MOTOR VEHICLE ACTUATOR, IN PARTICULAR BRAKE ACTUATOR

20170335910 · 2017-11-23

Assignee

Inventors

Cpc classification

International classification

Abstract

The invention relates to a motor vehicle actuator, in particular a brake actuator, comprising a housing (3) which consists of a housing container (1) and a housing cover (2) designed as a base support, and in which an electric motor (4) and a transmission (6) coupled to the electric motor via a torque transmitting device (5) are arranged. A retaining frame which can be arranged on the housing cover (2) is provided in order to arrange the electric motor (4) within the housing (3). The invention is characterized in that the holding frame (7) is designed as a damping and/or spring device.

Claims

1. A motor vehicle actuator, comprising: a housing (3) which comprises a container (1); a housing cover (2) configured as a base support; an electric motor (4) and a transmission (6) coupled to the electric motor (4) via a torque transmitting device (5), said electric motor (4), transmission (6) and torque transmitting device (5) installed inside the housing (3); and a holding frame (7) adapted for arrangement on the housing cover (2) that supports the electric motor (4) inside the housing (3), said holding frame (7) having a base frame (8) onto which at least one damping and/or cushioning element or spring device (9) is shaped with said at least one damping and/or cushioning means or spring device configured as a single piece with the base frame (8).

2. The motor vehicle actuator according to claim 1, wherein the at least one damping and/or cushioning element or spring device (9) is a spring tongue.

3. The motor vehicle actuator according to claim 1, wherein the holding frame (7) has a holding means (10) with a contact surface (11) and the electric motor (4) has a corresponding contact surface (12) adapted for contact with the contact surface (11).

4. The motor vehicle actuator according to claim 3, further comprising a support (18) extending from the holding means (10) and adapted to rest directly on the housing cover (2).

5. The motor vehicle actuator according to claim 3, wherein the holding means (10) has fixation elements (13) which, in the assembled position, correspond to counter-fixation elements (14) of the electric motor (4).

6. The motor vehicle actuator according to claim 3, wherein the holding means (10) defines an opening (15) adapted to insertably receive a drive shaft (16) of the electric motor (4), together with a driving gear wheel (17) arranged on said electric motor (4).

7. The motor vehicle actuator according to claim 1, wherein the transmission (6) is configured as a planetary gear train.

8. The motor vehicle actuator according to claim 1, wherein the torque transmitting device (5) is configured as a double gear wheel.

9. The motor vehicle actuator according to claim 8, wherein the housing cover (2) has shoulders (19) on which the damping and/or cushioning elements or spring device (9) are supported, so that the base frame (8) is arranged in such a manner that it is contact-free above the torque transmitting device (5), which is configured as a double gear wheel.

10. The motor vehicle actuator according to claim 8, wherein the double gear wheel is operatively connected, on the one hand, to a driving gear wheel (17) of the electric motor (4) and, on the other hand, to a spur gear (20) that is arranged on the drive shaft of the transmission (6).

11. A brake actuator, comprising: a housing which comprises a container; a housing cover configured as a base support; an electric motor and a transmission coupled to the electric motor via a torque transmitting device, said electric motor, transmission and torque transmitting device installed inside the housing; and a holding frame adapted for arrangement on the housing cover that supports the electric motor inside the housing, said holding frame having a base frame onto which at least one damping and/or cushioning element or spring device is shaped, with said at least one damping and/or cushioning means or spring device configured as a single piece with the base frame.

12. The brake actuator according to claim 11, wherein the at least one damping and/or cushioning element or spring device is a spring tongue.

13. The brake actuator according to claim 11, wherein the holding frame has a holding means with a contact surface, and the electric motor has a corresponding contact surface adapted for contact with the contact surface of the holding means.

14. The brake actuator according to claim 13, further comprising a support extending from the holding means and adapted to rest directly on the housing cover.

15. The brake actuator according to claim 13, wherein the holding means has fixation elements which, in the assembled position, correspond to counter-fixation elements of the electric motor.

16. The brake actuator according to claim 13, wherein the holding means defines an opening adapted to insertably receive a drive shaft of the electric motor, together with a driving gear wheel arranged on said electric motor.

