Nozzle foil for a nozzle bar with connectable foil segments
09816216 · 2017-11-14
Assignee
Inventors
Cpc classification
International classification
Abstract
A nozzle foil (12), for a nozzle bar (10) of a textile processing machine, having a plurality of nozzle openings (16) arranged in one or more rows (40) in a longitudinal direction L. The nozzle foil (12) consists of at least two adjacent foil segments (25) that can be mechanically connected with each other in a form-fitting manner. With the connection established, the upper sides (15) and the undersides (17) of the foil segments (25) are in a common plane. To accomplish a form-fitting connection, connecting means (27) provided on one foil segment (25) interact with opposing connecting means (28) of the other foil segment (25). The connecting means (27) and the opposing connecting means (28) are integral components of the respective foil segment (25) and preferably are manufactured at the same time as the respective foil segment (25) and consist of the same material as the respective foil segment (25).
Claims
1. Nozzle foil for a nozzle bar (10) of a textile processing machine, the nozzle foil comprising: an elongate foil body defining a plurality of nozzle openings (16), the elongate foil body configured to be secured between an inlet channel (13) and an outlet channel (18) of a carrier element (11) of the nozzle bar (10) to allow pressurized fluid introduced into the inlet channel (13) to form fluid jets (19) extending out of the nozzle openings (16) and into the outlet channel (18) of the carrier element (11), wherein the elongate foil body comprises at least two foil segments (25) configured to connect with each other, wherein the elongate foil body has a thickness between 0.1to 1.5 millimeters.
2. Nozzle foil as in claim 1, wherein the foil segments (25) are configured to be connected with each other in a form-fitting manner.
3. Nozzle foil as in claim 1, wherein the foil segments (25) are connected with each other by a substance-to-substance bond.
4. Nozzle foil as in claim 1, further comprising connecting means (27) provided on at least one of the foil segments (25), the connecting means (27) interacting with opposing connecting means (28) on another foil segment (25) in order to establish connection of the two foil segments (25).
5. Nozzle foil as in claim 1, wherein individual ones of the at least two foil segments (25) define at least one connecting recess (30) configured to receive and engage a connecting projection (29) defined by another one of the at least two foil segments (25).
6. Nozzle foil as in claim 5, wherein the another one of the at least two foil segments (25) comprises a joining surface (33), and wherein the connecting projection (29) projects away from the joining surface (33) of the another one of the at least two foil segments (25).
7. Nozzle foil as in claim 6, wherein the connecting projection (29) has a widened end section (44).
8. Nozzle foil as in claim 7, wherein the widened end section (44) of the connecting projection (29) tapers in a direction (H) in which the connecting projection can be inserted in an associated connecting recess (30) of the at least one connecting recess (30) of the individual ones of the two or more foil segments (25) in order to establish a connection.
9. Nozzle foil as in claim 1, wherein individual ones of the at least two foil segments (25) comprise a joining surface (33), and wherein respective joining surfaces (33) of two foil segments of the at least two foil segments (25) that are connected with each other adjoin each other.
10. Nozzle foil as in claim 9, wherein one or more of the respective joining surfaces (33) extends in one plane.
11. Nozzle foil as in claim 9, wherein one or more of the respective joining surfaces (33) has surface sections (34) having surface normals (N) pointing in different directions (L, H, Q).
12. Nozzle foil as in claim 11, wherein two connected foil segments (25) overlap each other at a connecting point (26) between the two connected foil segments (25), and each of the two connected foil segments (25) comprises a joining part (35) configured to overlap with the joining part (35) of the other of the two connected foil segments (25) when connected; wherein at least one surface section (34) of the one or more of the respective joining surfaces (33) is provided on the joining part (35).
13. Nozzle foil as in claim 1, wherein two connected foil segments (25) overlap each other at a connecting point (26) between the two connected foil segments (25).
14. Nozzle foil as in claim 13, wherein each of the two connected foil segments (25) comprises a joining part (35) which is configured to overlap with the joining part (35) of the other of the two connected foil segments (25) when connected.
15. Nozzle foil for a nozzle bar (10) of a textile processing machine, the nozzle foil comprising: an elongate foil body defining at least four nozzle openings (16), the elongate foil body configured to be secured between an inlet channel (13) and an outlet channel (18) of a carrier element (11) of the nozzle bar (10) to allow pressurized fluid introduced into the inlet channel (13) to form fluid jets (19) extending out of the nozzle openings (16) and into the outlet channel (18) of the carrier element (11), wherein the elongate foil body comprises at least two foil segments (25) configured to connect with each other, wherein the at least four of the nozzle openings (16) are parallel with each other to effect the fluid jets (19) extending out from the at least four of the nozzle openings to be parallel to each other.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
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(5) The nozzle foil 12 features a row of nozzle openings 16 that are provided in the nozzle foil 12 at a distance from each other next to each other in longitudinal direction L. The diameter of the nozzle opening 16 may be approximately 0.05 to 0.2 mm. The nozzle foil 12 may have a length of several meters in longitudinal direction L. It is also possible to provide the nozzle openings 16 in several adjacent rows in longitudinal direction L in the nozzle foil 12. The nozzle foil 12 may have a thickness of approximately 0.1 to 1.5 mm. The width of the nozzle foil 12 in a transverse direction Q may be approximately 10 to 35 mm. The distance between two adjacent nozzle openings 16 may be within a range of approximately 0.3 to 1 mm. The nozzle foil 12 consists of several foil segments 25 adjoining each other in longitudinal direction L. Two foil segments 25 adjacent each other in longitudinal direction L are mechanically connected with each other at a connecting point 26 (
(6) Referring to the illustrated preferred exemplary embodiments, the connecting means 27 have one and, as in the example, several connecting projections 29. Corresponding to the number of connecting projections 29, the opposing connecting means 28 have one or more connecting recesses 30. Considering a modification thereof, it would also be possible for the connecting means 27 to have connecting recesses 30 and for the opposing connecting means 28 to have connecting projections 29. The number of connecting projections 29 and of connecting recesses 30 may also vary. Considering the preferred exemplary embodiment, two connecting projections 29 and two connecting recesses 30 are provided on each connecting point 26 of two adjoining foil segments 25. The foil segment 25, including the associate connecting projections 29 and connecting recesses 30, respectively, are made in one piece of a uniform material, e.g., metal.
