IP Library Granted Patent US 10,597,068
Granted Patent B2
US 10,597,068 · App. 15/580,577 · Granted Mar 24, 2020

Vehicle steering system with steer-by-wire system and mechanical fallback system

Inventors: Bernhard Steinkogler (Dornbirn, AT); Robert Galehr (Schaanwald, LI)
Assignees: THYSSENKRUPP PRESTA AG; THYSSENKRUPP AG
B62D5/003B62D5/001B62D5/006F16D27/108F16D2300/14
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Quick Facts
Patent No.
US 10,597,068
App. No.
15/580,577
Granted
Mar 24, 2020
Kind
B2
Abstract

A motor vehicle steering system with steer-by-wire functionality may include an upper steering shaft that is mounted in a steering column and can be connected to a steering wheel in a rotationally fixed manner, a lower steering shaft that is connected to a steering gear for pivoting at least one steerable wheel, a manual torque adjuster that is connected to the upper steering shaft, an actuating drive that is connected to the lower steering shaft, and a coupling that in a closed state couples the steering wheel and the steering gear in a rotationally fixed manner. The actuating drive may be disposed on the steering column.

Claims (33)

1. A motor vehicle steering system with steer-by-wire functionality, the motor vehicle steering system comprising:

an upper steering shaft that is mounted in a steering column and is connectable to a steering wheel in a rotationally fixed manner;

a lower steering shaft that is connected to a steering gear for pivoting a steerable wheel;

a manual torque adjuster connected to the upper steering shaft;

an actuating drive disposed on the steering column and connected to the lower steering shaft; and

a coupling, wherein in a closed state the coupling couples the steering wheel and the steering gear in a rotationally fixed manner,

wherein the manual torque adjuster comprises an electric motor with a first output shaft and an upper output wheel that is in engagement with the first output shaft, said first output shaft is connected to the upper steering shaft in a rotationally fixed manner, wherein the actuating drive comprises an electric motor with a second output shaft and a lower output wheel that is in engagement with the second output shaft, said second output shaft is connected to the lower steering shaft in a rotationally fixed manner, and

wherein the coupling comprises an electromagnet with a stator and an armature that is connected to the lower output wheel in a rotationally fixed manner, wherein the armature is preloaded by way of a spring element away from the electromagnet into the closed state of the coupling, wherein the armature is operationally connected to an engagement pin, which in a closed position is in positive engagement with an engagement element that is connected to the upper output wheel in a rotationally fixed manner.

2. The motor vehicle steering system of claim 1 wherein the actuating drive comprises the electric motor is disposed laterally on the steering column.

3. The motor vehicle steering system of claim 1 wherein the lower steering shaft in terms of drive is disposed between the actuating drive and the steering gear.

4. The motor vehicle steering system of claim 1 wherein the manual torque adjuster and the actuating drive are disposed in a common gear housing.

5. The motor vehicle steering system of claim 1 wherein the upper output wheel and the lower output wheel are mounted coaxially rotatably relative to one another.

6. The motor vehicle steering system of claim 1 wherein the upper output wheel and the lower output wheel are mounted coaxially rotatably relative to one another in a common gear housing in which the manual torque adjuster and the actuating drive are disposed.

7. The motor vehicle steering system of claim 1 wherein the coupling is disposed in a force flow between the upper output wheel and the lower output wheel.

8. The motor vehicle steering system of claim 1 wherein the first and second output shafts are configured as worm shafts, wherein the upper and lower output wheels are configured as worm wheels.

9. The motor vehicle steering system of claim 1 wherein the coupling is an electromagnetically actuatable snap-on coupling, which is closed in a currentless state.

10. A coupling for a motor vehicle steering system, the coupling comprising:

a first coupling part that is rotatable about an axis of rotation;

a second coupling part that is rotatable about the axis of rotation;

at least two engagement pins that are received in the second coupling part and are movable relative to the second coupling part in a direction of the axis of rotation;

at least two engagement elements configured as arc-shaped elongated holes or elongated slots in the first coupling part, wherein at least one of the at least two engagement pins and at least one of the at least two engagement elements in a closed state are in engagement with one another, by way of which the first and second coupling parts are coupled to one another in a rotationally fixed manner; and

an electromagnet comprising an armature and a switchable stator, wherein the armature is operationally connected to the at least two engagement pins, wherein the armature is movable by way of the switchable stator in the direction of the axis of rotation driving along the at least two engagement pins against a preload of a spring element, by way of which the spring element preloads the at least two engagement pins in a direction of the closed state.

11. A motor vehicle steering system with steer-by-wire functionality, the motor vehicle steering system comprising:

an upper steering shaft that is mounted in a steering column and is connectable to a steering wheel in a rotationally fixed manner;

a lower steering shaft that is connected to a steering gear for pivoting a steerable wheel;

a manual torque adjuster connected to the upper steering shaft;

an actuating drive disposed on the steering column and connected to the lower steering shaft; and

a coupling, wherein in a closed state the coupling couples the steering wheel and the steering gear in a rotationally fixed manner, the coupling comprising:

a first coupling part that is rotatable about an axis of rotation;

a second coupling part that is rotatable about the axis of rotation;

at least two engagement pins that are received in the second coupling part and are movable relative to the second coupling part in a direction of the axis of rotation;

at least two engagement elements configured as arc-shaped elongated holes or elongated slots in the first coupling part, wherein at least one of the at least two engagement pins and at least one of the at least two engagement elements in a closed state are in engagement with one another, by way of which the first and second coupling parts are coupled to one another in a rotationally fixed manner; and

an electromagnet comprising an armature and a switchable stator, wherein the armature is operationally connected to the at least two engagement pins, wherein the armature is movable by way of the switchable stator in the direction of the axis of rotation driving along the at least two engagement pins against a preload of a spring element, by way of which the spring element preloads the at least two engagement pins in a direction of the closed state.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 20, 2018
From: STEINKOGLER, BERNHARD; GALEHR, ROBERT
To: THYSSENKRUPP PRESTA AG; THYSSENKRUPP AG
Reel/Frame 044981/0881 →
Priority Claims (1)
DE 10 2015 007 280 · Jun 10, 2015 · national
Continuity (1)
Related Publication 20180154925A1 · Jun 7, 2018
Cited By (1)
US 12,372,121