Headlight for vehicles
11572997 · 2023-02-07
Assignee
Inventors
- Gerhard Berger (Riedlingsdorf, AT)
- Raimund Kerschbaummayr (Golling, AT)
- Daniel Hochwarter (Tulbing, AT)
Cpc classification
F21S41/365
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/321
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/143
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/322
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/334
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21S41/141
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/32
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/36
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/143
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A headlight for vehicles, with a light source, a reflector arrangement containing at least one reflector module, a first reflector, which has a reflector surface having a first focal point and a second focal point, the light source being arranged at the first focal point, and a second reflector, which has a reflector surface having a focal point that coincides with the second focal point of the first reflector. The first reflector is arranged in front of the light source in the main radiation direction, the reflector surface of the first reflector being curved, with a first opening portion arranged counter to the main radiation direction and with a second opening portion arranged in a manner offset by 90° in relation to the first opening portion and facing towards the second reflector. The reflector surface of the second reflector has free-form parts such that light striking the reflector surface of the second reflector is reflected in such a way that a light distribution having a predetermined light/dark boundary is produced.
Claims
1. A headlight for vehicles, comprising: a light source (2), and a reflector arrangement (1) containing at least one reflector module (4): the at least one reflector module (4) comprising: a first reflector (6), which has a reflector surface (7) having a first focal point (f.sub.1) and a second focal point (f.sub.2), the light source (2) being arranged at the first focal point (f.sub.1), and a second reflector (8), which has a reflector surface (9) having a focal point (f.sub.3) that coincides with the second focal point (f.sub.2) of the first reflector (6); wherein the first reflector (6) is arranged in front of the light source (2) in the main radiation direction (H), the reflector surface (7) of the first reflector (6) being curved, with a first opening portion (22) arranged counter to the main radiation direction (H) and with a second opening portion (23) arranged in a manner offset by 90° in relation to the first opening portion (22) and facing towards the second reflector (8), wherein the reflector surface (9) of the second reflector (8) has free-form parts (18) such that light (11) striking the reflector surface (9) of the second reflector (8) is reflected in such a way that a light distribution (16) having a predetermined light/dark boundary (17) is produced, wherein the first focal point and the second focal point of the first reflector (6) are arranged on a straight line (g) such that the straight line (g) and a vertical (V) form an angle (φ) in the range of 30° to 70°.
2. The headlight according to claim 1, wherein the free-form parts of the second reflector (8) have faceting (18).
3. The headlight according to claim 1, wherein the reflector surface (7) of the first reflector (6) is ellipsoidally shaped, and the reflector surface (9) of the second reflector (8) is paraboloidally shaped.
4. The headlight according to claim 1, wherein the first focal point and the second focal point of the first reflector (6) are arranged on a straight line (g) that is inclined in relation to the vertical (V).
5. The headlight according to claim 1, wherein the second focal point of the first reflector (6) is arranged below the first focal point of the first reflector (6) and is arranged offset therefrom in the main radiation direction (H).
6. The headlight according to claim 1, wherein the straight line (g) and the vertical (V) form an angle (φ) in the range of 30° to 70°.
7. The headlight according to claim 1, wherein at least one of the second reflector (8) is curved in the main radiation direction (H) in such a way that a front edge (20) of the second reflector (8) is arranged to the rear of a front edge (21) of the first reflector (6) in the main radiation direction (H), or the rear edge (25) of the second reflector (8) is arranged in front of the rear edge (24) of the first reflector (6) in the main radiation direction (H).
8. The headlight according to claim 1, wherein a number of reflector modules (4) are arranged in pairs one above the other, the reflector modules (4) each having the same design.
9. The headlight according to claim 1, wherein a plurality of reflector modules (4) are integrally interconnected.
10. The headlight according to claim 1, wherein at least one reflector module (4) is a single metal-coated injection-molded part.
11. The headlight according to claim 1, wherein the reflector arrangement (1) is enclosed in a housing (3) that has cooling ribs on the outside.
