SPRAY DEVICE AND METHOD FOR USE THEREOF
20230037378 ยท 2023-02-09
Inventors
Cpc classification
B41M5/0041
PERFORMING OPERATIONS; TRANSPORTING
D06B1/10
TEXTILES; PAPER
B41M5/0011
PERFORMING OPERATIONS; TRANSPORTING
B05B9/0403
PERFORMING OPERATIONS; TRANSPORTING
B05B1/3053
PERFORMING OPERATIONS; TRANSPORTING
D06P5/002
TEXTILES; PAPER
B05B9/007
PERFORMING OPERATIONS; TRANSPORTING
International classification
D06B11/00
TEXTILES; PAPER
B41M5/00
PERFORMING OPERATIONS; TRANSPORTING
D06B1/10
TEXTILES; PAPER
Abstract
A spray device and a method of using the spray device are provided. The spray device facilitates the application of a liquid such as a pretreatment liquid to an area of a fabric material. The spray device can be positioned on or adjacent portions of the fabric material and/or a substrate supporting the fabric material. The spray device can be activated to spray the pretreatment liquid and move the spray device on portions of the fabric material and/or the substrate supporting the fabric material.
Claims
1. A portable spray device for spraying pretreatment liquid to an area of a fabric shirt, the portable spray device comprising: a housing portion having a leading end, a trailing end, a first lateral side, and a second lateral side, a first wheel positioned at the first lateral side of the housing portion, and having a first axis of rotation, a second wheel positioned at the second lateral side of the housing portion, and having a second axis of rotation, at least a third wheel positioned at the leading end of the housing portion, and having a third axis of rotation, at least one motor attached to the housing portion for rotating the first wheel and the second wheel, a sprayer attached to the housing portion at the trailing end thereof, and being configured to spray the pretreatment liquid therefrom, and a controller configured to activate the at least one motor to rotate the first wheel and the second wheel, and configured to activate the sprayer to spray the pretreatment liquid therefrom, wherein, when the first wheel, the second wheel, and the third wheel are positioned on a portion of the fabric shirt, the controller is configured to activate rotation of the first wheel and the second wheel to move the portable spray device from a first position on the fabric shirt to a second position on the fabric shirt, and to simultaneously operate the sprayer to spray the pretreatment liquid in a spray area on the fabric shirt during movement of the portable spray device from the first position to the second position, and when the first wheel, the second wheel, and the third wheel are contacted to the fabric shirt, a first plane perpendicular to the first axis of rotation passes through the first wheel and the spray area, a second plane perpendicular to the second axis of rotation passes through the second wheel and the spray area, and a third plane perpendicular to the third axis of rotation passes through the third wheel, through the spray area, and is positioned between the first plane and the second plane.
2. The portable spray device of claim 1, wherein the sprayer is adjustably attached to the housing portion to afford upward and downwardly positioning of the sprayer relative to the fabric shirt.
3. The portable spray device of claim 1, wherein the controller is configured to adjust a velocity of the spray device during movement thereof from the first position to the second position, and/or a pressure of the pretreatment liquid from a pump to the sprayer.
4. The portable spray device of claim 1, further comprising an activation button, and wherein the portable spray device is activated by continuously depressing the activation button to activate the controller to control the moving of the spray device and to cause the spraying of the pretreatment liquid.
5. The portable spray device of claim 1, further comprising an activation button, and wherein the portable spray device is activated by depressing the activation button to activate the controller to control the moving of spray device for a predetermined distance and the spraying of the pretreatment liquid for a predetermined time.
6. The portable spray device of claim 5, wherein at least one of the predetermined distance and the predetermined time can be changed by programming the controller.
7. The portable spray device of claim 1, further comprising a pump and a reservoir containing the pretreatment liquid, and wherein the sprayer is supplied with pretreatment liquid from the reservoir using the pump.
