SPRAY NOZZLE ARRANGEMENT
20190283047 · 2019-09-19
Inventors
Cpc classification
B05B13/0207
PERFORMING OPERATIONS; TRANSPORTING
B05B1/044
PERFORMING OPERATIONS; TRANSPORTING
B05B1/08
PERFORMING OPERATIONS; TRANSPORTING
B05B1/14
PERFORMING OPERATIONS; TRANSPORTING
B05B13/0278
PERFORMING OPERATIONS; TRANSPORTING
International classification
B05B1/04
PERFORMING OPERATIONS; TRANSPORTING
B05B1/08
PERFORMING OPERATIONS; TRANSPORTING
B05B1/14
PERFORMING OPERATIONS; TRANSPORTING
A01M7/00
HUMAN NECESSITIES
Abstract
An arrangement for spraying a fluid to a piece of material, such as a web or strip, has a chamber through which the material runs, and an applicator (15) which is configured to spray the fluid on the material. The applicator includes at least a first and a second valve (16, 16a, 16b, 16c) arranged within the chamber, each valve having a longitudinal axis, and each valve comprising a spray nozzle (17, 17a, 17b, 17c). Each spray nozzle has an elongated opening extending along an axis. The longitudinal axis of the valve and the axis of the corresponding nozzle span a plane and the at least said first valve and said second valve are arranged spaced on a common axis (CA) running through a center point of each valve. The plane is inclined in relation to the common axis.
Claims
1. An arrangement for spraying a fluid to a piece of material, comprising: a chamber through which said material runs; and a number of valves arranged within said chamber and configured to spray fluid on said material, each valve comprising a spray nozzle; wherein each spray nozzle comprises an elongated opening extending along an axis; wherein at least two of said number of valves are arranged spaced on a common axis running through a center point of each valve; and wherein said axis of said opening is inclined in relation to said common axis.
2. The arrangement according to claim 1, wherein each said valve comprises a longitudinal axis, wherein said longitudinal axis and said axis of the corresponding nozzle span a plane, and wherein said plane is inclined in relation to said common axis.
3. The arrangement according to claim 2, wherein the inclination of each axis of said opening and/or each plane is between 10 and 80 in relation to said common axis.
4. The arrangement according to claim 2, wherein the inclination of each axis of said opening and/or each plane is/are about 30 in relation to said common axis.
5. The arrangement according to claim 2-4, wherein each axis of said opening and/or each plane of said arrangement has/have the same degree of inclination.
6. The arrangement according to claim 1, wherein said valves are arranged adjacent each other creating a main spray pattern on said material where the spray pattern created by each nozzle overlaps at least the adjacent spray pattern when said material runs through the chamber.
7. The arrangement according to claim 1, further comprising a fluid applicator having a number of valves arranged adjacent each other on said common axis.
8. The arrangement according to claim 1, wherein said number of valves are arranged adjacent each other on a first side of a first chamber portion of said chamber, configured to spray said fluid to a first side of said material, and a number of valves are arranged adjacent each other on a second side of a second chamber portion of said chamber, configured to spray said fluid on a second side of said material.
9. The arrangement according to claim 8, comprising at least four valves on each side of said chamber.
10. The arrangement according to claim 1, wherein said common axis is a horizontal axis.
11. The arrangement according to claim 1, wherein said valves are configured to operate simultaneously.
12. An arrangement for spraying a fluid to a piece of material, comprising a chamber through which said material runs; and an applicator configured to spray fluid on said material; wherein said applicator comprises at least a first and a second valve arranged within said chamber, each valve having a longitudinal axis, and each valve comprising a spray nozzle; wherein each spray nozzle comprises an elongated opening extending along an axis; wherein said longitudinal axis of said valve and said axis of the corresponding nozzle span a plane; wherein at least said first valve and said second valve are arranged spaced on a common axis running through a center point of each first and second valve; and wherein said plane is inclined in relation to said common axis.
