Lighting device for a motor vehicle
11505115 · 2022-11-22
Assignee
Inventors
- Alexandre Franc (Meslin l'Eveque, BE)
- Geoffrey Creus (Meslin l'Eveque, BE)
- Richard Geloen (Meslin l'Eveque, BE)
Cpc classification
F21S43/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/37
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V15/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21W2103/35
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60Q1/302
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60Q1/30
PERFORMING OPERATIONS; TRANSPORTING
F21S43/50
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to a lighting device (1) for a motor vehicle, comprising: —a housing (10); —a noise-reducing material (11); characterised in that: —the noise-reducing material (11) is partially disposed inside the housing (10) and is in contact with the housing (10); —the housing (10) has at least one hole (100) and the noise-reducing material (11) is configured to pass through the at least one hole (100) and extends projecting from the at least one hole (100) to the outside of the housing (10).
Claims
1. A lighting device for a motor vehicle, comprising: a housing; and an antinoise material, wherein: the antinoise material is partly arranged inside said housing and is in contact with said housing, and said housing comprises at least one hole, and said antinoise material is configured to pass through said at least one hole such that the antinoise material completely closes the at least one hole and extends in a projecting manner from said at least one hole to the outside of said housing.
2. The lighting device as claimed in claim 1, in which said lighting device is a high mount stop light.
3. The lighting device as claimed in claim 2, in which said housing comprises a plurality of holes.
4. The lighting device as claimed in claim 2, in which said antinoise material has a Shore A hardness of between 40 and 90.
5. The lighting device as claimed in claim 2, in which said lighting device additionally comprises an optical system, and said antinoise material is in contact with said optical system.
6. The lighting device as claimed in claim 2, in which said antinoise material is in contact with a rear window of said motor vehicle.
7. The lighting device as claimed in claim 2, in which said housing and said antinoise material are composed of two different materials.
8. The lighting device as claimed in claim 2, in which said housing and said antinoise material are produced by two-shot injection-molding.
9. The lighting device as claimed in claim 2, in which said antinoise material is an elastomer.
10. The lighting device as claimed in claim 1, in which said housing comprises a plurality of holes.
11. The lighting device as claimed in claim 10, in which said antinoise material has a Shore A hardness of between 40 and 90.
12. The lighting device as claimed in claim 10, in which said lighting device additionally comprises an optical system, and said antinoise material is in contact with said optical system.
13. The lighting device as claimed in claim 10, in which said antinoise material is in contact with a rear window of said motor vehicle.
14. The lighting device as claimed in claim 10, in which said housing and said antinoise material are composed of two different materials.
15. The lighting device as claimed in claim 1, in which said antinoise material has a Shore A hardness of between 40 and 90.
16. The lighting device as claimed in claim 1, in which said lighting device additionally comprises an optical system, and said antinoise material is in contact with said optical system.
17. A lighting device for a motor vehicle, comprising: a housing; and an antinoise material, wherein: the antinoise material is partly arranged inside said housing and is in contact with said housing, and said housing comprises at least one hole, and said antinoise material is configured to pass through said at least one hole and to extend in a projecting manner from said at least one hole to the outside of said housing, wherein said antinoise material is in direct contact with a rear window of said motor vehicle.
18. The lighting device as claimed in claim 1, in which said housing and said antinoise material are composed of two different materials.
19. The lighting device as claimed in claim 1, in which said housing and said antinoise material are produced by two-shot injection-molding.
20. The lighting device as claimed in claim 1, in which said antinoise material is an elastomer.
Description
BRIEF DESCRIPTION OF THE FIGURES
(1) The invention and its various applications will be better understood upon reading the following description and with reference to the accompanying figures, in which:
(2)
(3)
(4)
(5)
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(7)
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(10)
DESCRIPTION OF EMBODIMENTS OF THE INVENTION
(11) The elements which are identical, by structure or by function, that appear in the various figures retain the same references, unless stated otherwise.
(12) The lighting device 1 for a motor vehicle 2 according to invention is described with reference to
(13) The term motor vehicle is understood to mean any type of motorized vehicle.
(14) As illustrated in
(15) The lighting device 1 is a high mount stop light (HMSL), otherwise referred to as third stop light.
(16) As illustrated in
(17) As illustrated in
The lighting device 1 is retained in the motor vehicle 2 by means of its housing 10.
The lighting device 1 is arranged inside the motor vehicle 2, more particularly under the roof of the motor vehicle and behind the rear window 20, and is partly covered by an outer housing 21, otherwise referred to as the client housing 21.
The client housing 21 is illustrated in
In one nonlimiting embodiment, the housing 10 is an open housing. It is configured to bear in part against the rear window 20 (illustrated by a broken line in
(18) As illustrated in
(19) As illustrated in
(20) The elements of the lighting device 1 are described below.
