WIPER MOTOR, METHOD FOR ASSEMBLING A WIPER MOTOR, AND ASSEMBLY TOOL
20240084887 · 2024-03-14
Assignee
Inventors
Cpc classification
F16H57/031
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E05C3/14
FIXED CONSTRUCTIONS
H02K5/04
ELECTRICITY
F16H2057/02034
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60S1/166
PERFORMING OPERATIONS; TRANSPORTING
F16H57/032
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2057/0062
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16H57/031
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H57/032
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to a wiper motor (10; 10a), having a gearbox housing (12) which preferably has a pot-shaped main body (16) for configuring a receptacle space (18) for a gearbox (20), wherein an opening (21) of the main body (16) is able to be closed by a gearbox cover (22; 22a), wherein a plurality of latching connections (26) that act in the direction of a joining direction (24) between the main body (16) and the gearbox cover (22; 22a) are configured between the main body (16) and the gearbox cover (22; 22a), said latching connections (26) having in each case an elastically deformable first latching element (28; 28a) on the gearbox cover (22; 22a) and a rigidly configured second latching element (30) that on the main body (16) interacts in a form-fitting manner with the first latching element (28; 28a).
Claims
1. A wiper motor having a gearbox housing, the gearbox housing comprising: a pot-shaped main body for configuring a receptacle space for a gearbox, wherein an opening of the main body is able to be closed by a gearbox cover, wherein a plurality of latching connections that act in the direction of a joining direction between the main body and the gearbox cover are configured between the main body and the gearbox cover, said latching connections having in each case an elastically deformable first latching element on the gearbox cover and a rigidly configured second latching element that on the main body interacts in a form-fitting manner with the first latching element, wherein the first latching element in the joining direction by way of a tongue-type portion protrudes from a connection point on the gearbox cover, said portion being elastically deformable in a direction running perpendicular to the joining direction, and wherein the second latching element in the joined state of the gearbox cover by way of a blocking portion that on the first latching element is disposed in the region of the tongue-type portion interacts with a blocking face on the first latching element wherein the tongue-type portion of the first latching element in a direction running perpendicular to the joining direction, or parallel to the extent of the portion, respectively, is configured so as to be free of any undercut.
2. The wiper motor according to claim 1, wherein the tongue-type portion of the first latching element has two webs which are disposed in parallel and run so as to be aligned with the joining direction and in each case have a constant rectangular cross section and on the side that faces away from the connection point on the gearbox cover are connected to one another by the blocking portion, wherein the webs conjointly with the blocking portion (54) configure a rectangular clearance on the tongue-type portion.
3. The wiper motor according to claim 1, wherein the blocking portion on the side that faces away from the main body has a ramp, the depth of the latter increasing when viewed in the joining direction.
4. The wiper motor according to claim 3, wherein the ramp transitions to the blocking face, wherein the blocking face is configured so as to be planar and runs perpendicular to the joining direction.
5. The wiper motor according to claim 1, the gearbox cover is composed of plastics material and is configured as an injection-moulded component.
6. The wiper motor according to claim 1, wherein the second latching element in the cross section is configured so as to be wedge-shaped and has a ramp which runs perpendicular to the joining direction, the depth of said ramp increasing when viewed in the joining direction.
7. A method for assembling a wiper motor which is configured according to claim 1, the method comprising: positioning the gearbox cover in relation to the main body in such a manner that the first and the second latching elements, when viewed in the joining direction, are mutually aligned; moving the gearbox cover and the main body relative to one another in the joining direction until the latching connections between the gearbox cover and the main body are configured; and exerting in the direction of the main body a force that is aligned perpendicular to the joining direction on the first latching elements during the joining procedure or upon achieving an axial terminal position of the gearbox cover in relation to the main body.
8. The method according to claim 7, wherein the force is exerted on the first latching elements in the region of the ramp.
9. The method according to claim 7, wherein the force is applied by an assembly tool which is configured so as to be movable parallel to the joining direction.
