Vehicle horn control system
11548439 · 2023-01-10
Assignee
Inventors
Cpc classification
H01H3/60
ELECTRICITY
International classification
H01H3/60
ELECTRICITY
Abstract
The invention relates to a vehicle horn control system, installed on the steering wheel of a vehicle, comprising: a base part (10), a control device (52), which can move relative to the base part between a rest position and a depressed position, shock-absorbing means comprising a deformable part (31) made from an elastomer material, said means being arranged between the base part and the control device in order to absorb vibrations; and an electric circuit with at least one closed switch when the control device is in the rest position.
Claims
1. A vehicle horn control system, arranged to be installed on a steering wheel of a vehicle, comprising: a base part, a control device, which can move relative to the base part between a rest position and a depressed position, a shock-absorbing feature comprising a deformable part made from an elastomer material, and arranged between the base part and the control device in order to absorb vibrations, an electric circuit comprising a pressure detection feature arranged to detect manual pressure on the control device, wherein the pressure detection feature comprises a static contact terminal, secured to the base part, and at least one switch comprising a movable contact terminal, built in to the control device and radially disposed about the static contact terminal, wherein the shock-absorbing feature is arranged to form an elastic return feature in order to automatically exert a return force on the control device to return the control device from the depressed position to the rest position, and in that the return force is only generated by the deformable part.
2. The control system according to claim 1, wherein the switch is closed when the control device is in the rest position.
3. The control system according to claim 2, comprising a positioning feature, arranged to impose the rest position on the control device, characterized in that the positioning feature comprises the static contact terminal arranged to position the control device in the rest position, so as to close the switch when the control device is in the rest position, and in which the shock-absorbing feature is arranged between the positioning feature and one of the base part or of the control device.
4. The control system according to claim 3, wherein the support part is a stop comprising the static contact terminal which is arranged to form a mechanical stop at the control device returned to the rest position by the return feature.
5. The control system according to claim 3, wherein the positioning feature is a guiding feature, wherein: a first of the static contact terminal or the movable contact terminal forms part of a sliding bar and a second of the static contact terminal or the movable contact terminal forms part of a slide, such that the static contact terminal and the movable contact terminal are slidable relative to one another, so as to guide the control device returned to the rest position by the return feature, and wherein the shock-absorbing feature is arranged around the slide.
6. The control system according to claim 3, wherein the positioning feature comprises an insulation part, electrically insulating, wherein a first of the static contact terminal or the movable contact terminal is a metal portion formed on the insulation part, and wherein a second of the static contact terminal or the movable contact terminal is a conducting part, arranged to be in contact with the metal portion when the control device is in the rest position, and wherein the insulation part is nested in the deformable part.
7. The control system according to claim 3, wherein the positioning feature comprises an insulation part, electrically insulating, wherein a first of the static contact terminal or the movable contact terminal comprises two electrical tracks formed on the insulation part, and wherein a second of the static contact terminal or the movable contact terminal is a conducting part, arranged to come into contact with the two electrical tracks when the control device is in the rest position, and wherein the insulation part is nested in the deformable part.
8. The control system according to claim 1, wherein the pressure detection feature comprises at least one force sensor, such as a strain gauge, and wherein the force sensor is pre-stressed when the control device is in the rest position.
9. The control system according to claim 1, wherein the deformable part comprises a deformable portion, one section of which, transversal to a displacement direction of the control device, is reduced in relation to a section of a base portion of the deformable part.
10. The control system according to claim 9, wherein the deformable portion of the deformable part comprises material recesses.
11. The control system according to claim 9, wherein the deformable part comprises a plurality of slots.
12. The control system according to claim 1, wherein the deformable part is overmolded over a control device part.
13. The control system according to claim 1, wherein a stroke of the control device between the rest position and the depressed position is less than 1 mm.
14. A vehicle steering wheel comprising a control system according to claim 1.
15. A motor vehicle comprising a vehicle steering wheel according to claim 14.
Description
(1) Other features and benefits of the present invention will be seen more clearly from reading the following detailed description of several embodiments of the invention, provided by way of a non-limiting example and illustrated by the appended drawings, wherein:
(2)
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(10) a frame 10 of the steering wheel, forming a base part,
(11) a shoulder screw 41, attached to the frame 10,
(12) a panel 20 comprising a plate 21 with a rigid plastic overmolding 22 (polyamide for example), guided by a cylindrical part of the shoulder screw 41,
(13) a deformable part 31 overmolded over the rigid plastic overmolding 22,
(14) an insulation part 61 inserted in the deformable part 31 and acting as a guide ring around the cylindrical portion of the shoulder screw 41,
(15) a washer 51, built in to the panel 20 as it is held by hooks anchored into the insulation part 61,
(16) optionally, a support part 12, which may for example be an electronics unit.
