BRAKE SYSTEM HAVING MULTIPLE PRESSURE PISTONS FOR AN ELECTRIC WHEEL DRIVE UNIT, AND WHEEL DRIVE UNIT
20220025944 · 2022-01-27
Assignee
Inventors
- Doris Maria WIMMER (Ottenhöfen, DE)
- Simon Ortmann (Baden-Baden, DE)
- Philippe WAGNER (Souffelweyersheim, FR)
Cpc classification
F16D2065/785
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D55/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2127/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D65/186
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60K2007/0092
PERFORMING OPERATIONS; TRANSPORTING
B60B27/0052
PERFORMING OPERATIONS; TRANSPORTING
F16D2121/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16D55/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60K7/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A brake system for an electric wheel drive unit has a housing that can be attached securely to the vehicle frame. The housing has a flange region and a shaft-like wheel carrier region secured to the flange region. A first brake component is connected to the housing and includes a first support part attached directly on a radial outer side of the wheel carrier region and a first brake disc element rotationally fixed to the first support part. A second brake component is rotatably mounted relative to the housing and has a second support part and a second brake disc element rotationally fixed to the second support part. A hydraulic actuation device is provided with one or more pressure pistons arranged. A sliding element is provided for moveably coupling the pressure pistons with one of the brake disc elements.
Claims
1. A brake system for an electric wheel drive unit, comprising: a housing configured to be secured to a vehicle frame, which housing has a flange region and a shaft-like wheel carrier region secured to the flange region, a first brake component connected to the housing, the first brake component having a first support part attached directly to a radial outer side of the wheel carrier region and a first brake disc element rotationally fixed to the first support part, a second brake component rotatably mounted relative to the housing, the second brake component having a second support part and a second brake disc element which is rotationally fixed to the second support part, and which is designed and arranged for frictional connection with the first brake disc element, and a hydraulic actuating device provided with at least one or more pressure pistons, the actuating device being arranged such that the pressure pistons are arranged in a radial direction of an axis of rotation of the second brake component within the brake disc elements and a sliding element moveably coupling the one or more pressure pistons with one of the brake disc elements is arranged at a distance from the first support part both in the radial direction and in an axial direction of the axis of rotation.
2. The brake system according to claim 1, wherein a plurality of first brake disc elements and/or second brake disc elements are provided which are moveable relative to one another.
3. The brake system according to claim 1, wherein a counterpressure plate is arranged on an axial side of the brake disc elements facing away from the sliding element and the counterpressure plate is secured directly on the outer side of the wheel carrier region.
4. The brake system according to claim 3, wherein the counterpressure plate is fixed in the axial direction by a nut screwed onto the wheel carrier region.
5. The brake system according to claim 3, wherein the counterpressure plate is axially supported on the first support part.
6. The brake system according to claim 1, wherein a cylinder housing receiving the one or more pressure pistons is directly secured to the flange region.
7. The brake system according to claim 1, wherein a biasing spring pushing the sliding element away from the brake disc elements is inserted axially between the sliding element and the first support part.
8. The brake system according to claim 1, wherein the first brake disc element or the second brake disc element is provided with a friction lining.
9. The brake system according to claim 1, wherein a heat protection shield is attached to a housing radially outside the brake disc elements.
10. An electric wheel drive unit for an electric vehicle, comprising a wheel rim, an electric motor housed in the wheel rim and a brake system according to claim 1, wherein the second brake component is directly or indirectly rotatably coupled to the wheel rim.
11. A brake system for an electric wheel drive unit, comprising: a housing including a flange region extending in a radial direction and a shaft-like wheel carrier region extending in an axial direction fixedly connected to the flange region; a first brake component connected to the housing, the first brake component having a first support part attached directly to a radial outer side of the wheel carrier region and a first brake disc element rotationally fixed to the first support part; a second brake component rotatably mounted relative to the housing, the second brake component having a second support part and a second brake disc element rotationally fixed to the second support part; a hydraulic actuating device having at least one or more pressure pistons and a sliding element moveably coupling the one or more pressure pistons with one of the brake disc elements; and a counterpressure plate secured directly on the radial outer side of the wheel carrier region.
