Optical device for headlight, automotive lighting device and automobile
11268671 · 2022-03-08
Assignee
Inventors
Cpc classification
F21S41/322
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/336
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/321
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/335
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/43
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21W2102/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/147
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/285
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21S41/33
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An optical device for the headlight includes a left-hand drive optical element and a right-hand drive optical element. The left-hand drive optical element includes a left-hand drive light incident part and a left-hand drive transmission part which is arranged in the light emergent end region of the left-hand drive light incident part and extends in the light emergent direction; the light emergent end of the left-hand drive transmission part is provided with a left-hand drive cut-off part capable of forming a left-hand drive cut-off line. The right-hand drive optical element is similarly arranged. The disclosure further relates to the automotive lighting device including the optical device and the automobile including the automotive lighting device.
Claims
1. An optical device for a headlight, comprising a left-hand drive optical element and a right-hand drive optical element, wherein the left-hand drive optical element comprises a left-hand drive light incident part and a left-hand drive transmission part which is arranged in a light emergent end region of the left-hand drive light incident part and extends in a light emergent direction, and the light emergent end of the left-hand drive transmission part is provided with a left-hand drive cut-off part capable of forming a left-hand drive cut-off line; and the right-hand drive optical element comprises a right-hand drive light incident part and a right-hand drive transmission part which is arranged in a light emergent end region of the right-hand drive light incident part and extends in the light emergent direction, and the light emergent end of the right-hand drive transmission part is provided with a right-hand drive cut-off part capable of forming a right-hand drive cut-off line; the left-hand drive cut-off part comprises a left-hand drive cut-off part horizontal line section, a left-hand drive cut-off part turning point section and a left-hand drive cut-off part diagonal section, and the right-hand drive cut-off part comprises a right-hand drive cut-off part horizontal line section, a right-hand drive cut-off part turning point section and a right-hand drive cut-off part diagonal section; the left-hand drive light incident part, the left-hand drive transmission part, the right-hand drive light incident part and the right-hand drive transmission part are integrally formed and are of a transparent structure, and the thickness of the left-hand drive cut-off part and the right-hand drive cut-off part is greater than or equal to 0.5 mm.
2. An automotive lighting device, comprising a lens and the optical device according to claim 1, the left-hand drive light incident part is provided with a left-hand drive light source correspondingly, and the right-hand drive light incident part is provided with a right-hand drive light source correspondingly.
3. The automotive lighting device according to claim 2, wherein the left-hand drive light incident part is internally provided with the left-hand drive light source, and the right-hand drive light incident part is internally provided with the right-hand drive light source.
4. The automotive lighting device according to claim 2, wherein the left-hand drive light source and the right-hand drive light source are independently arranged and are individually addressable so as to be independently turned on and off.
5. The automotive lighting device according to claim 2, wherein the left-hand drive light source and the right-hand drive light source are each composed of one or more LED light sources or laser light sources.
6. The automotive lighting device according to any one of claims 2 to 5, wherein the left-hand drive cut-off part and the right-hand drive cut-off part are located in the focal region of the lens.
7. An automobile, comprising the automotive lighting device according to claim 2.
8. The optical device for the headlight according to claim 1, wherein the left-hand drive light incident part and the right-hand drive light incident part each comprise a light source connection portion and a lampshade, each light source connection portion is a concave arc surface cavity, and each lampshade is a horn-shaped light condensing cup which is gradually enlarged from an end close to the corresponding light source to an end away from the corresponding light source.
9. The optical device for the headlight according to claim 1, wherein the left-hand drive cut-off part horizontal line section and the right-hand drive cut-off part horizontal line section are of a horizontal concave structure.
10. The optical device for the headlight according to claim 1, wherein the left-hand drive transmission part and the right-hand drive transmission part are both of a hollow closed structure, the light emergent end of the left-hand drive light incident part is located in the hollow closed structure of the left-hand drive transmission part, the light emergent end of the right-hand drive light incident part is located in the hollow closed structure of the right-hand drive transmission part, and the joint between the left-hand drive transmission part and the right-hand drive transmission part forms a narrow-end-up wedge-shaped cavity with openings at the upper end and the lower end; wherein, the left-hand drive cut-off part diagonal section, the left-hand drive cut-off part turning point section, the right-hand drive cut-off part diagonal section and the right-hand drive cut-off part turning point section are arranged at the light emergent end of the wedge-shaped cavity.
