AUTOMOTIVE LIGHT-EMITTING DIODE (LED) HEADLIGHT STRUCTURE
20240344682 ยท 2024-10-17
Assignee
Inventors
Cpc classification
F21W2102/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S45/47
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/153
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21W2107/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21S45/43
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/153
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An automotive light-emitting diode (LED) headlight structure includes a housing, where one end of the housing is provided with a straight section corresponding to lamp beads on a substrate; a middle part of the housing is provided with a heat dissipation slot; a heat sink for heat conduction is provided in the heat dissipation slot; one end of the housing connected to an adapter has a diameter greater than diameters at the middle part and the other end of the housing, and is provided therein with a cooling fan; and the adapter is provided with a ventilation hole for allowing the cooling air generated by the cooling fan to dissipate heat from all components in sequence. The automotive LED headlight structure greatly improves the utilization and heat dissipation efficiency of the cooling air, and appropriately reduces the volume of the heat sink and the cooling fan.
Claims
1. An automotive light-emitting diode (LED) headlight structure, comprising: a housing, a substrate provided inside the housing and provided with lamp beads, and a heat sink and a rotatable cooling fan for conducting heat; wherein a chamber is provided in the housing, and the cooling fan is provided in the chamber; an outer wall of the housing is provided with a heat dissipation slot between the cooling fan and the lamp beads; and the heat sink is provided in the heat dissipation slot and in contact with the substrate.
2. The automotive LED headlight structure according to claim 1, wherein the housing comprises a lamp bead section, a heat dissipation section and a connecting section, wherein the lamp bead section, the heat dissipation section and the connecting section are sequentially arranged; the cooling fan is provided in the connecting section; the heat dissipation slot is provided in the heat dissipation section; and the lamp bead section is straight and provided with a hole for exposing the lamp beads.
3. The automotive LED headlight structure according to claim 2, wherein a diameter of an inner wall of the connecting section is greater than a diameter of an inner wall of the heat dissipation section.
4. The automotive LED headlight structure according to claim 2, wherein an inner wall of an end of the heat dissipation section facing away from the lamp beads is provided with a fan mounting slot; a fan mounting plate is fixedly provided in the fan mounting slot; and a rotating shaft of the cooling fan is provided on the fan mounting plate.
5. The automotive LED headlight structure according to claim 1, wherein a notch is provided at a side of the heat dissipation slot in the housing, wherein the side of the heat dissipation slot in the housing faces the lamp beads.
6. The automotive LED headlight structure according to claim 1, wherein the heat sink comprises a heat dissipation bottom plate in contact with the substrate and a plurality of cooling fins vertically arranged on an outer side of the heat dissipation bottom plate; and the outer side of the heat dissipation bottom plate is provided on a plane where a bottom surface of a notch of the heat dissipation slot is located or at a side of the plane facing the substrate.
7. The automotive LED headlight structure according to claim 1, wherein an end of the housing facing away from the lamp beads is provided with an adapter for connecting an automotive system; a side of the adapter facing the lamp beads is provided with an opening and an inwardly recessed storage chamber; a circuit board is fixedly provided in the inwardly recessed storage chamber; and an end of the substrate extends into the inwardly recessed storage chamber and is connected to the circuit board.
8. The automotive LED headlight structure according to claim 1, wherein the substrate is provided with an avoidance hole, wherein the avoidance hole corresponds to the cooling fan and allows the cooling fan to pass through.
9. The automotive LED headlight structure according to claim 7, wherein the adapter is provided with a ventilation hole communicated with the inwardly recessed storage chamber.
10. The automotive LED headlight structure according to claim 1, wherein an air outlet of the cooling fan faces the heat sink.
11. The automotive LED headlight structure according to claim 2, wherein a notch is provided at a side of the heat dissipation slot in the housing, wherein the side of the heat dissipation slot in the housing faces the lamp beads.
12. The automotive LED headlight structure according to claim 3, wherein a notch is provided at a side of the heat dissipation slot in the housing, wherein the side of the heat dissipation slot in the housing faces the lamp beads.
13. The automotive LED headlight structure according to claim 4, wherein a notch is provided at a side of the heat dissipation slot in the housing, wherein the side of the heat dissipation slot in the housing faces the lamp beads.