8. The method of claim 7, wherein the reservoir is provided inside or outside of the spray device.
9. The method of claim 7, wherein the pump is provided inside or outside of the spray device.
10. A portable spray device for spraying pretreatment liquid to an area of a fabric shirt, the portable spray device comprising: a housing portion having a leading end, a trailing end, a first lateral side, and a second lateral side, a first wheel positioned at the first lateral side of the housing portion, a second wheel positioned at the second lateral side of the housing portion, at least a third wheel positioned at the leading end of the housing portion, at least one motor attached to the housing portion for rotating the first wheel and the second wheel, a sprayer attached to the housing portion at the trailing end thereof, and being configured to spray the pretreatment liquid therefrom, and a controller configured to activate the at least one motor to rotate the first wheel and the second wheel, and configured to activate the sprayer to spray the pretreatment liquid therefrom, wherein the third wheel includes an axis of rotation, a plane perpendicular to the axis of rotation passes through the third wheel, and the plane passes between the first wheel and the second wheel, and wherein, when the first wheel, the second wheel, and the third wheel are positioned on a portion of the fabric shirt, the controller is configured to activate rotation of the first wheel and the second wheel to move the portable spray device from a first position on the fabric shirt to a second position on the fabric shirt, and to simultaneously operate the sprayer to spray the pretreatment liquid in a spray area on the fabric shirt during movement of the portable spray device from the first position to the second position.
11. The portable spray device of claim 10, wherein the sprayer is adjustably attached to the housing portion to afford upward and downwardly positioning of the sprayer relative to the fabric shirt.
12. The portable spray device of claim 10, wherein the controller is configured to adjust a velocity of the spray device during movement thereof from the first position to the second position, and/or a pressure of the pretreatment liquid from a pump to the sprayer.
13. The portable spray device of claim 10, further comprising an activation button, and wherein the portable spray device is activated by continuously depressing the activation button to activate the controller to control the moving of the spray device and to cause the spraying of the pretreatment liquid.
14. The portable spray device of claim 10, further comprising an activation button, and wherein the portable spray device is activated by depressing the activation button to activate the controller to control the moving of spray device for a predetermined distance and the spraying of the pretreatment liquid for a predetermined time.
15. The portable spray device of claim 14, wherein at least one of the predetermined distance and the predetermined time can be changed by programming the controller.
16. The portable spray device of claim 10, further comprising a pump and a reservoir containing the pretreatment liquid, and wherein the sprayer is supplied with pretreatment liquid from the reservoir using the pump.
17. A portable spray device for spraying pretreatment liquid to an area of a fabric shirt, the portable spray device comprising: a leading end, a trailing end, a first lateral side, and a second lateral side, a first wheel positioned at the first lateral side, a second wheel positioned at the second lateral side, at least a third wheel positioned at the leading end, at least one motor attached to the housing portion for rotating the first wheel and the second wheel, a sprayer provided at the trailing end, and being configured to spray the pretreatment liquid therefrom, and a controller configured to activate the at least one motor to rotate the first wheel and the second wheel, and configured to activate the sprayer to spray the pretreatment liquid therefrom, wherein the third wheel includes an axis of rotation, a plane perpendicular to the axis of rotation passes through the third wheel, and the plane passes between the first wheel and the second wheel, and wherein, when the first wheel, the second wheel, and the third wheel are positioned on a portion of the fabric shirt, the controller is configured to activate rotation of the first wheel and the second wheel to move the portable spray device from a first position on the fabric shirt to a second position on the fabric shirt, and to simultaneously operate the sprayer to spray the pretreatment liquid in a spray area on the fabric shirt during movement of the portable spray device from the first position to the second position.
18. The portable spray device of claim 17, further comprising an activation button, and wherein the portable spray device is activated by continuously depressing the activation button to activate the controller to control the moving of the spray device and to cause the spraying of the pretreatment liquid.
19. The portable spray device of claim 17, further comprising an activation button, and wherein the portable spray device is activated by depressing the activation button to activate the controller to control the moving of spray device for a predetermined distance and the spraying of the pretreatment liquid for a predetermined time.