(21) Electronic Medium 14
(22) The electronic medium 14 is illustrated in
(23) In one nonlimiting embodiment, the electronic medium 14 is a printed circuit board assembly (PCBA). The electronic medium 14 is arranged in the housing 10 facing the optical system 12. It extends in the main direction Y.
(24) One or more light sources are arranged on said electronic medium 14.
(25) In one nonlimiting embodiment, a light source is a semiconductor light source.
(26) In one nonlimiting embodiment, the semiconductor light source forms part of an electroluminescent diode.
(27) The term electroluminescent diode is understood to mean any type of electroluminescent diodes, whether they be, in nonlimiting examples, LEDs (light-emitting diodes), OLEDs (organic LEDs), AMOLEDs (active-matrix-organic LEDs) or else FOLEDs (flexible OLEDs).
A light source is configured to emit light rays which cooperate with the optical system 12 to generate a light beam. Said light beam makes it possible to realize the high mount stop light lighting function.
In one nonlimiting embodiment, the electronic medium 14 comprises a plurality of light sources. This nonlimiting embodiment is taken as an example in the remainder of the description.
Optical System 12
The optical system is illustrated in
The optical system 12 makes it possible to generate a light beam (not illustrated) from light rays emitted by the light sources. The light beam is directed toward the outside of the housing 10 in the direction of the rear window 20 of the motor vehicle 2.
In one nonlimiting embodiment, the optical system 12 comprises: a primary optical element 120; a secondary optical element 121.
The primary optical element 120 and the secondary optical element 121 are formed by a transparent or translucent material, similar to a lens.
The primary optical element 120 and the secondary optical element 121 are substantially flat and extend in the main direction Y of the lighting device 1.
The primary optical element 120 is partly arranged so as to face the light sources. It is configured to collimate the light rays of the light sources toward the secondary optical element 121. To this end, the primary optical element 120 comprises Fresnel steps.
The secondary optical element 121 is arranged so as to face the primary optical element 120 in such a way as to receive the light rays R collimated by the primary optical element 140 and to send them in the direction of the rear window 20 of the motor vehicle 2.
Housing 10 and Antinoise Material 11
(28) Housing 10
(29) The housing 10 is illustrated in
(30) The housing 10 is an open housing which is configured to come to bear against the rear window 20 of the motor vehicle 2.
(31) In one nonlimiting embodiment, the housing 10 is fastened to the body and/or to the rear window 20 of the motor vehicle 2 via fastening tabs 104 which cooperate with fastening means on the motor vehicle. It is fastened under the roof of the motor vehicle 2.
As illustrated in
As illustrated in
As illustrated in
As illustrated in
The second subpart 10b″ comprises: two ends 10b′″ situated on either side of the first subpart 10b′ having a shape relative to a right angle; at least one supply wall 102 for an injection of one end 1020. In the nonlimiting example illustrated, it comprises two supply walls 102.
The housing 10 comprises at least one hole 100 configured to allow the passage of the antinoise material 11. In one nonlimiting embodiment illustrated, said at least one hole 100 has the shape of a quadrilateral. In nonlimiting embodiment variants, it has a rectangular or square shape.
In a first nonlimiting exemplary embodiment illustrated in
In a second nonlimiting exemplary embodiment of
Said at least one hole 100 is produced in the secondary part 10b. It is formed in particular in the first subpart 10b′ of the secondary part 10b.
In one nonlimiting embodiment, the housing 10 comprises a plurality of holes 100. In the nonlimiting example of
In the nonlimiting example of
(32) In one nonlimiting embodiment illustrated in
(33) In one nonlimiting embodiment illustrated in
(34) In one nonlimiting embodiment illustrated in
(35) Antinoise Material 11
(36) As illustrated in the sectional views of
(37) In one nonlimiting embodiment, the housing 10 and the antinoise material 11 are composed of two different materials. In one nonlimiting embodiment, they are produced by two-shot injection-molding. In one nonlimiting embodiment illustrated in
(38) The two-shot injection-molding makes it possible to reduce the assembly costs and the assembly time, since the housing 10 and the antinoise material 11 come out of a single mold and form only a single part. By virtue of the two-shot injection-molding, an assembly step relating to the antinoise material is thus dispensed with.
(39) In one nonlimiting embodiment, the housing 10 is produced from a rigid material. It makes it possible to ensure that the optical system 12 and the electronic medium 14 are retained in the housing 10, and to have a resistance to vibrations when the motor vehicle is moving.
(40) In one nonlimiting embodiment, the material of the housing 10 is PC (polycarbonate), ABS (acrylonitrile butadiene styrene) or ABS-PC.
(41) It will be noted that the client housing 21 is likewise made of rigid material.