12. The brake system according to claim 11, wherein the counterpressure is fixed in the axial direction by a nut screwed onto the wheel carrier region.
13. The brake system according to claim 11, wherein the first support part is fixed between the counterpressure plate and a radial shoulder of the wheel carrier region.
14. The brake system according to claim 11, further comprising a biasing spring arranged axially between the sliding element and the first support part.
15. The brake system according to claim 14, further comprising a heat protection shield arranged radially outside of the first brake component and the second brake component.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0022] The disclosure will now be explained in more detail below with reference to figures, in which context various exemplary embodiments are also shown in principle.
[0023] In the drawings:
[0024]
[0025]
[0026]
[0027] The figures are only schematic in nature and serve only for understanding the disclosure. The same elements are provided with the same reference numbers.
DETAILED DESCRIPTION
[0028] In
[0029] The direction designations axial, radial and in the circumferential direction in the following relate to a central axis of rotation 14 of the wheel rim 22/of a second brake component 6b of the brake system 1. Consequently, an axial direction is a direction along the axis of rotation 14, a radial direction is a direction perpendicular to the axis of rotation 14 and a circumferential direction is a circular line that runs concentrically around the axis of rotation 14.
[0030] Returning to
[0031] In the receiving space 24, a first brake component 6a is fixed to the housing, i.e., can be attached rigidly to the housing 3 and thus to the vehicle frame to during operation. The second brake component 6b interacts with the first brake component 6a, which is rotationally coupled to the wheel rim 22 during operation and is frictionally connected to the first brake component 6a to brake the wheel rim 22 in a braking state of the wheel drive unit 2.
[0032] The two brake components 6a, 6b each have a support part 8, 10 and at least one brake disc element 9, 11, which is connected to the respective support part 8, 10. Accordingly, the first brake component 6a has a first support part 8, which is also referred to as an inner carrier/inner-plate carrier. This first support part 8 is directly attached with the radial inner side thereof to a radial outer side 7 of the wheel carrier region 5. For this purpose, a toothing 26 designed as a plug-in toothing is preferably used, which connects the two components—wheel carrier region 5 and first support part 8—with one another in a form-fitting manner in the direction of rotation. On a side facing radially away from the toothing 26, the first support part 8 forms a sleeve region 27 on which two first brake disc elements 9 are housed so as to be moveable relative to one another, but in a rotationally fixed manner The two first brake disc elements 9 are designed to be essentially plate-like. The two first brake disc elements 9 have a disc-shaped steel support/steel body 28 as well as a friction lining 20 arranged towards a second brake disc element 11 of the second brake component 6b. The second brake disc element 11 is arranged between the two first brake disc elements 9, seen in the axial direction along the axis of rotation 14. The second brake disc element 11 is received on a second support part 10 of the second brake component 6b, designed as an outer carrier/outer plate carrier, in a rotationally fixed manner, but moveable in the axial direction.
