Steering column equipped with a device for detecting the forces applied to the steering wheel
A steering column includes a support base intended to be mounted fixedly with respect to a vehicle chassis. The steering column further includes a steering member on which a vehicle steering wheel is mounted. The steering member includes a transmission shaft mounted so as to rotate with respect to the support base about a longitudinal main axis. The steering column also includes at least one force sensor that is interposed between a first non-rotating element of the steering column and a second non-rotating element belonging either to the steering column or to the chassis of the vehicle.
1 . A steering column, comprising:
a support base configured to be mounted fixedly with respect to a chassis of a vehicle,
a steering member on which a vehicle steering wheel is mounted, the steering member including a transmission shaft mounted so as to rotate with respect to the support base about a longitudinal main axis, and
at least one force sensor that is interposed between a first non-rotating element of the steering column and a second non-rotating element belonging either to the steering column or to the chassis of the vehicle and configured to detect longitudinal forces applied to the steering wheel, along the longitudinal main axis, by an individual,
wherein the first non-rotating element is an annular component that defines the longitudinal axis,
wherein the first non-rotating element has a first inner recess designed to receive an outer ring of a rolling bearing of the transmission shaft,
wherein the second non-rotating element has an annular body that also defines the longitudinal axis,
wherein a second inner recess is formed in the annular body so as to receive the first non-rotating element, and
wherein the second inner recess is delimited by a first radial wall and by an axial wall of the annular body and also by a second radial wall belonging to an end sleeve that is fastened to the annular body.
2 . The steering column according to claim 1 , wherein the at least one force sensor is interposed radially between the first non-rotating element and the second non-rotating element.
3 . The steering column according to claim 1 , wherein the at least one force sensor is interposed axially between the first non-rotating element and the second non rotating element.
4 . The steering column according to claim 1 , wherein:
the second non-rotating element is fastened to a tube that is mounted so as to slide longitudinally in the support base so as to be able to adjust the longitudinal position of the steering wheel, and
the transmission shaft is connected to the support base by way of the sliding tube.
5 . The steering column according to claim 1 , wherein:
the first non-rotating element is fastened to the support base of the steering column, and
the at least one force sensor is arranged on the support base of the steering column so as to be interposed between the support base and an element of the chassis of the vehicle.
6 . The steering column according to claim 1 , wherein the at least one force sensor has a strain gauge.
7 . The steering column according to claim 1 , wherein the at least one force sensor is configured to detect a shear force.
8 . The steering column according to claim 1 , wherein the at least one force sensor is configured to detect a compressive or tensile force.
9 . The steering column according to claim 1 , wherein the at least one force sensor includes a plurality of force sensors that are distributed circumferentially around the transmission shaft.
10 . The steering column according to claim 1 , further comprising an electronic control unit that is configured to (i) use the information provided by the at least one force sensor in order to detect a particular haptic sequence applied by the individual to the steering wheel, and (ii) trigger a determined operation depending on the haptic sequence detected.