11. An optical device for a headlight, comprising a left-hand drive optical element and a right-hand drive optical element, wherein the left-hand drive optical element comprises a left-hand drive light incident part and a left-hand drive transmission part which is arranged in a light emergent end region of the left-hand drive light incident part and extends in a light emergent direction, and the light emergent end of the left-hand drive transmission part is provided with a left-hand drive cut-off part capable of forming a left-hand drive cut-off line; and the right-hand drive optical element comprises a right-hand drive light incident part and a right-hand drive transmission part which is arranged in a light emergent end region of the right-hand drive light incident part and extends in the light emergent direction, and the light emergent end of the right-hand drive transmission part is provided with a right-hand drive cut-off part capable of forming a right-hand drive cut-off line; the left-hand drive light incident part and the left-hand drive transmission part are integrally formed and are of a transparent structure, the right-hand drive light incident part and the right-hand drive transmission part are integrally formed and are of a transparent structure; and the left-hand drive transmission part and the right-hand drive transmission part are independently arranged; and the thickness of the left-hand drive cut-off part and the right-hand drive cut-off part is greater than or equal to 0.5 mm.
12. An automotive lighting device, comprising a lens and the optical device according to claim 11, the left-hand drive light incident part is provided with a left-hand drive light source correspondingly, and the right-hand drive light incident part is provided with a right-hand drive light source correspondingly.
13. The automotive lighting device according to claim 12, wherein the left-hand drive light source and the right-hand drive light source are each composed of one or more LED light sources or laser light sources.
14. The automotive lighting device according to claim 12, wherein the left-hand drive light source and the right-hand drive light source are independently arranged and are individually addressable so as to be independently turned on and off.
15. The automotive lighting device according to claim 12, wherein the left-hand drive light incident part is internally provided with the left-hand drive light source, and the right-hand drive light incident part is internally provided with the right-hand drive light source.
16. The automotive lighting device according to any one of claims 12 to 15, wherein the left-hand drive cut-off part and the right-hand drive cut-off part are located in the focal region of the lens.
17. An automobile, comprising the automotive lighting device according to claim 12.
18. The optical device for the headlight according to claim 11, wherein the left-hand drive cut-off part comprises a left-hand drive cut-off part horizontal line section, a left-hand drive cut-off part turning point section and a left-hand drive cut-off part diagonal section, and the right-hand drive cut-off part comprises a right-hand drive cut-off part horizontal line section, a right-hand drive cut-off part turning point section and a right-hand drive cut-off part diagonal section.
19. The optical device for the headlight according to claim 18, wherein the left-hand drive cut-off part horizontal line section and the right-hand drive cut-off part horizontal line section are of a horizontal concave structure.
20. The optical device for the headlight according to claim 11, wherein the left-hand drive light incident part and the right-hand drive light incident part each comprise a light source connection portion and a lampshade, each light source connection portion is a concave arc surface cavity, and each lampshade is a horn-shaped light condensing cup which is gradually enlarged from an end close to the corresponding light source to an end away from the corresponding light source.
21. The optical device for the headlight according to claim 11, wherein the left-hand drive transmission part and the right-hand drive transmission part are both of a hollow closed structure, the light emergent end of the left-hand drive light incident part is located in the hollow closed structure of the left-hand drive transmission part, and the light emergent end of the right-hand drive light incident part is located in the hollow closed structure of the right-hand drive transmission part.
22. An optical device for a headlight, comprising a left-hand drive optical element and a right-hand drive optical element, wherein the left-hand drive optical element comprises a left-hand drive light incident part and a left-hand drive transmission part which is arranged in a light emergent end region of the left-hand drive light incident part and extends in a light emergent direction, and the light emergent end of the left-hand drive transmission part is provided with a left-hand drive cut-off part capable of forming a left-hand drive cut-off line; and the right-hand drive optical element comprises a right-hand drive light incident part and a right-hand drive transmission part which is arranged in a light emergent end region of the right-hand drive light incident part and extends in the light emergent direction, and the light emergent end of the right-hand drive transmission part is provided with a right-hand drive cut-off part capable of forming a right-hand drive cut-off line; the left-hand drive cut-off part comprises a left-hand drive cut-off part horizontal line section, a left-hand drive cut-off part turning point section and a left-hand drive cut-off part diagonal section, and the right-hand drive cut-off part comprises a right-hand drive cut-off part horizontal line section, a right-hand drive cut-off part turning point section and a right-hand drive cut-off part diagonal section; the left-hand drive light incident part and the left-hand drive transmission part are independently arranged, and the right-hand drive light incident part and the right-hand drive transmission part are independently arranged, and the left-hand drive transmission part, the left-hand drive cut-off part, the right-hand drive transmission part and the right-hand drive cut-off part are integrally formed and are of a plate structure with the thickness being less than or equal to 2 mm; wherein, the left-hand drive cut-off part diagonal section intersects with the right-hand drive cut-off part diagonal section, and the distance between the left-hand drive cut-off part turning point section and the right-hand drive cut-off part turning point section is less than or equal to 2 mm.