14. The automotive LED headlight structure according to claim 2, wherein the heat sink comprises a heat dissipation bottom plate in contact with the substrate and a plurality of cooling fins vertically arranged on an outer side of the heat dissipation bottom plate; and the outer side of the heat dissipation bottom plate is provided on a plane where a bottom surface of a notch of the heat dissipation slot is located or at a side of the plane facing the substrate.
15. The automotive LED headlight structure according to claim 3, wherein the heat sink comprises a heat dissipation bottom plate in contact with the substrate and a plurality of cooling fins vertically arranged on an outer side of the heat dissipation bottom plate; and the outer side of the heat dissipation bottom plate is provided on a plane where a bottom surface of a notch of the heat dissipation slot is located or at a side of the plane facing the substrate.
16. The automotive LED headlight structure according to claim 4, wherein the heat sink comprises a heat dissipation bottom plate in contact with the substrate and a plurality of cooling fins vertically arranged on an outer side of the heat dissipation bottom plate; and the outer side of the heat dissipation bottom plate is provided on a plane where a bottom surface of a notch of the heat dissipation slot is located or at a side of the plane facing the substrate.
17. The automotive LED headlight structure according to claim 7, wherein the substrate is provided with an avoidance hole, wherein the avoidance hole corresponds to the cooling fan and allows the cooling fan to pass through.
18. The automotive LED headlight structure according to claim 2, wherein an air outlet of the cooling fan faces the heat sink.
19. The automotive LED headlight structure according to claim 3, wherein an air outlet of the cooling fan faces the heat sink.
20. The automotive LED headlight structure according to claim 4, wherein an air outlet of the cooling fan faces the heat sink.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE EMBODIMENTS
[0026] The following clearly and completely describes the technical solutions in the embodiments of the present disclosure with reference to drawings. Apparently, the described examples are merely some rather than all of the embodiments of the present disclosure. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present disclosure without creative efforts shall fall within the protection scope of the present disclosure.
[0027] It should be noted that all the directional indications (such as upper, lower, left, right, front, back, top, bottom, inner, outer, vertical, transverse, longitudinal, anticlockwise, clockwise, circumferential, radial, and axial) in the embodiments of the present disclosure are merely used to explain a relative position relationship or motion situations of the components in a specific gesture (as shown in the figures). If the specific gesture changes, the directivity indication also changes accordingly.
[0028] Moreover, the terms such as first and second described in the embodiments of the present disclosure are used only for the purpose of description and are not intended to indicate or imply relative importance, or implicitly indicate the number of the indicated technical features. Therefore, features defined by first and second may explicitly or implicitly include at least one of the features. Further, the technical solutions of the various embodiments may be combined together on the basis that the combination is implementable by those of ordinary skill in the art. In case a combination of the technical solutions is contradictory or infeasible, such a combination is deemed inexistent and not falling within the protection scope of the present disclosure.
[0029] The present disclosure proposes an automotive light-emitting diode (LED) headlight structure.
[0030] In an embodiment of the present disclosure, the automotive LED headlight structure includes housing 1, a substrate 3 provided inside the housing and provided with lamp beads 2, and heat sink 4 and rotatable cooling fan 5 for conducting heat. Chamber 11 is provided in the housing, and the cooling fan is provided in the chamber. An outer wall of the housing is provided with heat dissipation slot 12 between the cooling fan and the lamp beads. The heat sink is provided in the heat dissipation slot and in contact with the substrate.
[0031] As shown in
[0032] The housing 1 can be integrated. Alternatively, as shown in
[0033] In the automotive LED headlight structure, the heat sink can be integrated with the housing, and can be for example, made of aluminum. Alternatively, the heat sink can be detachably provided on the housing. The heat sink can be in various shapes such as square, wavy, etc. Alternatively, as shown in
[0034] As shown in
[0035] The above described are merely preferred embodiments of the present disclosure, which are not intended to limit the scope of the patent of the present disclosure. Any equivalent structure transformation made based on the description and drawings of the present disclosure, or direct or indirect application thereof in other related technical fields, should fall within the protection scope of the patent of the present disclosure.