20. The portable spray device of claim 19, wherein at least one of the predetermined distance and the predetermined time can be changed by programming the controller.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0008]
[0009]
[0010]
[0011]
[0012]
DETAILED DESCRIPTION
[0013] As depicted in
[0014] The housing portion 12 includes a door D on which the rear surface 22 is provided, and the housing portion 12 includes an interior cavity 28 (
[0015] An activation button switch 30 can be provided on the top end surface 14, and a handle portion 32 can be extend outwardly from the front surface 20. As discussed below, the activation button switch 30 is used to communicate with the controller C to facilitate activation and deactivation of the spray device 10, and the handle portion 32 can be used to manipulate the position of the spray device 10. To facilitate actuation thereof, the activation button switch 30, for example, can be depressed, tripped, or otherwise engaged. And, although the activation button switch 30 and the handle portion 32 are depicted in
[0016] As depicted in
[0017] Furthermore, as depicted in
[0018] As discussed below, increasing the speeds of the motor 40 (and/or the other motor or motors) can increase the velocity of the spray device 10, and decreasing the speeds of the motor 40 (and/or the other motor or motors) can decrease the velocity of the spray device 10. Additional wheels or different arrangements of wheels also can be used, so long as the wheels stably support the spray device 10, and at least one of the wheels is driven to facilitate travel of the spray device 10. In place of or in addition to use of wheels, tracks (not shown) can be used to facilitate travel of the spray device 10. The travel of the spray device 10 can be forward, rearward, side-to-side, or other directions, but will typically be forward as defined relative to the front surface 20 and the rear surface 22.
[0019] A sprayer S is attached relative to the rear surface 22. As depicted in
[0020] As depicted in
[0021] One or more of the spray nozzle(s) 62 can be used to facilitate application of the pretreatment. The spray nozzle(s) 62 can include fixed sizes and fixed shapes, or can be adjustable to increase or decrease the focus of a corresponding area of the spray pattern. The spray nozzle(s) 62 having fixed sizes and fixed shapes could be interchangeable with other nozzle(s) having different fixed sizes and fixed shapes to provide different spray patterns. Furthermore, if more than one of the spray nozzle(s) 62 are provided, the spray nozzle(s) can be arranged in an array to increase the corresponding area of the spray pattern and corresponding application of the pretreatment liquid. Also, the angles of the spray nozzle(s) 62 can be altered to adjust the application of the pretreatment liquid.
[0022] As depicted in
[0023] As depicted in
[0024] A fluid reservoir (not shown) filled with pretreatment fluid can be fluidly connected to the pump P. The fluid reservoir can be provided inside or outside of the housing portion 12. The fluid reservoir can be connected to the pump P via tube(s) 74 extending through and out of the interior cavity 28, and the pump P can be connected to the fluid connection 66 via tube(s) 76 extending through and out of the interior cavity 28. As depicted in
[0025] After actuation of the button switch 30, the controller C can be used to active the motor 40 (and/or the other motor or motors) to rotate the wheel 42 or the wheels 46 to facilitate travel of the spray device 10, activate the motor 82 of the pump P to pump the pretreatment liquid from the fluid reservoir to the sprayer S, and to activate the solenoid valve of the sprayer S to release the pretreatment to the nozzle(s).
[0026] In one preferred embodiment, for example, the spray device 10 can be set in an operational mode where it is necessary to hold down the button switch 30 in an actuated position in order to activate, via the controller C, the motor 40 (and/or the other motor or motors) and the motor 82 at predetermined speeds (to provide selected velocities of the spray device 10 and selected pressures of the pretreatment liquid), and opening of the solenoid valve of the sprayer S. Once the button switch 30 is released for this preferred embodiment, the motor 40 (and/or the other motor or motors) and the motor 82 stop, and the solenoid valve of the sprayer S closes.
[0027] In another preferred embodiment, for example, the spray device 10 can be set in an operational mode where actuation of the button switch 30 (without the need to hold it down) causes the controller C to activate the motor 40 (and/or the other motor or motors) and the motor 82 at predetermined speeds (to provide selected velocities of the spray device 10 and selected pressures of the pretreatment liquid) and for predetermined times, and to activate opening of the solenoid valve of the sprayer S for a predetermined time.