13. A spray unit comprising an arrangement as claimed in claim 1.
14. An arrangement for spraying fluid onto a piece of material running through an elongated chamber between an elongated inlet and an elongated outlet, between which a central plane is formed; wherein said spray chamber comprises a number of spray nozzles which are disposed in at least one inner wall of the chamber and which are aligned in parallel to a central axis of the elongated chamber; wherein each spray nozzle has an elongated spray opening which is configured to spray fluid in a spraying direction towards the central plane; wherein each elongated spray opening defines a spray plane in the spraying direction, said spray plane being inclined with respect to the central plane of the chamber, whereby an inclination angle is formed between the central plane and the spray plane in an intersection between these planes.
15. The arrangement according to claim 14, wherein said inclination angle is within the range of 10-80.
16. The arrangement according to claim 14, wherein said chamber comprises two sets of inclined spray nozzles arranged aligned in opposite inner walls of the chamber on either side of the material running through the chamber.
17. The arrangement according to claim 1, wherein said piece of material is a web or strip.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Embodiments of the invention will be described in the following, reference being made to the appended drawings which illustrate non-limiting examples of how the inventive concept can be reduced into practice.
[0018]
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[0020]
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[0022]
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[0024]
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[0027]
DETAILED DESCRIPTION OF EMBODIMENTS
[0028] With reference to the drawings, an arrangement 10 for spraying a fluid to a piece of material M, such as a web or strip, is presented. The spray arrangement 10 is preferably a member of a spray unit of a fabric manufacturing process (not shown) where a web of fabric runs through each member of the process. The manufacturing process relates in this embodiment to a fabric material but may in other embodiments relate to other types of material, such as paper, wood, metal, plastic or other types. The material M, which is a web or a strip, runs in a substantially vertical direction V through the spray arrangement 10, but the direction in which the web runs may also be horizontal or any other preferred direction. The fluid to be sprayed can provide the material with different qualities, such as dirt-repellant, water-repellant, flame proof, or making the material softer or adding a desired adhesive.
[0029] The spray arrangement 10 includes an elongated chamber 11, through which the web M runs. The spray chamber 11 has an inlet 12 through which the material enters the chamber 11 and an outlet 13 through which the web M exits the chamber 11. Preferably, the spray chamber 11 consists of two identical, or at least similar chamber portions or halves 11a, 11b located opposite each other and divided by the inlet 12 and outlet 13 along a vertical axis VA. The inlet 12 and the outlet 13 extend horizontally, substantially along the width W1 of the chamber 10 creating a passage suitable for different widths W2 of the web M.
[0030] Further, the spray arrangement 10 includes a spray applicator 15 which is configured to contactless spray fluid on the surface of the web M, a feeding device (not shown) and a control unit (not shown). The control unit controls the feeding unit such that it provides the desired amount of fluid to the spray applicator 15. It can also control the spray pattern and how the spray applicator 15 operates.
[0031] The spray applicator 15 includes a number of valves 16, 16a, 16b, 16c each with a spray nozzle 17, 17a, 17b, 17c, where the valves 16, 16a, 16b, 16c can easily be controlled individually or in group. The valves 16, 16a, 16b, 16c with their spray nozzles 17, 17a, 17b, 17c are arranged along a common axis CA on a side wall 20a, 20b of each chamber portion 11a, 11b. The spray nozzles 17, 17a, 17b, 17c are further changeable in relation to the common axis CA in order to create a changeable spray pattern on the web M.
