METHOD FOR PRODUCING A CHANNEL IN A SHAFT TUBE
20220056991 · 2022-02-24
Inventors
Cpc classification
B23P13/00
PERFORMING OPERATIONS; TRANSPORTING
F16H53/025
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H57/043
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M9/101
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B23P15/16
PERFORMING OPERATIONS; TRANSPORTING
F01M2001/064
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M9/105
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16H53/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to a method for producing a spray channel (4) on a shaft tube (1), via which with finished shaft tube (1) fluid (5) can be output from within the shaft tube (1) to the outside, having the steps introducing at least one through-opening (7) with a diameter D.sub.1≥1.5 mm into the shaft tube (1), arranging at least one additional element (8) in or on the through-opening (7) in such a manner that the spray channel (4) is at least partly formed by the additional element (8).
The invention also relates to a camshaft (2) having a shaft tube (1) produced with such a method.
Claims
1. A method for producing a spray channel (4) on a shaft tube (1), via which with completed shaft tube (1) fluid (5) can be output from within the shaft tube (1) to the outside, with the steps introducing at least one through-opening (7) with a diameter D.sub.1≥1.5 mm into the shaft tube (1), arranging at least one additional element (8) in or on the through-opening (7) in such a manner that the spray channel (4) is at least partly formed by the additional element (8).
2. The method according to claim 1, characterized, in that the spray channel (4) is oriented at a right angle or at least partly obliquely to the shaft axis (3) and makes possible emitting of fluid (5) directed at a right angle or obliquely to the shaft axis (3).
3. The method according to claim 1 or 2, characterized, in that a through-opening (7) oriented obliquely to the shaft axis (3) is introduced into the shaft tube (1), in that an additional element (8) designed as sleeve (9) is pressed into the through-opening (7), whose inner diameter D.sub.2 is <1.5 mm and forms the actual spray channel (4), or in that a through-opening (7) oriented orthogonally to the shaft axis (3) is introduced into the shaft tube (1), in that a cylindrical additional element (8) is pressed into the through-opening (7), which comprises a spray channel (4) running obliquely or parallel to a cylinder axis (10) with a diameter D.sub.3<1.5 mm.
4. The method according to any one of the preceding claims, characterized, in that at least two through-openings (7) oriented orthogonally to the shaft axis (3) are introduced into the shaft tube (1), in that an additional element (8) designed as sphere ring (11) with a number of interconnected spheres (13) corresponding to the through-openings (7) on the shaft tube (1) is provided, wherein into each sphere (13) a spray channel (4) running obliquely or orthogonally to a sphere ring axis (14) with a diameter D.sub.K<1.5 mm is introduced, in that the sphere ring (11) is mounted on the shaft tube (1) in such a manner that each sphere (13) engages into an associated through-opening (7) and fluidically connects the respective spray channel (4) with the associated through-opening (7).
5. The method according to any one of the preceding claims, characterized, in that at least two through-openings (7) oriented orthogonally to the shaft axis (3) are introduced into the shaft tube (1), in that an additional element (8) formed as outer ring (15) with a number of spray channels (4) preferentially corresponding to the through-openings (7) on the shaft tube (1) each with a diameter D.sub.AR<1.5 mm is provided, wherein each spray channel (4) runs obliquely or orthogonally to an outer ring axis (16), in that the outer ring (15) is mounted on the shaft tube (1) in such a manner that preferentially each spray channel (4) sits on an associated through-opening (7) and/or fluidically connects the respective spray channel (4) with the associated through-opening (7).
6. The method according to claim 5, characterized, in that on an outer lateral surface of the shaft tube (1) and/or on an inner lateral surface of the outer ring (15) a ring groove (17) is arranged, which fluidically connects the through-openings (7) via the ring groove (17) with the spray channels (4).