(42) In one nonlimiting embodiment, the antinoise material 11 is a flexible material. It makes it possible to absorb the shocks due to the friction of the housing 10 against the client housing 21, against the optical system 12 and against the rear window 20. Thus, it eliminates the noise due to this various friction. In one nonlimiting embodiment, the antinoise material 11 has a Shore A hardness of between 40 and 90.
(43) In one nonlimiting embodiment, the material constituting the antinoise material 11 is an elastomer, in particular a thermoplastic elastomer. In one nonlimiting embodiment variant, the material is TPV (vulcanized olefinic TPE). In another nonlimiting embodiment variant, the material is TPU (polyurethane TPE).
(44) As illustrated in
(45) In one nonlimiting embodiment, the antinoise material 11 comprises the same dimensions as the hole 100. Thus, in the first nonlimiting exemplary embodiment illustrated in
(46) In another nonlimiting embodiment, the antinoise material 11 comprises smaller dimensions than those of the hole 100. Thus, in the second nonlimiting exemplary embodiment of
(47) It will be noted that the height of the antinoise material 11 depends on the height of the docking step 103, on the thickness of the client housing 21 and on the clearance required by the client between the antinoise material 11 and the client housing 21. Thus, in some nonlimiting examples, the clearance between the projecting part 110 of the antinoise material 11 can be zero or equal to approximately 0.5 mm.
(48) Moreover, the antinoise material 11 is in contact with said rear window 20. For this purpose, as illustrated in
(49) The housing 10 thus comes to bear against the rear window 20 of the motor vehicle 2 at said at least one contact point 1110. That avoids the housing 10 having to be in direct contact with the rear window 20. The shocks due to friction between the housing 10 and the rear window 20 are thus absorbed. The noise due to this friction is thus eliminated. In one nonlimiting example illustrated in
In one nonlimiting embodiment, the projecting part 110 described above is connected to the part 111.
(50) As illustrated in
(51) The shocks due to friction between the housing 10 and the optical system 12 are thus absorbed. The noise due to this friction is thus eliminated.
(52) As illustrated in
(53) by a base 115a in contact with the primary optical element 120 and the secondary optical element 121 of the optical system 12. The base 115 bears against the primary part 10b of the housing 10, in particular against the subpart 10b′; by a buttress 115b in contact with the electronic board assembly 14. The buttress 115b is situated at approximately 90° with respect to the base 115a and bears against the primary part 10b of the housing 10, in particular against the subpart 10b″.
In the nonlimiting example illustrated, the antinoise material 11 comprises two parts 115.
(54) As illustrated in
(55) It will be noted that, on account of the production by two-shot injection-molding, the various parts 110, 111 and 114 of the antinoise material 11 are interconnected by various connection parts.
(56) Thus, as illustrated in
As illustrated in
As illustrated in
In the nonlimiting example illustrated, it comprises two transverse connection parts 116 which respectively connect the two parts 111 to said longitudinal connection part 113. These transverse connection parts 116 comprise holes to reduce the weight of the antinoise material 11.
(57) Of course, the description of the invention is not restricted to the embodiments described above.
(58) Thus, in another nonlimiting embodiment, the optical system 12 comprises one or more collimators.
(59) Thus, in another nonlimiting embodiment, the optical system 12 comprises one or more lenses.
(60) Thus, in another nonlimiting embodiment, the optical system 12 comprises a Fresnel system and one or more lenses.
(61) Thus, in other nonlimiting embodiments, said at least one hole 100 can have any other geometric shape.
(62) Thus, the described invention particularly has the following advantages: it makes it possible to obtain precise and repeatable positioning of the antinoise material 11 by virtue of the hole(s) 100; it makes it possible to reduce the positioning tolerances of the antinoise material 11. Thus, there is a switch to a more or less 0.2 mm tolerance versus a more or less 0.8 mm tolerance with a piece of foam; by dispensing with the piece of foam of the prior art, the invention makes it possible: to dispense with the cutting operations and the associated lack of precision; to dispense with manual assembly; to save assembly time; dispense with provisioning of the lighting device 1 on the assembly line and with the references associated with each different piece of foam; dispense with the management of the diversity of the pieces of foam; dispense with the need to turn over the lighting device 1 on the assembly line as is necessary for adhesive bonding of a piece of foam; dispense with the presence and positioning monitoring by a camera for the antinoise material 11; dispense with the problem of visibility to a camera of a piece of black foam if the housing 10 is itself black; reduce the cost of the lighting device 1; the invention makes it possible to obtain a variable geometry of the antinoise material 11, in particular of its projecting parts 110, by virtue of an upstream design of an injection mold; the invention makes it possible with a single antinoise material 1, which is in contact with the rear window 20, the optical system 2 and the client housing 21, to eliminate the various noise due to the friction between the housing 10 and these three elements 20, 2 and 21.