12. The headlight according to claim 1, wherein the first reflector (6) is designed in such a way that the light (11) reflected on the first reflector (6) exits the first reflector (6) towards a lateral edge plane (13) extending perpendicular to the main axis (A) of the light source (2).
13. The headlight according to claim 1, wherein the second reflector (8) is arranged at a distance (a) from the first reflector (6).
14. A headlight for vehicles, comprising: a light source (2), and a reflector arrangement (1) containing at least one reflector module (4): the at least one reflector module (4) comprising: a first reflector (6), which has a reflector surface (7) having a first focal point (f.sub.1) and a second focal point (f.sub.2), the light source (2) being arranged at the first focal point (f.sub.1), and a second reflector (8), which has a reflector surface (9) having a focal point (f.sub.3) that coincides with the second focal point (f.sub.2) of the first reflector (6): wherein the first reflector (6) is arranged in front of the light source (2) in the main radiation direction (H), the reflector surface (7) of the first reflector (6) being curved, with a first opening portion (22) arranged counter to the main radiation direction (H) and with a second opening portion (23) arranged in a manner offset by 90° in relation to the first opening portion (22) and facing towards the second reflector (8), wherein the reflector surface (9) of the second reflector (8) has free-form parts (18) such that light (11) striking the reflector surface (9) of the second reflector (8) is reflected in such a way that a light distribution (16) having a predetermined light/dark boundary (17) is produced, wherein the first focal point and the second focal point of the first reflector (6) are arranged on a straight line (g) such that the straight line (g) and a vertical (V) form an angle (φ) in the range of 30° to 70°, wherein the light source (2) is arranged in such a way that a main axis (A) of the light source (2) is directed in the main radiation direction (H) of the headlight, and in that a rear edge (24) of the first reflector (6) and a rear edge (25) of the second reflector (8) extend in a vertical plane (V.sub.H1, V.sub.H2) that is arranged in front of the first focal point (f.sub.1) of the first reflector (6) in the main radiation direction (H).
15. A headlight for vehicles, comprising: a light source (2), and a reflector arrangement (1) containing at least one reflector module (4): the at least one reflector module (4) comprising: a first reflector (6), which has a reflector surface (7) having a first focal point (f.sub.1) and a second focal point (f.sub.2), the light source (2) being arranged at the first focal point (f.sub.1), and a second reflector (8), which has a reflector surface (9) having a focal point (f.sub.3) that coincides with the second focal point (f.sub.2) of the first reflector (6): wherein the first reflector (6) is arranged in front of the light source (2) in the main radiation direction (H), the reflector surface (7) of the first reflector (6) being curved, with a first opening portion (22) arranged counter to the main radiation direction (H) and with a second opening portion (23) arranged in a manner offset by 90° in relation to the first opening portion (22) and facing towards the second reflector (8), wherein the reflector surface (9) of the second reflector (8) has free-form parts (18) such that light (11) striking the reflector surface (9) of the second reflector (8) is reflected in such a way that a light distribution (16) having a predetermined light/dark boundary (17) is produced, wherein the first focal point and the second focal point of the first reflector (6) are arranged on a straight line (g) such that the straight line (g) and a vertical (V) form an angle (φ) in the range of 30° to 70°, wherein the light source (2) is arranged in such a way that a main axis (A) of the light source (2) is directed in the main radiation direction (H) of the headlight, and in that a rear edge (24) of the first reflector (6) and a rear edge (25) of the second reflector (8) extend in a vertical plane (V.sub.H1, V.sub.H2) that is arranged in front of the first focal point (f.sub.1) of the first reflector (6) in the main radiation direction (H), and wherein the first reflector (6) and the second reflector (8) are arranged spaced apart from a supporting element (10) that supports the light source (2).
Description
(1) One exemplary embodiment of the invention is described below in more detail with reference to the drawings.