7. The method according to any one of the preceding claims, characterized, in that at least two through-openings (7) oriented orthogonally to the shaft axis (3) are introduced into the shaft tube (1), in that an additional element (8) formed as inner ring (18) with a number of spray channels (4) corresponding to the through-openings (7) on the shaft tube (1) each with a diameter D.sub.IR<1.5 mm is provided, wherein each spray channel (4) runs obliquely or orthogonally to an inner ring axis (19), in that the inner ring (18) is slid into the shaft tube (1) in such a manner that each spray channel (4) from the inside lies against an associated through-opening (7) and/or fluidically connects the respective spray channel (4) with the associated through channel (7).
8. The method according to any one of the preceding claims, characterized, in that at least one through-opening (7) oriented orthogonally to the shaft axis (3) is introduced into the shaft tube (1), in that an additional element (8) formed as ring (20) with a front face (22) running obliquely to a shaft axis (21) is provided, wherein the front face (22) forms a part of a spray channel (4), in that the ring (20) is mounted onto the shaft tube (1) in such a manner that the oblique front face (22) sits over the at least one associated through-opening (7) so that the part of the spray channel (4) formed by the front face (22) is fluidically connected with the associated through-opening (7).
9. The method according to any one of the preceding claims, characterized, in that the at least one through-opening (7) is introduced into the shaft tube (1) by drilling, eroding or laser drilling.
10. A camshaft (2) having a shaft tube (1) produced according to the method in accordance with one of the preceding claims.
11. The camshaft according to claim 10, characterized, in that the camshaft comprises at least one cam (6) which is arranged relative to the at least one spray channel (4) in such a manner that during the operation it can be supplied with oil via the spray channel (4).
Description
[0015] Preferred exemplary embodiments of the invention are shown in the drawings and are explained in more detail in the following description, wherein same reference numbers relate to same or similar or functionally same components.
[0016] It shows, in each case schematically,
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023] According to
[0024] In
[0025] For this reason, the method according to the invention for producing spray channels 4 on a shaft tube 1 was developed which, compared with the previous production method, is a simple and cost effective design. With the method according to the invention, at least one through-opening 7 with a diameter D.sub.1≥1.5 mm is initially introduced into the shaft tube 1. Through the comparatively large diameter D.sub.1, conventional metal drills can also be employed without problem and because of this the respective through-openings 7 produced cost-effectively and simple technically. In the shaft tubes 1 shown according to
[0026] The additional element 8 can also be arranged in or on the through-opening 7 so that the spray channel 4 is at least partly oriented obliquely or orthogonally to the shaft axis 3 and because of this a fluid jet 5 emitted from the spray channel 4 includes an angle α<90° with the shaft axis 3.
[0027] The spray channel 4 can be partly arranged or run in the through-opening 7 or in or on the additional element 8.
[0028] Here, only the individually possible embodiments of
[0029] Looking at
[0030] Looking at the embodiment according to
[0031] Looking at
[0032] The outer ring 15 is now mounted onto the shaft tube 1 in such a manner that at least one, preferentially each spray channel 4 sits on an associated through-opening 7 or is fluidically connected with such. Here, the number of the spray channels 4 arranged in the outer ring 15 can correspond to the number and orientation of the through-openings 7 introduced into the shaft tube 1.
[0033] In order to make possible a mounting of the outer ring 15 on the shaft tube 1 that is independent of the angle of rotation it is also conceivable that on an outer lateral surface of the shaft tube 1 a ring groove 17 is arranged. Analogously to this, a corresponding ring groove can also be provided on an inner lateral surface of the outer ring 15, via which fluid 5, for example coolant or oil, is fed from a through-opening 7 via the ring groove 17 to a respective spray channel 4.
[0034] Analogously to
[0035] Finally viewing the embodiment of
[0036] With the additional element 8 designed as ring 20 it is likewise possible to emit fluid 5, which is stored in the shaft tube 1 under pressure via the respective through-opening 7 and the oblique front face 22 at an angle α<90° to the shaft axis 3 to the outside and thus lubricate or cool for example axially adjacent cams 6.
[0037] On the whole, a shaft tube 1, for a camshaft 2 can be produced with the method according to the invention, which compared with conventional shaft tubes 1 regarding the through-openings 7 and spray channels 4 is not only more cost effective but can also be significantly more easily produced technically.