ELECTROMECHANICALLY DRIVABLE BRAKE PRESSURE GENERATOR FOR A HYDRAULIC BRAKING SYSTEM OF A VEHICLE AND VEHICLE INCLUDING AN ELECTROMECHANICAL BRAKE PRESSURE GENERATOR
20200339089 ยท 2020-10-29
Inventors
Cpc classification
F15B2015/206
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60T13/745
PERFORMING OPERATIONS; TRANSPORTING
F15B2211/526
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
An electromechanically drivable brake pressure generator for a hydraulic braking system of a vehicle, including an electric motor unit, which is activatable with the aid of an electronic control unit in accordance with a brake pressure to be applied and whose rotary motion generated thereby is converted by a reducing gearbox unit including an output-side spindle drive unit into a translatory motion for actuating a piston of a hydraulic piston/cylinder unit. A hydraulic block of the piston/cylinder unit also at least partially accommodates the electric motor unit in such a way that a motor shaft of the electric motor unit extending at least predominantly in the area of the hydraulic block is situated axially parallel to a longitudinal axis of the piston of the piston/cylinder unit which is movable in the hydraulic block.
Claims
1. An electromechanically drivable brake pressure generator for a hydraulic braking system of a vehicle, comprising: an electric motor unit, activatable using an electronic control unit in accordance with a brake pressure to be applied, and configured to generate a rotary motion which is converted by a reducing gearbox unit, including an output-side spindle drive unit, into a translatory motion for actuating a piston of a hydraulic piston/cylinder unit; wherein a hydraulic block of the piston/cylinder unit at least partially accommodates the electric motor unit in such a way that a motor shaft of the electric motor unit extending at least predominantly in an area of the hydraulic block, is situated axially parallel to a longitudinal axis of the piston of the piston/cylinder unit which is movable in the hydraulic block.
2. The electromechanically drivable brake pressure generator as recited in claim 1, wherein the hydraulic block is manufactured from a light metal alloy and has a cuboid bounding geometry.
3. The electromechanically drivable brake pressure generator as recited in claim 2, wherein hydraulic bores of the hydraulic block are matched to cooling requirement of the electric motor unit in terms of dimensions.
4. The electromechanically drivable brake pressure generator as recited in claim 1, wherein the hydraulic block is cuboidal and includes a first end face at which the gearbox unit is directly situated.
5. The electromechanically drivable brake pressure generator as recited in claim 4, wherein the gearbox unit is a multi-stage spur gear, which bridges a center distance between the electric motor unit and the spindle drive unit (situated coaxially to the piston/cylinder unit.
6. The electromechanically drivable brake pressure generator as recited in claim 5, wherein gear wheels of the multi-stage spur gear are manufactured from a plastic material.
7. The electromechanically drivable brake pressure generator as recited in claim 4, wherein the cuboid hydraulic block includes a second end face, which is situated opposite the first end face and at which the electronic control unit is directly situated.
8. The electromechanically drivable brake pressure generator as recited in claim 7, wherein a rotational speed and/or rotating direction sensor for the electric motor unit, is situated in an area of an end of the motor shaft situated opposite the gearbox unit, and is integrated into the electronic control unit.
9. The electromechanically drivable brake pressure generator as recited in claim 7, wherein the electronic control unit includes electronic components situated on a single circuit board, which carry out both electronic control of the motor unit and hydraulic valve activation of the piston/cylinder unit.
10. A vehicle, including an electromechanical brake pressure generator for a hydraulic braking system, the electromechanical brake pressure generator comprising: an electric motor unit, activatable using an electronic control unit in accordance with a brake pressure to be applied, and configured to generate a rotary motion which is converted by a reducing gearbox unit, including an output-side spindle drive unit, into a translatory motion for actuating a piston of a hydraulic piston/cylinder unit; wherein a hydraulic block of the piston/cylinder unit at least partially accommodates the electric motor unit in such a way that a motor shaft of the electric motor unit extending at least predominantly in an area of the hydraulic block, is situated axially parallel to a longitudinal axis of the piston of the piston/cylinder unit which is movable in the hydraulic block.
Description
BRIEF DESCRIPTION OF THE DRAWING
[0020]
DETAILED DESCRIPTION OF EXAMPLE EMBODIMENTS
[0021] According to
[0022] In the electromechanical brake pressure generator having a compact design, hydraulic block 6 made up of a light metal also accommodates electric motor unit 1 for piston/cylinder unit 5 within the meaning of a functional integration, so that a separate housing therefor may be dispensed with. A motor shaft 7 of electric motor unit 1 extends axially parallel to a longitudinal axis 8 of piston 9 of piston/cylinder unit 5 which is axially movable in hydraulic block 6.
[0023] Gearbox unit 3 is directly situated on the generally cuboid hydraulic block 6 on the side of a first end face 10. In this exemplary embodiment, gearbox unit 3 is made up of a multi-stage spur gear 11, which renders slow, i.e., reduces, the rotational speed input by electric motor unit 1, and, at the same time, bridges a center distance X between electric motor unit 1 and spindle drive unit 4 situated coaxially to piston/cylinder unit 5.
[0024] Situated opposite first end face 10, cuboid hydraulic block 6 includes a second end face 12 extending in parallel thereto, at which electronic control unit 2 is directly situated. A rotational speed and/or rotating direction sensor 13 for electric motor unit 1 is integrated into electronic control unit 2. Rotational speed and/or rotating direction sensor 13 detects the rotational speed and/or the rotating direction of motor shaft 7 to forward a corresponding measuring signal to electronic control unit 2 for the control purposes which are conventional. In this exemplary embodiment, electronic control unit 2 is designed in the form of a single circuit board 14 on which various electronic components 15 (by way of example) are situated for carrying out the activation functions. This is used to activate both electric motor unit 1 and the hydraulic valve activationwhich is not shown here in detailof piston/cylinder unit 5.
[0025] The present invention is not limited to the above-described preferred exemplary embodiment. Rather, modifications thereof are also possible, which are also encompassed by the scope of the present invention. For example, it is also possible for gearbox unit 3 to be designed in another manner, for example as a traction drive mechanism or the like. Furthermore, it is sufficient when electric motor unit 1 is at least partially accommodated in hydraulic block 6 and, for example, also projects with a protruding portion into the directly abutting electronic control unit 2 or gearbox unit 3.