(7) In the region of the connecting means 27 or the opposing connecting means 28, each foils segment 25 has a joining surface 33. With the connection established, the joining surfaces 33 of the connected foil segments 25 abut against each other at the connecting point 26.
(8) The joining surface 33 may extend in one plane, as is obvious, for example, from
(9) As an alternative thereto, it is also possible for the joining surface 33 of a foil segment 25 to have several surface segments 34. The surface normal N of at least two surface sections 34 of the joining surface 33 point in different directions. Consequently, a stepped joining surface 33 may be the result, for example, as is schematically shown in
(10) Referring to the exemplary embodiment in accordance with
(11) In the previously described exemplary embodiments of the nozzle bar 12, the foil segments 25 that are successive in longitudinal direction L are arranged so as to be in alignment with each other. In so doing, the longitudinal edges of the foil segments 25 form a longitudinal edge of the nozzle foil 12 that is essentially without steps. In so doing, the nozzle openings 16 are also arranged so as to be in alignment in a row extending in longitudinal direction L. Considering a modification thereof, the foil segments 25 in the exemplary embodiment in accordance with
(12) Basically, the connecting projection 29 may have many different contours or shapes. Said projection projects away from a surface section 34 of the joining surface 33. Starting from this joining section 34, the connecting projection 29 widens at least in sections. As is obvious, for example, from
(13) The inside contour of the associate connecting recess 30 corresponds—apart from the required tolerance—to the outside contour of the connecting projection 29, so that a form-fitting connection can be achieved. Referring to the exemplary embodiment in accordance with
(14) Considering a modification thereof, the connecting projections 29, as well as the corresponding connecting recesses 30, may also have the shape of a prism (
(15) Considering another modification of the connecting means 27 in accordance with
(16) Considering the embodiment of the connecting means 27 and the opposing connecting means 28, respectively, there are additional variation options. Referring to the illustrated exemplary embodiments, the connecting projections 29 and the connecting recesses 30 of a foil segment 25 have the same size. Considering a modification thereof, it is also possible to choose different sizes for the connecting projections 29 and the connecting recesses 30 of a foil segment 25. Alternatively or additionally, the connecting projections 29 and the connecting recesses 30 of a foil segment 25 may also have different contours.
(17) Referring to the preferred exemplary embodiments, the surface normals N of the joining surfaces 33 or the surface segments 34 extend in longitudinal direction L, in height direction H or in transverse direction Q. Considering a modification thereof, it would also be possible to provide surface sections 34 or joining surfaces 33, said surfaces having surface normals N being aligned inclined relative to longitudinal direction L and/or height direction H and/or transverse direction Q.
(18) The invention relates to a nozzle foil 12 for a nozzle bar 10 of a textile processing machine. The nozzle foil 12 has a plurality of nozzle openings 16 that are arranged in one or more rows 40 in longitudinal direction L. The nozzle foil 12 consists of at least two foil segments 25. Respectively two adjacent foil segments 25 can be mechanically connected with each other and can, in particular, be connected in a form-fitting manner with each other. With the connection established, the upper sides 15 and the undersides 17 of the foil segments 25 are in a common plane. In order to accomplish a form-fitting connection, connecting means 27 are provided on a foil segment 25, said connecting means 27 interacting with the opposing connecting means 28 of the other foil segment 25. The connecting means 27 and the opposing connecting means 28 are integral components of the respective foil segment 25. In particular, the connecting means 27 and the opposing connecting means 28 are manufactured at the same time as the respective foil segment 25. Said connecting means consist of the same material as the respective foil segment 25.
(19) It will be appreciated that the above description of the present invention is susceptible to various modifications, changes and modifications, and the same are intended to be comprehended within the meaning and range of equivalents of the appended claims.
LIST OF REFERENCE NUMERALS
(20) 10 Nozzle bar 11 Carrier element 11a Upper part of 11 11b Lower part of 11 12 Nozzle foil 13 Inlet channel 14 Pressure source 15 Upper side of 12 16 Nozzle openings 17 Underside of 12 18 Outlet channel 19 Water jet 20 Random fiber nonwoven 25 Foil segments 26 Connecting point 27 Connecting means 28 Opposing connecting means 29 Connecting projection 30 Connecting recess 33 Joining surface 34 Surface section of 33 34a First surface section 34b Second surface section 34c Third surface section 35 Joining part 40 Row 41 Lateral surface 44 End section of 29 45 Strip 46 Hole 47 Slit H Height direction L Length direction Q Transverse direction U Overlap section