(2) In the drawings:
(3)
(4)
(5)
(6) A headlight according to the invention is preferably used as a working headlight that is used, for example, for agricultural and construction machinery, snowmobiles, ships and boats. The working headlight described below is suitable for reducing glare since a reflector arrangement 1 that completely shields a light source 2 of the working headlight is provided.
(7) The headlight has a housing 3 in which reflector modules 4 arranged in pairs one above the other are arranged. In the present working headlight, three pairs of reflector modules 4 are arranged horizontally one next to the other.
(8) The reflector modules 4 are integrally interconnected. The reflector modules 4 are formed by a single metal-coated injection-molded part. The reflector arrangement 1 thus has a peripheral edge that surrounds the six reflector modules 4. The reflector modules 4 are each connected to the frame and/or adjacent reflector modules on an upper side, on a lower side and on vertical edges sides.
(9) The housing 3 has a front edge 5 that forms an opening that is closed by a transparent cover lens which is not shown. Cooling ribs, which are not shown, adjoin the rear side of the edge 4 of the housing 3.
(10) The reflector arrangement 1 has a total of six reflector modules 4, the reflector modules 4 being arranged in pairs in the vertical direction. The reflector modules 4 each have a first reflector 6 containing an ellipsoidal reflector surface 7 and a second reflector 8 having a paraboloidal reflector surface 9.
(11) The first reflector 6 is arranged in front of the light source 2 in the main radiation direction H of the headlight. The light source 2 can be designed as an LED light source that is mounted on a supporting element 10. The supporting element 10 is preferably designed as a printed circuit board. The light source 2 is preferably designed as a top LED light source that radiates light 11 normal to the printed circuit board 10. A main axis A of the light source 2 thus extends in the main radiation direction H.
(12) The second reflector 8 is arranged in the front of the first reflector 6 in the light radiation direction 12 thereof, preferably at a distance a from the first reflector 6. A lateral edge plane 13 of the first reflector 6, from which the light 11 radiates from the first reflector 6, is arranged at a distance a from the entry plane 14 of the second reflector 8. A gap 15 is thus formed between the first reflector 6 and the second reflector 8. Since the light source 2 is shielded by the first reflector 6, the light source 2 does not directly radiate light towards the cover lens.
(13) The light source 2 is arranged at a first focal point f.sub.1 of the ellipsoidal reflector surface 7 of the first reflector 6. A second focal point f.sub.2 of the ellipsoidal surface 7 of the first reflector 6 coincides with the focal point f.sub.3 of the reflector surface 9 of the second reflector 8. The first reflector 6 is used substantially to focus the light 11 and to shield the light source 2, while the second reflector 8 is used to scatter the light 11 according to a predetermined light distribution 16 having a light/dark boundary 17.
(14) The reflector surface 9 of the second reflector 8 has free-form parts such that the predetermined light distribution 16 having the light/dark boundary 17 is produced. The free-form parts are formed by faceting 18. To produce the light distribution 16 having the light/dark boundary 17, the second reflector 8 has faceting 18 having a plurality of facet elements 19 that are distributed over the surface of the paraboloidal main surface 9 of the second reflector 8. Said facet elements 19 have a dimension in the millimeter range and shape the light to produce the predetermined light distribution 16.
(15) As can be seen from
(16) The first reflector 6 has a rear edge 24, and the second reflector 8 has a rear edge 25, said edges extending in vertical planes V.sub.H1 and V.sub.H2, respectively, which are either the same or, as shown in
(17) It is clear that the first focal point f.sub.1 and the second focal point f.sub.2 of the first reflector 6 are arranged on a straight line g that is inclined in relation to a vertical plane V. The vertical V and the straight line g form an acute angle φ, which can be in the range of 30° to 70°. In the present exemplary embodiment, the angle φ=55°. The straight line g is thus rearwardly inclined from the vertical plane V by the acute angle φ.
(18) As can be seen from
(19) As can be seen from
(20) According to an alternative embodiment which is not shown, the number of reflector modules 4 may vary. If the light source has a high luminosity, the headlight may also have just a single pair of reflector modules 4 or a single reflector module 4.