(17) The panel 20 is pushed upwards in
(18) Typically, the panel 20 has an in-built safety module (an air bag) and the user presses on the latter (or its cover) to activate the horn. The safety module is therefore built in to the panel 20 and is movable with respect to the frame 10 of the steering wheel. However, the control device may be only a lid or a cover of the safety module in another embodiment.
(19) To limit the vibrations in the frame 10 and the rim (not shown) of the steering wheel, the deformable part 31 (made from rubber or made from elastomer such as EPDM (ethylene propylene diene monomer)) is inserted between the frame 10 and the movable parts forming the control device (the panel 20 and its in-built components). In the present case, the deformable part 31 is overmolded over the rigid plastic overmolding 22 of the panel 20, the material of the deformable part 31 passing through holes provided in the rigid plastic overmolding 22. Furthermore, the deformable part 31 comprises a groove which receives a shoulder of the insulation part 61, which makes it possible to secure the parts to enable the sliding movement on the shoulder screw 41.
(20) In the control system of
(21) To detect the movement of the panel, the invention proposes forming an electrical switch with the washer 51 which forms a movable contact terminal, and a surface 52 of the shoulder of the shoulder screw 41, which then forms a static contact terminal.
(22) An electrical circuit is then formed by:
(23) the frame 10,
(24) the shoulder screw 41,
(25) the static contact terminal (the surface 52),
(26) the movable contact terminal (the washer 51),
(27) an electronics unit 53 linked on one hand to the frame 10 and on the other to the washer 51, and which is arranged to detect the opening of the electric circuit, i.e. the moment when the washer 51 is no longer in physical and/or electrical contact with the surface 52 as shown in
(28) As a consequence, control detection takes place the moment the panel 10 is moved, which procures very rapid detection, and this makes it possible to limit the stroke (represented by clearance “j” on
(29) To limit the deformations and the pushing forces, the deformable part comprise slots 31a in the lower section, at the level of its contact with the support part 12. This makes it possible to limit the increase in pushing force, and to leave the deformable part the space to deform itself when transitioning from the rest position in
(30) In particular, it is possible to provide a stroke less than or equal to 1 mm and preferentially to 0.5 mm, or even less than or equal to 0.3 mm. As a consequence, at the movable trim parts, it is possible to provide a smaller clearance with the static trim parts of the steering wheel than those seen in the prior art. For the prior art, there's a clearance of around 4 mm, and the invention therefore allows this clearance to be reduced to values lower than 2 mm, which improves the quality perceived by the client.
(31) In the alternative case in which the pressure detection means comprise a force sensor, the stroke is very small (less than 0.1 mm for example), so that the clearances between the trim parts can be reduced further.
(32) Several shoulder screws 41 (typically three) can of course be provided to guide the panel 20, in order to form several positioning units or several stopping units, of identical structure to that of
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(34) In the present case, the deformable part 31′ is overmolded around the rigid plastic overmolding 22′, and the insulation part 61′ has a height greater than that of the deformable part 31′, and a shoulder at each end, to ensure secure axial connection, along the direction of sliding.
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(37) In the present case, the electrical circuit is formed by:
(38) two tracks 52a and 52b formed on an insulating washer 42 secured to the head of the shoulder screw 41, and forming a static contact terminal,
(39) a washer 51 secured to the insulation part 61′, and forming a movable contact terminal,
(40) the electronics unit 53′ linked on one hand to the track 52a and on the other to the track 52b.
(41) In the present case, insulation means in the form of the insulating washer 42 are inserted between the head of the shoulder screw 41 and the two contact tracks 52a and 52b. As a consequence, the electrical circuit does not include the shoulder screw 41, nor the frame 10. As in the first and second embodiment above, the static contact terminal and the movable contact terminal form stopping means and enter into mechanical abutment to close the electric circuit as soon as the panel 20 returns to the rest position (
(42) The contact is lost as soon as the panel 20 is moved to go into the depressed position. In particular, the washer 51 simultaneously makes contact with the tracks 52a and 52b, so as to conduct the current from one to the other. This implementation makes it possible to simplify the connection cabling with the electronics unit since the cabling is only supported by a single part, the shoulder screw 41.
(43) Typically, the horn is supplied with strong current (greater than 4 amps), whereas the electric circuit of the control system is supplied with weak current (less than 1 amp) to limit any risk of electric arc between the static contact terminal and the movable contact terminal.
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(46) It will be understood that various modifications and/or improvements obvious to those skilled in the art can be made to the different embodiments of the invention described in the present description, without going beyond the scope of the invention as defined by the appended claims.
(47) In particular, it may be intended to propose a mechanical end of travel stop for the control device, to form a clear abutment, but this is not strictly necessary, particularly in the case where a deformable part comprises slots. Indeed, once the slots have been deformed, any additional depression will cause a significant increase in the depressing force applied by the user, who will feel an effect similar to an end of travel stop.
(48) It is also possible to provide a normally-open switch to detect the depression of the movable part.
(49) Furthermore, it is noted that all the embodiments described can be combined with each other, provided that they are compatible.