[0033] The second brake component 6b is typically mounted so as to be rotatable relative to the housing 3. As can be seen schematically in
[0034] A hydraulic actuating device 13 is typically provided for actuating the brake system 1, i.e., for frictional connection of the first and second brake components 6a, 6b to one another. This hydraulic actuating device 13 has a cylinder housing 18 which is secured to the flange region 4. The cylinder housing 18 is arranged outside of the wheel carrier region 5 in the radial direction. The cylinder housing 18 is also arranged in the radial direction inside the brake disc elements 9, 11. A plurality of pressure pistons 12 of the actuating device 13, which are arranged in a distributed manner in the circumferential direction, are moveably received in the cylinder housing 18 so as to be moveable in the axial direction, as can also be seen in
[0035] According to the disclosure, the sliding element 15 is arranged along the course thereof in a through-passage-free manner to the first support part 8 and is consequently arranged via the extension thereof in the longitudinal section at a distance from the first support part 8 in the axial direction and in the radial direction as seen according to
[0036] The sliding element 15 extends from an end on the pressure piston side in the radial direction outward and is arranged with a radially outer end in the radial direction at the same height as the brake disc elements 9, 11. The sliding element 15 is thus shaped in such a way that, during operation, it transmits a braking force generated by hydraulic pressure to the pressure piston 12 on a brake disc element arranged at the end from the assembly of first and second brake disc elements 9, 11, here one of the first brake disc elements 9. When the actuating device 13 is activated, hydraulic pressure is applied to a pressure chamber 31 formed between the cylinder housing 18 and the pressure piston 12 (sealed with a seal 36) so that the pressure pistons 12 extend in the axial direction. As a result, the sliding element 15 is pressed against the brake disc elements 9, 11 and these come into frictional contact with one another.
[0037] To support the braking force/actuation force generated by the actuating device 13, a counterpressure plate 16 is provided on a side axially facing away from the sliding element 15 in relation to the assembly of the first and second brake disc elements 9, 11. The counterpressure plate 16 is arranged on a side of the first support part 8 axially facing away from the pressure piston 12. It can be seen here that the radial inside of the counterpressure plate 16 is also fixed on the outer side 7 of the wheel carrier region 5. In this embodiment, a nut 17, which is screwed onto an (external) thread 32 of the wheel carrier region 5, serves to axially fix the counterpressure plate 16. The counterpressure plate 16 is thus fixed in the axial direction between the first electric machine 8 and the nut 17. Furthermore, the first support part 8 is fixed between the counterpressure plate 16 and a radial shoulder 33 of the wheel carrier region 5.
[0038] It can also be clearly seen in
[0039] A biasing spring 19 is provided to support the actuating device 13 in an initial position, which corresponds to an open position of the brake system 1. In this embodiment, the biasing spring 19 is directly arranged axially between the sliding element 15 and the first support part 8 and radially inside the brake disc elements 9, 11.
[0040] For the sake of completeness, it should also be noted that the brake disc elements 9, 11 can also be implemented in the opposite manner Accordingly, it is in principle also possible to provide not the first brake disc elements 9, but rather the second brake disc element 11 with a friction lining 20 facing the respective first brake disc element 9.
[0041] In other words, the arrangement according to the disclosure is characterized in that the inner plate carrier 8 (with the help of a soothing 26 (or similar)) and the pressure plate 16 are attached directly to the wheel carrier 5, while the actuating housing (cylinder housing 18) and the actuating elements (sliding element 15, pressure piston 12, and seal 36) are secured to the wheel carrier flange 4. As can be seen in
LIST OF REFERENCE NUMBERS
[0042] 1 Brake system [0043] 2 Wheel drive unit [0044] 3 Housing [0045] 4 Flange region [0046] 5 Wheel carrier region [0047] 6a First brake component [0048] 6b Second brake component [0049] 7 Outer side [0050] 8 First support part [0051] 9 First brake disc element [0052] 10 Second support part [0053] 11 Second brake disc element [0054] 12 Pressure piston [0055] 13 Actuating device [0056] 14 Axis of rotation [0057] 15 Sliding element [0058] 16 Counterpressure plate [0059] 17 Nut [0060] 18 Cylinder housing [0061] 19 Biasing spring [0062] 20 Friction lining [0063] 21 Heat protection shield [0064] 22 Wheel rim [0065] 23 Electric motor [0066] 24 Receiving space [0067] 25 Main housing part [0068] 26 Toothing [0069] 27 Sleeve region [0070] 28 Steel body [0071] 29 Planetary gear [0072] 30 Sun gear [0073] 31 Pressure chamber [0074] 32 Thread [0075] 33 Shoulder [0076] 34 Cooling device [0077] 35 Bearing [0078] 36 Seal