17. The brake actuator according to claim 11, wherein the transmission is configured as a planetary gear train.

18. The brake actuator according to claim 11, wherein the torque transmitting device (5) is configured as a double gear wheel.

19. The brake actuator according to claim 18, wherein the housing cover has shoulders on which the damping and/or cushioning elements or spring device are supported, so that the base frame is arranged in such a manner that it is contact-free above the torque transmitting device, which is configured as a double gear wheel.

20. The brake actuator according to claim 18, wherein the double gear wheel is operatively connected, on the one hand, to a driving gear wheel of the electric motor and, on the other hand, to a spur gear that is arranged on the drive shaft of the transmission.

Description

DESCRIPTION OF THE DRAWINGS

[0019] The figures show the following:

[0020] FIG. 1 an embodiment of a motor vehicle actuator according to the invention, in an exploded view,

[0021] FIG. 2 the motor vehicle actuator according to FIG. 4, in a cross sectional view,

[0022] FIG. 3 a detailed view of FIG. 1 in the area of the holding frame, and

[0023] FIG. 4 the housing cover of the embodiment of FIGS. 1 and 2, with components already arranged in it.

DETAILED DESCRIPTION

[0024] The figures show an embodiment of a motor vehicle actuator according to the invention, which is configured here as a brake actuator.

[0025] The individual elements or components of the motor vehicle actuator can be seen in the exploded view of FIG. 1. Essentially, the housing 3 consists of the housing cover 2 and of the container 1 with the further components of the motor vehicle actuator which are arranged in the housing 3 and which are described below.

[0026] A torque transmitting device 5 is arranged on the base support 2 on a bearing 25 and in this case, the torque transmitting device 5 is configured as a double gear wheel. Here, a holding frame 7 is arranged above this torque transmitting device 5. This holding frame 7 consists essentially of a holding means 10 with the base frame 8 arranged on it, whereby the base frame 8 is configured to be arranged above the torque transmitting device 5, while the holding means 10 is arranged below the electric motor 4.

[0027] The holding means 10 has an opening 15 through which a drive shaft 16 of the electric motor 4 with a driving gear wheel 17 arranged on said electric motor 4 can be inserted. Moreover, the holding means 10 has a support 18 that faces the housing cover 2 and that, when in the mounted state, rests on the housing cover 2 while being held in a support receptacle 24. Damping and/or cushioning elements 9 are shaped onto the base frame 8 of the holding frame 7. Moreover, the holding means 10 has a contact surface 11 onto which the electric motor 4 having a contact surface 12 can be placed.

[0028] In order for the electric motor 4 to be affixed relative to the holding frame 7 so that it cannot shift or rotate, there are fixation elements 13 that are shaped onto the holding frame 7 or onto the holding means 10 and that appropriately correspond to counter-fixation elements 14 of the electric motor 4, so that they preferably engage with each other with a positive fit, thereby preventing any rotation or shifting of the electric motor 4 on the holding frame 7.

[0029] All of the above-mentioned individual components of the holding frame 7 are configured as a single piece with said holding frame 7. In other words, the holding frame 7 is configured as a single piece comprising the base frame 8, the damping and/or cushioning elements 9, the holding frame 10 with the contact surface 11 and the fixation elements 13 as well as the support 18, and it is preferably produced as a plastic injection-molded component.

[0030] As can be seen especially in FIG. 2, the electric motor 4 is separated towards the top vis-à-vis the container 1 of the housing by an in-between insulator 21. This insulator 21 serves essentially to damp or cushion vibrations and movements between the housing container 1 and the electric motor 4. The other end of the electric motor 4 rests with its contact surface 12 on the placement or contact surface 11 of the holding means 10 of the holding frame 7. With its drive shaft 16 and the driving gear wheel 17 arranged on it, the motor runs through the opening 15 of the holding means 10, and its driving gear wheel 17 meshes with the torque transmitting device 5 that is configured as a double gear wheel. The torque transmitting device 5 is supported on a bearing 25 and, in turn, it also meshes with a spur gear 20 that is likewise arranged on the housing cover 2 on another bearing 26. This spur gear 20 is operatively connected to the drive shaft of the transmission 6 which, in this case, is configured as a planetary gear train. By means of the driven shaft of this transmission (not indicated in greater detail in the figures), the motor vehicle actuator can execute the desired movements.

