser due to the greater relative amount of air flow outside of the dispenser housing, but less than that of the plume.
(16) The quantity of the composition deflected out of the dispenser 10 (for example, the first portion 24) relative to the quantity of the composition deposited within and/or on the dispenser (for example, the second portion 26) may be expressed in terms of a ratio X/Y, wherein X is the quantity of the deflected portion and Y is the quantity of the deposited portion. For example, when the first portion 24 and the second portion 26 are equal, then the ratio X/Y has a value of one, as equal portions of the composition have been deflected and deposited. It follows that when the first portion 24 is greater than the second portion 26, then the ratio has a value greater than one, and the inverse is true when the second portion 26 is greater that the first portion 24. Relative values of X/Y contemplated expressed in percentages include about 100/0, or about 90/10, or about 80/20, or about 70/30, or about 60/40, or about 50/50, or about 40/60, or about 30/70, or about 20/80, or about 10/90, or about 0/100 and all values in between.
(17) The substrate material and surface properties of the substrate 22 may affect the ratio X/Y of the first 24 and second portions 26. For example, a hard, hydrophobic, impermeable surface may be more likely to repel a water-based composition compared to a soft, hydrophilic, permeable surface. Thus, by changing not only the qualities of the composition, but by also changing the nature of the substrate 22, the ratio X/Y may be controlled. It is further envisioned that the surface properties of the substrate 22 may be hydrophobic, hydrophilic, soft, hard, liquid permeable, liquid impermeable and combinations thereof over portions thereof. For example, the surface 22a may have a checkered configuration with alternating hydrophobic and hydrophilic regions and/or hard and soft regions and/or liquid permeable and impermeable regions.
(18) The ratio X/Y of the first 24 and second 26 portions of the composition may further be altered, for example, by varying an angle A (the angle measured between the central axis of the stream 20 and the substrate surface 22a as the substrate 22 pivots about the z-axis at the point of contact of the stream to the substrate) between the stream 20 and the surface 22a of the substrate 22 (see
(19) In another embodiment, the ratio X/Y may be altered by varying the distance 20a traveled by the stream 20 between the nozzle 18 and the surface 22a for a given velocity of the stream. For example, the reservoir 14 may be placed closer or farther away from the substrate 22, which will increase the ratio X/Y and decrease the ratio X/Y, respectively.
(20) Further, increasing or decreasing the caliber of the nozzle 18 (or orifice size) while maintaining a constant pressure within the reservoir 14, may cause the velocity of the stream 20 to decrease or increase, respectively. Moreover, the ratio X/Y may be determined, at least in part, by the nature of the stream 20, for example, whether it is a narrow jet or a V-shaped cone of a pressurized aerosol spray.
(21) In another embodiment shown in
(22) In a further embodiment shown in
(23) In one embodiment shown in
(24) In another embodiment similar to that in
(25) In another embodiment shown in
(26) In another embodiment shown in
(27) Additional features contemplated herein include use-up indicators. For example, in one embodiment where the volatile active is dispensed onto a substrate integral with the housing, an ink is provided within the walls of the housing or within the composition, which may appear or disappear to indicate when the volatile active has completely evaporated from the walls of the housing.
(28) All documents cited in the Detailed Description of the Invention are, in relevant part, incorporated herein by reference; the citation of any document is not to be construed as an admission that it is prior art with respect to the present invention.
INDUSTRIAL APPLICABILITY
(29) Numerous modifications to the present invention will be apparent to those skilled in the art in view of the foregoing description. Accordingly, this description is to be construed as illustrative only and is presented for the purpose of enabling those skilled in the art to make and use the invention and to teach the best mode of carrying out same. The exclusive rights to all modifications which come within the scope of the appended claims are reserved.