SEALING FOR MOTOR-VEHICLES WITH INTEGRATED ANTI-PINCHING SYSTEM
20180305966 · 2018-10-25
Assignee
Inventors
- Antonino Domenico VECA (Casalborgone (Torino), IT)
- Paolo Chiappero (Cavour (Torino), IT)
- Graziano Brocani (Volpiano (Torino), IT)
- Vito Guido Lambertini (Giaveno (Torino), IT)
Cpc classification
B60J10/76
PERFORMING OPERATIONS; TRANSPORTING
E05F15/443
FIXED CONSTRUCTIONS
International classification
B60J10/76
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A sealing and/or guiding seal for a motor-vehicle window or other movable part of a motor-vehicle, includes at least one body formed of polymeric elastomeric material supplemented with carbon-based nanofillers. The body includes an outer surface with one or more piezo-resistive areas where the polymeric material supplemented with carbon-based nanofillers has been made locally piezo-resistive by laser irradiation. One or more electric deformation sensors are defined so as to detect an interference with an unrelated body during the movement of the movable part of the motor-vehicle. The body also includes one or more conductive paths where the polymeric material supplemented with carbon-based nanofillers has been made locally electrically-conductive by means of laser irradiation, so as to define one or more electrical connection lines of the piezo-resistive areas with electrodes associated with the seal.
Claims
1. Sealing and/or guiding seal for a motor-vehicle window or other movable part of a motor-vehicle, the seal comprising: at least one body formed of polymeric elastomeric material supplemented with carbon-based nanofillers, said body including: an outer surface with one or more piezo-resistive areas where the polymeric material supplemented with carbon-based nanofillers has been made locally piezo-resistive by laser irradiation, so as to define one or more electric deformation sensors capable of detecting interference with an unrelated body during the movement of said movable part of a motor-vehicle, and one or more conductive paths wherein said polymeric material supplemented with carbon-based nanofillers has been made locally electrically-conductive by laser irradiation, so as to define one or more electrical connection lines of the said piezo-resistive areas with electrodes associated with said seal.
2. Sealing according to claim 1, wherein said movable part of the motor-vehicle is a vertically-movable electrically-operated window of a motor-vehicle side door.
3. Sealing according to claim 2, wherein the body of the sealing is channel-shaped, with a central portion, an outer wing, intended to face towards the motor-vehicle exterior, and an inner wing, intended to face towards the motor-vehicle interior, and extending further downwards than said outer wing, and in that the sealing presents a plurality of said piezo-resistive areas distributed along the length of said sealing, at least at a lower end edge of said inner wing.
4. Sealing according to claim 1, wherein a plurality of said piezo-resistive areas is connected electrically to each other in series.
5. Sealing according to claim 1, wherein a plurality of said piezo-resistive areas is connected electrically to each other in parallel.
6. An electrically-operated door or hatchback of a motor-vehicle, wherein it comprises a sealing according to claim 1.
7. A motor-vehicle, comprising at least one sealing according to claim 1, and an electronic control unit configured to monitor the electrical resistance of one or more electrically-conductive paths including said piezo-resistive areas and to generate an alarm signal when the measured electrical resistance deviates from a predetermined value.
8. Sealing according to claim 2, wherein a plurality of said piezo-resistive areas connected electrically to each other in series.
9. Sealing according to claim 3, wherein a plurality of said piezo-resistive areas connected electrically to each other in series.
10. Sealing according to claim 2, wherein a plurality of said piezo-resistive areas is connected electrically to each other in parallel.
11. Sealing according to claim 3, wherein a plurality of said piezo-resistive areas is connected electrically to each other in parallel.
12. Sealing according to claim 4, wherein a plurality of said piezo-resistive areas is connected electrically to each other in parallel.
13. An electrically-operated door or hatchback of a motor-vehicle, wherein it comprises a sealing according to claim 2.
14. An electrically-operated door or hatchback of a motor-vehicle, wherein it comprises a sealing according to claim 3.
15. An electrically-operated door or hatchback of a motor-vehicle, wherein it comprises a sealing according to claim 4.
16. An electrically-operated door or hatchback of a motor-vehicle, wherein it comprises a sealing according to claim 5.
17. A motor-vehicle, comprising at least one sealing according to claim 2, and an electronic control unit configured to monitor the electrical resistance of one or more electrically-conductive paths including said piezo-resistive areas and to generate an alarm signal when the measured electrical resistance deviates from a predetermined value.
18. A motor-vehicle, comprising at least one sealing according to claim 3, and an electronic control unit configured to monitor the electrical resistance of one or more electrically-conductive paths including said piezo-resistive areas and to generate an alarm signal when the measured electrical resistance deviates from a predetermined value.
19. A motor-vehicle, comprising at least one sealing according to claim 4, and an electronic control unit configured to monitor the electrical resistance of one or more electrically-conductive paths including said piezo-resistive areas and to generate an alarm signal when the measured electrical resistance deviates from a predetermined value.
20. A motor-vehicle, comprising at least one sealing according to claim 5, and an electronic control unit configured to monitor the electrical resistance of one or more electrically-conductive paths including said piezo-resistive areas and to generate an alarm signal when the measured electrical resistance deviates from a predetermined value.
Description
[0021] In the attached drawings, reference 1 indicates a sealing and/or guiding seal according to the present invention, for a movable part of a motor-vehicle. In the embodiment illustrated in the drawings, the seal 1 is associated with a vertically-movable, electrically-operated motor-vehicle window C of a motor-vehicle side door 7 (
[0022] According to an essential characteristic of the present invention, the seal 1 has a body 2 formed of polymeric elastomeric material having functionalized portions consisting of a polymeric material supplemented with carbon-based nanofillers (
[0023] In the known method of this document, a polymeric-based material is supplemented with carbon-based nanofillers, such as carbon nanotubes or carbon nitride or carbon nanofibers, in an amount insufficient to make the material electrically-conductive. In the embodiment illustrated in the drawings, and in particular with reference to
[0024]
[0025] According to another characteristic of the invention, the laser irradiation on the outer surface 3 of the seal 1 is carried out in such a way so as to form, in addition to the conductive paths 6, a plurality of piezo-resistive areas 4 (
[0026] With reference to the embodiment illustrated in the drawings, and in particular in the cross-section views of
[0027] Thanks to the surface 3 provided with the piezo-resistive areas 4 described above, the seal 1 according to the present invention has an integrated system for detecting the pinching of an unrelated body 8 between the seal 1 and the motor-vehicle window C during the movement of the latter (
[0028] The pressure exerted on the areas 4 after the pinching generates an electrical signal that is transmitted through the conductive paths 6 to the terminals 9, and from these to an electronic control unit E (
[0029] The electronic control unit E can be programmed to generate an alarm signal if the measured electrical resistance deviates from a predetermined threshold value following pinching with an unrelated body 8 during the movement of the motor-vehicle window C (
[0030] Thanks to the characteristics described above, the seal according to the present invention advantageously exploits the possibilities offered by the method proposed by the Applicant in the document WO 2012/055934 A1, by means of producing an object that is simple and economical to construct, but at the same time being extremely reliable in the case of pinching with an unrelated body during the movement of the movable part on which the seal is installed.
[0031] Of course, without prejudice to the principle of the invention, the details of construction and the embodiments may vary widely with respect to those described and illustrated purely by way of example, without departing from the scope of the present invention.