[0032] As shown in
[0033] The first and the adjacent second valve 16, 16a are located on a common axis CA, CA (one on each chamber portion 11a, 11b) which runs through a center point CP1, CP2 of each valve 16, 16a. The first and second planes P1, P2 are both inclined a in relation to the common axis CA, CA. The inclination of each plane P1, P2 is between 10 and 80 in relation to the common axis CA, CA, and in a preferred embodiment between 20 and 30. The inclination may be varied by changing the direction of the extension of the longitudinal opening 17, 17a of the nozzles 17, 17a. When changing the direction of the extension of the opening 17, 17a the spray pattern SP1, SP2 created by the nozzle 17, 17a changes. The inclination of each plane P1, P2 corresponds to the inclination of each spray pattern SP1, SP2.
[0034] The inclinations of the two planes P1, P2 are preferably the same, and the two longitudinal axes V1, V2 are parallel which results in that the two planes P1, P2 are parallel without intersecting each other. When all valves 16, 16a, 16b, 16c on one side of the chamber 11 are arranged on the common axis CA, all longitudinal axes V1, V2 are parallel and the planes P1, P2 all have the same inclination and no plane P1, P2 will intersect another plane P1, P2 resulting in creating the main spray pattern SP shown in
[0035] In the described embodiment, the direction in which the web M runs is vertical but in alternative embodiments the setup of the direction can be another, such as horizontal or anything else in between vertical and horizontal. Depending on the setup of the arrangement the described axes, direction and planes may vary. When varying the direction of the extension of the openings 17, 17a resulting in different degrees of inclination of the spray pattern, a number of ten to twenty spray nozzles per meter is possible, instead of four to five nozzles per meter when the spray pattern has no inclination. This provides a regular spray pattern which provides a more even result and which is less sensitive to interruptions of one or more spray nozzles. Practical tests have also shown that the inclined spray pattern can lead to reduced water, chemical and energy consumption.
[0036] Each spray nozzle 17 of the spray arrangement 10 has, in the shown embodiment, the same degree of inclination whichafter testinghas given the best result with the most regular spray pattern. The valves 16 are arranged adjacent each other creating the main spray pattern SP, wherein the spray pattern SP1 formed by the first spray nozzle 17 overlaps the spray pattern SP2, SP3 of at least the adjacent spray nozzle 17. In the described embodiment, see
[0037] In the described embodiment, there are no less than fourteen spray nozzles 17 arranged on the common axis CA adjacent each other on the side wall 20a of one chamber portion 11a. The two chamber portions 11a, 11b are preferably similar, so there are also fourteen spray nozzles 17 arranged on a common axis adjacent each other on a side wall 20b of the other chamber portion 11b, see
[0038] The spray arrangement and its spray nozzles may operate in any desired way. For example the spray nozzles may be controlled to operate with a continuously spray, a pulsating spray or a with a program-controlled spray pattern. By changing the direction of the extension of the opening of the spray nozzles and inclining its spray pattern the spray arrangement is able to adapt to different width of the substrate, simply by controlling how many nozzles that should be operating. Thus, it is easier to adapt the spraying process to the desired spray result by having changeable nozzles.
[0039] In an aspect there may be provided a chamber for fluid application to a piece of material such as a web or strip, arranged to run through the chamber. The chamber comprises a fluid applicator for fluid application to the material, an inlet through which the material is fed into the chamber and an outlet through which the material exits the chamber. It further includes an outlet passage device arranged at the outlet and configured to form an outlet fluid sealing of the chamber, and an inlet passage device arranged at the inlet and configured to form an inlet fluid sealing of the chamber (not shown). The fluid chamber defines a space which in an assembled state, for example during the process of applying fluid to the material, is sealed so that no fluid can exit the chamber. The sealing can preferably include elongated sealing lips arranged at the inlet and outlet, and gable sealings arranged at the two gables of the chamber. The sealing lips seal the space between the two chamber portions at the inlet and outlet and the gable sealings seal the space between the two chamber portions at the gables (not shown).
[0040] Finally, although the inventive concept has been described above with reference to specific embodiments, it is not intended to be limited to the specific form set forth herein. Rather, the invention is limited only by the accompanying claims and other embodiments than the specific above equally possible within the scope of these appended claims.