10. An assembly tool, configured for applying the force according to claim 7.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016]
[0017]
[0018]
[0019]
[0020]
EMBODIMENTS OF THE INVENTION
[0021] Identical elements or elements having an identical function are denoted by the same reference numbers in the figures.
[0022] An assembling process in the case of a wiper motor 10a according to the prior art will first be discussed on the basis of
[0023] In the joined state of the gearbox housing 12, in which the gearbox cover 22a has reached the axial terminal position thereof in relation to the main body 16, in an exemplary manner a plurality of, for example three or four, latching connections 26 are configured between the gearbox cover 22a and the main body 26, one of said latching connections 26 being visible in
[0024] The second latching element 30 in the cross section is configured so as to be wedge-shaped and has a width which in the joined state permits that the second latching element 30 is received within a rectangular clearance 40 that on the first latching element 28a is delimited by the two webs 32, 33.
[0025] In the joining procedure of the gearbox housing 12, the gearbox cover 22a is moved in relation to the main body 16, for example. The blocking portions 34 here come into contact with the second latching elements 30 (configured so as to be wedge-shaped), wherein the first latching elements 28a are moved away from the main body 16 in that the first latching elements 28a are elastically deformed. Having crossed the second latching elements 30, the blocking portion 34 snaps back in the direction of the main body 16 such that the latching connections 26 are configured in the axial terminal position of the gearbox cover 22a in relation to the main body 16. In order to ensure that the latching connections 26 have actually been configured, i.e. that the blocking faces 36 of the first latching elements 28a interact with the mating faces 38 on the second latching elements 30, a force running in the direction of the arrow 42 is subsequently exerted on the first latching elements 28a by means of an assembly tool not illustrated. The direction of the arrow 42 here runs perpendicular to the joining direction 24.
[0026] As can be seen in particular by means of the illustration of
[0027] Illustrated in
[0028] It is additionally explained that the gearbox cover 22 has a separation plane 53 (
[0029] The second latching element 30 according to the prior art is configured so as to be wedge-shaped in such a manner that the depth of said second latching element 30 increases when viewed in the joining direction 24, and wherein the second latching element 30 has a mating face 38 that interacts with the blocking face 59.
[0030] As can be particularly clearly seen by means of
[0031] It can furthermore be particularly clearly seen by means of
[0032] The wiper motor 10a described to this extent can be altered or modified in a wide variety of ways without departing from the concept of the invention. It is pointed out in particular that the assembling or joining direction 24, respectively, relates to the case in which the gearbox cover 22, 22a is moved in the direction towards the main body 16 of the gearbox housing 12. Of course, it is also conceivable that the main body 16 instead is moved in the direction towards the gearbox cover 22, 22a, or that both mentioned parts are simultaneously converged.
LIST OF REFERENCE SIGNS
[0033] 10 Wiper motor [0034] 10a Wiper motor [0035] 12 Gearbox housing [0036] 14 Motor housing [0037] 16 Main body [0038] 18 Receptacle space [0039] 20 Gearbox [0040] 21 Opening [0041] 22 Gearbox cover [0042] 22a Gearbox cover [0043] 24 Joining direction [0044] 26 Latching connection [0045] 28a First latching element [0046] 30 Second latching element [0047] 32 Web [0048] 33 Web [0049] 34 Blocking portion [0050] 36 Blocking face [0051] 38 Mating face [0052] 40 Clearance [0053] 42 Arrow [0054] 44 Plane [0055] 46 Undercut [0056] 48 Portion [0057] 50 Web [0058] 51 Web [0059] 52 Connection point [0060] 53 Separation plane [0061] 54 Blocking portion [0062] 55 Lower edge [0063] 56 Clearance [0064] 58 Ramp [0065] 59 Blocking face [0066] 61 Rear side [0067] 62 Plane [0068] 100 Assembly tool [0069] 102 bearing face [0070] K Force [0071] t Depth