Transmission drive unit of a seat adjusting device
10190664 ยท 2019-01-29
Assignee
Inventors
- Markus Riedinger (Lichtenau-Ulm, DE)
- Andreas Stock (Karlsruhe, DE)
- Gilles Peter (Morsbronn les Bains, FR)
- Christof Angerer (Lauf, DE)
- Allan Dassaev Cadena Lopez (Toluca, MX)
- Luis Angel Ramirez Ortiz (Toluca, MX)
Cpc classification
B60N2/02253
PERFORMING OPERATIONS; TRANSPORTING
F16H25/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2025/2084
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2025/2031
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60N2/166
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60N2/02
PERFORMING OPERATIONS; TRANSPORTING
F16H25/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A transmission drive unit of a seat adjusting device, comprising an electrical drive motor (2), a spindle drive (3) comprising a spindle (30) which is able to be driven by the drive motor (2), a nut (31) which is connected to a first seat component, and a housing (4), wherein the housing (4) is produced from a plastic material, the housing (4) comprises a first interface (5) for attaching to a second seat component, and the housing (4) comprises a first bearing surface (7) for bearing the spindle (30) of the spindle drive (3).
Claims
1. A transmission drive unit (1) of a seat adjusting device comprising: an electrical drive motor (2), a spindle drive (3) comprising a spindle (30) which is configured to be driven by the drive motor (2) and a nut (31) which is connected to a first seat component, a housing (4), wherein the housing (4) is produced from a plastic material, the housing (4) including a first interface (5) configured to be attached to a second seat component, wherein the first interface (5) includes a through-hole extending through the plastic housing (4) and configured to receive a hinge pin, and the housing (4) further includes a first bearing surface (7) bearing the spindle (30) of the spindle drive (3), and a metallic reinforcing element (13) arranged on an outer face of the housing (4) and extending partially around the first interface (5).
2. The unit according to claim 1, further comprising a second bearing surface (22) on the housing (4), said second bearing surface bearing an output shaft (21) of the drive motor (2).
3. The unit according to claim 1, further comprising a cover (40) closing the housing (4), wherein the cover (40) is produced from plastic.
4. The unit according to claim 3, characterized in that the cover (40) is fixed to the housing (4) by a first metal screw bolt (11) and a second metal screw bolt (12), wherein a longitudinal axis of the spindle (30) intersects in a perpendicular manner a plane (E) in which the first and second screw bolts (11, 12) are located.
5. The unit according to claim 4, characterized in that the first and second screw bolts (11, 12) extend over an entire width (B) of the housing (4).
6. The unit according to claim 4, characterized in that the first and second screw bolts (11, 12) are arranged relative to an axial direction (X-X) of the spindle (30) between a first spindle end (32) and the first bearing surface (7) on the housing (4).
7. The unit according to claim 4, further comprising a worm gear-axial stop (81) which is arranged on the spindle (30), wherein the spindle (30) extends along a first, axial direction (X-X), wherein the worm gear-axial stop (81) extends along a second direction that is perpendicular to the axial direction (X-X), wherein the worm gear-axial stop (81) extends a distance along the second direction that is greater than a distance between the first and second screw bolts along the second direction, such that the worm gear-axial stop (81) at least partially covers the first and second screw bolts along the first, axial direction (X-X).
8. The unit according to claim 4, further comprising a worm gear-axial stop (81) which is arranged on the spindle (30), wherein a complete covering is present relative to an axial direction (X-X) between the first and second screw bolts and the worm gear-axial stop (81).
9. The unit according to claim 8, further comprising a reinforcing element (13) made of metal arranged on an outer face of the housing (4).
10. The unit according to claim 9, characterized in that a transition fit or a clearance fit is formed between the reinforcing element (13) and the housing (4).
11. The unit according to claim 9, characterized in that the reinforcing element (13) is substantially C-shaped, with a first end region (18) and a second end region (19), wherein the first and second screw bolts (11, 12) connect the first and second end regions (18, 19) together.
12. The unit according to claim 9, further comprising a disk-shaped support component (27) made of metal, which together with the reinforcing element (13) encloses the housing (9).
13. The unit according to claim 12, characterized in that the disk-shaped support element (27) has a spring region (28).
14. The unit according to claim 12, characterized in that the reinforcing element (13) and the disk-shaped support component (27) are connected by screw bolts (29) extending in an axial direction (X-X) of the spindle, wherein the spindle extends through the disk-shaped support element (27) and the worm gear-axial stop (81) is arranged inside the disk-shaped support component (27) and the reinforcing element (13).
15. The unit according to claim 1, characterized in that a transition fit or a clearance fit is formed between the reinforcing element (13) and the housing (4).
16. The unit according to claim 1, characterized in that the reinforcing element (13) is substantially C-shaped, with a first end region (18) and a second end region (19), wherein first and second screw bolts (11, 12) connect the first and second end regions (18, 19) together.
17. The unit according to claim 1, further comprising a disk-shaped support component (27) which together with the reinforcing element (13) encloses the housing (9).
18. The unit according to claim 17, characterized in that the disk-shaped support element (27) has a spring region (28).
19. The unit according to claim 17, characterized in that the reinforcing element (13) and the disk-shaped support component (27) are connected by screw bolts (29) extending in an axial direction (X-X) of the spindle, wherein the spindle extends through the disk-shaped support element (27).