[0031] FIGS. 3 and 4 show a more detailed view of the holding frame 7, which is essential to the invention.

[0032] In this context, FIG. 3 shows the holding frame 7 of FIG. 1 in an enlarged view. The individual elements can be seen especially clearly here, particularly, the way in which the damping and/or cushioning elements or spring devices 9 as well as the holding means 10 are shaped onto the base frame 8 of the holding frame 7. It is possible to clearly see the support 18 arranged on the holding means 10 as well as a fixation element 13 that interacts with a counter-fixation element 14 of the electric motor 4 (not shown here).

[0033] FIG. 4 shows how this holding frame 7 is mounted in the housing cover 2 that is configured as a base support. Here, the spur gear 20 is also already arranged in the housing cover 2, and said spur gear 20 is operatively connected, on the one hand, to the drive shaft of the transmission 6 and, on the other hand, also to the torque transmitting device 5, whereby, in this case, the torque transmitting device 5 is configured as a double gear wheel, and in the depiction of FIG. 4, it is likewise already mounted in the housing cover 2 that is configured as a base support. In the depiction of FIG. 4, the holding frame 7 has already been placed onto this torque transmitting device 5, whereby, however, said holding frame 7 is not in contact with the torque transmitting device 5. The holding frame 7 with its base frame 8 is arranged above the torque transmitting device 5, but it is held at a distance from the torque transmitting device 5 by means of the damping and/or cushioning elements or spring devices 9 that are supported on the shoulders 19 of the housing cover 2. Here, the support 18 of the holding means 10 of the holding frame 7 is already accommodated in the support receptacle 24 of the housing cover 2 so that the entire holding frame 7 is firmly affixed in the housing cover 2. The support 18 is in contact with the bottom of the housing cover 2 so that the housing cover 2 is in direct contact with the support 18.

[0034] In the depiction according to FIG. 4, it is also possible to see the driving gear wheel 17 which has been placed onto the drive shaft 16 of the electric motor 4. However, a depiction of the electric motor 4 was dispensed with here so that the individual functional elements of the holding frame 7 can be seen more clearly.

[0035] After the motor vehicle actuator according to FIG. 4 has been pre-mounted, the electric motor 4 with its placement or contact surface 12 still has to be placed onto the placement or contact surface 11 of the holding means 10 of the holding frame 7. In order to secure the electric motor 4 against rotating, fixation elements 13 are provided on the holding means 10 and they preferably interact with the counter-fixation elements 14 of the electric motor so as to create a positive fit.

[0036] After the electric motor 4 has then been placed onto the holding means 10 of the holding frame 7, in the final step, the housing container 1 can be placed onto the housing cover 2 and the entire housing 3 can be closed. Owing to the damping and/or cushioning elements or spring devices 9 of the holding frame 7, which are supported on the shoulders 19 of the housing cover 2, movements and vibrations of the electric motor 4 inside the housing 3 can be absorbed, that is to say, cushioned and/or damped. As a result, no noise is generated by such movements and vibrations of the electric motor 4, whereby the base frame 8 of the holding frame 7 is always held at a distance from the torque transmitting device 5.

[0037] Consequently, during the entire operation of this motor vehicle actuator, it is ensured that the generation of noise is countered by the cushioning and damping properties of the holding frame 7.

LIST OF REFERENCE NUMERALS

[0038] 1 container [0039] 2 housing cover [0040] 3 housing [0041] 4 electric motor [0042] 5 torque transmitting device [0043] 6 transmission [0044] 7 holding frame [0045] 8 base frame [0046] 9 damping and/or cushioning element or spring device [0047] 10 holding means [0048] 11 placement surface [0049] 12 contact surface [0050] 13 fixation element [0051] 14 counter-fixation element [0052] 15 opening [0053] 16 drive shaft [0054] 17 driving gear wheel [0055] 18 support [0056] 19 shoulder [0057] 20 spur gear [0058] 21 insulator [0059] 22 plug [0060] 23 electric connection [0061] 24 support receptacle [0062] 25 bearing [0063] 26 bearing