Vehicular luminous laminated glazed roof, vehicle incorporating same and manufacture
US-2019193376-A1 · Jun 27, 2019 · US
US10647092B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10647092-B2 |
| Application number | US-201716344215-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 24, 2017 |
| Priority date | Oct 28, 2016 |
| Publication date | May 12, 2020 |
| Grant date | May 12, 2020 |
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A vehicle luminous signaling glazing forming, for example, a laminated vehicle windshield includes a first exterior glazing, with first main face and second main face, a lamination interlayer made of polymeric material with an other edge face, a second interior glazing, with third main face and fourth main face, the second main face and the third main face being the internal faces of the laminated glazing. The glazing also includes a flexible carrier for the diodes including a diode zone, an emerging electrical supply zone emerging from the other edge face, divided into a plurality of track strips, carrying electrical tracks, with an individual width Wi of less than 5 cm.
Opening claim text (preview).
The invention claimed is: 1. A vehicle glazing having an internal luminous zone comprising: a bent laminated glazing comprising: a first glazing comprising a glass sheet forming an exterior glazing, with first and second main faces and a first edge face, a second glazing comprising a glass sheet forming an interior glazing, with third and fourth main faces and a second edge face adjacent the first edge face, and, between the second main face and the third main face, which are internal faces of the bent laminated glazing, a lamination interlayer made of thermoplastic polymeric material having a fifth main face in adhesive contact with the second main face and a sixth main face in adhesive contact with the third main face, the lamination interlayer having another edge face adjacent the first and second edge faces, inorganic light-emitting diodes arranged between the second and third main faces, each diode of the inorganic light-emitting diodes having a light-emitting face facing the third main face capable of emitting light in a direction of the third main face, a carrier for the inorganic light-emitting diodes having a front face facing the third main face and a rear face, facing the second main face, the inorganic light-emitting diodes being mounted on the front face, the carrier for the inorganic light-emitting diodes being flexible and comprising, on the front face, electrically conductive zones forming electrical tracks for supplying electricity, a portion or all of the electrical tracks arranged to supply electricity to the inorganic light-emitting diodes, and the lamination interlayer is being present between the front face and the third main face, the carrier for the inorganic light-emitting diodes being of submillimetric thickness, comprising: diode zone arranged between the second and third main faces, said diode zone comprising said inorganic light-emitting diodes, said diode zone extending along the first edge face over a length L 0 of at least 6 cm, an emerging electrical supply zone that extends in the direction of the first edge face and that emerges from the edge face of the lamination interlayer, the emerging electrical supply zone comprising a supply internal zone with the electrical tracks, between the second and third main faces, defined by a width Wt which is less than L 0 , and the bent laminated glazing comprises an adhesive leaktight to liquid water, positioned between the second main face and the rear face in a portion of the rear face, of submillimetric thickness, wherein the width Wt is at least 5 cm, the internal zone is divided into a plurality of track strips carrying electrical tracks, with an individual width Wi of less than 5 cm in the internal zone, the track strips emerging from edge face of the lamination interlayer, and wherein, in the internal zone, the lamination interlayer is present in an interstrip space between neighboring track strips. 2. A vehicle glazing having external luminous signaling comprising: a bent laminated glazing comprising: a first glazing comprising a glass sheet forming an exterior glazing, with first and second main faces and a first edge face, a second glazing comprising a glass sheet forming an interior glazing, with third and fourth main faces and a second edge face adjacent the first edge face, and, between the second main face and the third main face, which are internal faces of the laminated glazing, a lamination interlayer made of thermoplastic polymeric material having a fifth main face in adhesive contact with the second main face and a sixth main face in adhesive contact with the third main face, the lamination interlayer having another edge face adjacent the first and second edge faces, inorganic light-emitting diodes arranged between the second and third main faces, each diode of the inorganic light-emitting diodes having a light-emitting face facing the second main face capable of emitting light in a direction of the second main face, a carrier for the inorganic light-emitting diodes having a front face, facing the second main face and a rear face, facing the third main face, the inorganic light-emitting diodes being mounted on the front face, the carrier for the inorganic light-emitting diodes being flexible and comprising, on the front face, electrically conductive zones forming electrical tracks for supplying electricity, a portion or all of the electrical tracks supplying electricity to the inorganic light-emitting diodes, the lamination interlayer being present between the front face and the second main face, the carrier for the inorganic light-emitting diodes, which is of submillimetric thickness E 3 , comprising: a diode zone arranged between the second and third main faces, said diode zone comprising said inorganic light-emitting diodes, said diode zone extending along the second edge face over a length L 0 of at least 6 cm, an emerging electrical supply zone that extends in the direction of the second edge face and that emerges from the edge face of the lamination interlayer, the emerging electrical supply zone comprising a supply internal zone with the electrical tracks, between the second and third main faces, defined by a width Wt which is less than L 0 , and the bent laminated glazing comprises an adhesive leaktight to liquid water, positioned between the rear face and the third main face in a region of the rear face, of submillimetric thickness E 8 , wherein the width Wt is at least 5 cm, the emerging electrical supply zone is divided into a plurality of track strips carrying electrical tracks, with an individual width Wi of less than 5 cm in the internal zone, the strips emerging from edge face of the lamination interlayer, and wherein, in the internal zone, the lamination interlayer is present in the interstrip space between neighboring track strips. 3. The vehicle glazing as claimed in claim 1 , wherein the interstrip space between two neighboring track strips has a width W S of at least 5 mm. 4. The vehicle glazing as claimed in claim 1 , wherein the track strips extend in the protruding zone and are connected over a width D of at least 0.5 cm. 5. The vehicle glazing as claimed in claim 1 , wherein the edge face of the diode zone defines arc-shaped linking zones between neighboring track strips or linking zones that have a beveled edge or a groove. 6. The vehicle glazing as claimed in claim 1 , wherein said adhesive leaktight to liquid water is a double-sided adhesive tape. 7. The vehicle glazing as claimed in claim 1 , wherein the front face comprises one or more double-sided adhesive tapes that have a submillimetric thickness and that are in contact with the lamination interlayer, and that are out of contact with the inorganic light-emitting diodes. 8. The vehicle glazing as claimed in claim 1 , wherein, in the protruding zone, the carrier for the inorganic light-emitting diodes is curved and extends to the fourth main face and is adhesively bonded to the fourth main face. 9. The vehicle glazing as claimed in claim 1 , wherein, in the diode zone or in the internal zone, or both in the diode zone and in the internal zone, the carrier for the inorganic light-emitting diodes comprises, on the front face, electronic components of submillimetric thickness chosen from one at least of the following elements: a resistive element, a capacitive element, a transistor or a microcontroller. 10. The vehicle glazing as claimed in claim 1 , wherein a distance between the emitting face of the inorganic light-emitting diodes and the third main face is at most 0.5 mm. 11. The vehicle glazing as claimed in claim 1 , wherein the track strips are mas
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