20. A transmission drive unit (1) of a seat adjusting device comprising: an electrical drive motor (2), a spindle drive (3) comprising a spindle (30) which is configured to be driven by the drive motor (2) and a nut (31) which is connected to a first seat component, a housing (4), wherein the housing (4) is produced from a plastic material, the housing (4) including a first interface (5) configured to be attached to a second seat component, and the housing (4) including first bearing surface (7) bearing the spindle (30) of the spindle drive (3), a cover (40) closing the housing (4), wherein the cover (40) is produced from plastic, wherein the cover (40) is fixed to the housing (4) by a first metal screw bolt (11) and a second metal screw bolt (12), wherein a longitudinal axis of the spindle (30) intersects in a perpendicular manner a plane (E) in which the first and second screw bolts (11, 12) are located, and a worm gear-axial stop (81) which is arranged on the spindle (30), wherein the spindle (30) extends along a first, axial direction (X-X), wherein the worm gear-axial stop (81) extends along a second direction that is perpendicular to the axial direction (X-X), wherein the worm gear-axial stop (81) extends a distance along the second direction that is greater than a distance between the first and second screw bolts along the second direction, such that the worm gear-axial stop (81) at least partially covers the first and second screw bolts along the first, axial direction (X-X).
21. A transmission drive unit (1) of a seat adjusting device comprising: an electrical drive motor (2), a spindle drive (3) comprising a spindle (30) which is configured to be driven by the drive motor (2) and a nut (31) which is connected to a first seat component, a housing (4), wherein the housing (4) is produced from a plastic material, the housing (4) including a first interface (5) configured to be attached to a second seat component, and the housing (4) including first bearing surface (7) bearing the spindle (30) of the spindle drive (3), and a reinforcing element (13) arranged on an outer face of the housing (4), wherein the reinforcing element (13) is substantially C-shaped, with a first end region (18) and a second end region (19), wherein first and second screw bolts (11, 12) connect the first and second end regions (18, 19) together.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) A preferred exemplary embodiment of the invention is described in detail hereinafter with reference to the accompanying drawings, in which:
(2)
(3)
(4)
(5)
(6)
DETAILED DESCRIPTION
(7) With reference to
(8) As visible from
(9) The transmission drive unit 1 further comprises a housing 4 produced from plastics. The housing 4 comprises a connecting region 41 on which the drive motor 2 is arranged. The housing further comprises a first bearing surface 7 which serves for mounting the spindle 30. The spindle 30 comprises in this case a bearing element 8 which is preferably also produced from plastics. Furthermore, the transmission drive unit 1 comprises a second bearing surface 22 which serves for bearing the output shaft 21 of the drive motor 2. The housing 4 further comprises a first customer interface 5 which, for example, is configured as a through-hole in the plastics housing 4, said through-hole being able to receive an hinge pin in a rotatable manner.
(10) A cover 40 produced from plastics is further provided. The cover 40 is preferably produced from the same plastics as the housing 4. The cover 40 is fixed by means of a first metal screw bolt 11 and a second metal screw bolt 12 on the one-piece housing 4.
(11) As visible from
(12) The two screw bolts 11, 12 are located in a common plane E which is located approximately perpendicular to the axial direction X-X of the spindle 30.
(13) As visible from
(14) At the other free end 33 of the spindle 30, the nut 31 is mounted on a third bearing surface 91 on a connecting component 9, which forms a second bearing of the spindle 30. The connecting component 9 comprises a second interface 6 for connecting to a seat of a vehicle.
(15) The reinforcing element 13 encloses the housing 4 by means of a transition fit or by means of a clearance fit so that no forces may be exerted on the housing 4 by the reinforcing element 13 itself. As a result, no pressure is exerted on the bearing points and thus jamming of the worm gear 32 is prevented. By the provision of the four openings 14, 15, 16, 17, the reinforcing element 13 may be fixed transversely to the longitudinal axis X-X of the spindle 30 on the housing 4.
(16) The screw bolts 11, 12 may also be designed such that they are provided as self-tapping screws in order to cut a thread in the reinforcing element 13 during mounting. In addition, the thread may alternatively already be present in the reinforcing element.
(17) Moreover, an increase in strength may be achieved by the immediately adjacent arrangement of the two screw bolts 11, 12 relative to the first bearing surface 7.
(18) According to the invention, therefore, operating forces and crash forces occurring in the event of an accident may be conducted via a customer bolt (not shown), which is inserted in the first interface 5, from the plastics housing 4 via the reinforcing element 13 and the bolt 11, 12 onto the spindle 30 and via the nut 31 into the connecting component 9 and from there back into the seat structure.
(19) Moreover, the housing 4 produced from plastics ensures that noise is not transmitted from the drive motor 2 into the seat.
(20) Moreover, according to the invention, by the use of the plastics housing 4 the number of different parts may be reduced in comparison with the prior art, thus also resulting in a cost reduction. For the first customer interface 5, the plastics housing 4 may simply be varied, wherein for the reinforcing cage the same reinforcing element 13 is always able to be used with the corresponding screw bolts 11, 12, 29. Moreover, the transmission drive unit 1 according to the invention has increased robustness in terms of production technology. This also results in a simpler construction and simplified production and mounting.
(21) With reference to
(22) In contrast to the first exemplary embodiment in the second exemplary embodiment, the cover 40 which closes the housing produced from plastics 4 is fixed by means of a cage arrangement, comprising the reinforcing element 13, a disk-shaped support component 27 and a plurality of screw bolts 29. The cage in this case is arranged in the axial direction X-X such that forces which occur in the axial direction X-X are absorbed. Moreover, a spring region 28 is provided on the disk-shaped support element 27, said spring region in this exemplary embodiment being configured as a bead. The disk-shaped support component 27 is designed to be U-shaped and the spindle is guided through the disk-shaped support component 27 (see
(23) According to the invention, therefore, the functional regions for the transmission of force in normal operation may be separated from the regions which in the case of an accident absorb forces. As a result, the respective components may be optimally designed for the respective function thereof.