[0028] The controller C can include a display 90 and a keypad 92 for selecting between the above-discussed operational modes, and for adjusting the desired velocity of the spray device 10 and the desired pressure of the pretreatment liquid during these operational modes by controlling the speeds of the motor 40 (and/or the other motor or motors) and the motor 82. Furthermore, as discussed above, the sizes, shapes, number, arrangement, and adjustability of the spray nozzle(s) 62, and the height(s) of the spray nozzle(s) 62 can be adjusted. The sizes, shapes, number, arrangement, and adjustability of the spray nozzle(s) 62 and the corresponding spray pattern of the spray nozzle(s) 62, the height(s) of the spray nozzle(s) 62 from the medium, the velocity of the spray device 10 controlled by the speed of the motor 40 (and/or the other motor or motors), the pressure of the pretreatment liquid controlled by the speed of the motor 82, and the activation times of the motor 82, the motor 40 (and/or other motor or motors), and the solenoid of the sprayer S determine an application rate of the pretreatment liquid to the medium. In other words, these variables determine the amount of the pretreatment liquid applied to an area of the medium during a given time period.
[0029] The application rate can be increased by decreasing the size of the spray pattern of the spray nozzle(s) 62, decreasing the height of the spray nozzle(s) 62, increasing the pressure of the pretreatment liquid exiting the pump P by increasing the speed of the motor 82, and decreasing the velocity of the spray device 10 by decreasing the speed of the motor 40 (and/or the other motor or motors). Furthermore, the application rate can be decreased by increasing the size of the spray pattern of the spray nozzle(s) 62, increasing the height of the spray nozzle(s), decreasing the pressure of the pretreatment liquid exiting the pump P by decreasing the speed of the motor 82, and increasing the velocity of the spray device 10 by increasing the speed of the motor 40 (and/or the other motor or motors). By optimizing these variables, a desired amount of pretreatment liquid can be applied to a desired area of the medium during a given time period, while simultaneously limiting overspray, splatter, and bounce-back of the pretreatment liquid. Typically, an amount of the pretreatment liquid ranging from 10 g to 40 g will be applied over a spray area on a fabric material, but the amount of pretreatment liquid can be lower or higher as deemed necessary.
[0030] Use of the spray device 10 affords application of the pretreatment liquid to the medium in a controlled and predictable manner that serves in maximizing wetting of the medium for the desired amount of pretreatment. The spray device 10, for example, can be used to apply the pretreatment liquid to the fabric material such as a t-shirt T. The t-shirt T can be positioned over a substrate (not shown), and the substrate and t-shirt positioned thereon can be placed on another substrate such as a table/platen (not shown). The spray device 10 can then be positioned directly on the t-shirt T (
[0031] Placement of the spray device 10 by the user affords accurate positioning of the spray nozzle(s) 62 relative to the fabric of the t-shirt T. The user can manipulate the keypad 92 to select the mode of operation. The desired rate of application can be determined, and the size of the spray pattern of the spray nozzle(s) 62, the height of the spray nozzle(s) 62, the velocity of the spray device 10, and the pressure of the pretreatment liquid can be adjusted to provide the desired rate of application. As discussed above, the controller C can be configured to adjust the velocity of the spray device 10 and the pressure of the pretreatment liquid according to input from the user. Thereafter, as depicted in
[0032] While the spray device 10 has been described above as being used to spray a pretreatment liquid, the spray device 10 is not limited thereto. Other liquids requiring application in the manner of the pretreatment liquid can be used with the spray device 10.
[0033] It should be understood that various aspects disclosed herein may be combined in different combinations than the combinations specifically presented in the description and the accompanying drawings. It should also be understood that, depending on the example, certain acts or events of any of the processes of methods described herein may be performed in a different sequence, may be added, merged, or left out altogether (e.g., all described acts or events may not be necessary to carry out the techniques).