23. An automotive lighting device, comprising a lens and the optical device according to claim 22, the left-hand drive light incident part is provided with a left-hand drive light source correspondingly, and the right-hand drive light incident part is provided with a right-hand drive light source correspondingly.
24. The automotive lighting device according to claim 23, wherein the left-hand drive light incident part is internally provided with the left-hand drive light source, and the right-hand drive light incident part is internally provided with the right-hand drive light source.
25. The automotive lighting device according to claim 23, wherein the left-hand drive light source and the right-hand drive light source are independently arranged and are individually addressable so as to be independently turned on and off.
26. The automotive lighting device according to claim 23, wherein the left-hand drive light source and the right-hand drive light source are each composed of one or more LED light sources or laser light sources.
27. The automotive lighting device according to any one of claims 23 to 26, wherein the left-hand drive cut-off part and the right-hand drive cut-off part are located in the focal region of the lens.
28. An automobile, comprising the automotive lighting device according to claim 23.
29. The optical device for the headlight according to claim 22, wherein the left-hand drive light incident part and the right-hand drive light incident part each comprise a light source connection portion and a lampshade, each light source connection portion is a concave arc surface cavity, and each lampshade is a horn-shaped light condensing cup which is gradually enlarged from an end close to the corresponding light source to an end away from the corresponding light source.
30. The optical device for the headlight according to claim 22, wherein the left-hand drive cut-off part horizontal line section and the right-hand drive cut-off part horizontal line section are of a horizontal concave structure.
31. The optical device for the headlight according to claim 22, wherein the upper surfaces of the left-hand drive transmission part and the right-hand drive transmission part are provided with aluminum plating layers, and the reflectivity of the aluminum plating layers is greater than or equal to 0.8.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The following drawings are used to provide a further understanding of the present disclosure, constitute a part of the specification and are used to explain the present disclosure together with the following embodiments, but the scope of protection of the present disclosure is not limited to the following drawings and embodiments. In the drawings:
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(29) Brief Description of the Symbols:
(30) TABLE-US-00001 1 Left-hand drive optical element, 101 Left-hand drive light incident part, 102 Left-hand drive transmission part, 103 Left-hand drive cut-off part, 1031 Left-hand drive cut-off part horizontal line section, 1032 Left-hand drive cut-off part turning point section 1033 Left-hand drive cut-off diagonal section, 2 Right-hand drive optical element, 201 Right-hand drive light incident part, 202 Right-hand drive transmission part, 203 Right-hand drive cut-off part, 2031 Right-hand drive cut-off part horizontal line section, 2032 Right-hand drive cut-off part turning point section, 2033 Right-hand drive cut-off part diagonal section, 3 Wedge-shaped cavity, 4 Right-hand drive light source, 5 light source connection portion, 6 lampshade, a Left-hand drive cut-off line, b Right-hand drive cut-off line, c Light pattern of the left-hand drive low-beam cut-off part, d Light pattern of the right-hand drive low-beam cut-off part.
DETAILED DESCRIPTION OF THE EMBODIMENTS
(31) The embodiments of the present disclosure are described in detail below with reference to the accompanying drawings. It should be understood that the embodiments described herein are only used to illustrate and explain the present disclosure, and the protection scope of the present disclosure is not limited to the embodiments described below.
(32) In the description of the present disclosure, it should be explained that the orientations or positional relationships indicated by the terms “up”, “down”, “front” and “rear” are based on the orientations or positional relationships shown in the drawings, and are only for the convenience of describing the present disclosure and simplifying the description, rather than indicating or implying that a referred device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present disclosure. In the present disclosure, terms such as “light incident part”, “transmitting part” and “cut-off part” used for technical feature description can better define and explain the corresponding technical features than the structural feature description, are more concise and clearer than the structural feature description, and can be determined by those skilled in the art without doubt.
(33) In the description of the present disclosure, it should be noted that the light emergent end or light emergent direction refers to the light emergent end or light emergent direction of the main light transmission direction. The “cut-off line” is a general term in the art. The cut-off line is a light pattern upper boundary with left-right vertical difference and a turning point at the V-axis position, and the diagonal line is connected to the upper boundary upwards via the turning point.
(34) The optical device for the headlight provided by the first aspect of the present disclosure, as shown in
(35) It should be noted that, in the present disclosure, the left-hand drive light incident part 101, the left-hand drive transmission part 102, the left-hand drive cut-off part 103, the right-hand drive light incident part 201, the right-hand drive transmission part 202 and the right-hand drive cut-off part 203 may be separately-arranged components and then fixed after being assembled, or two or more of the components may be integrally formed and fixed with other components after being assembled. According to the optical device for the headlight of the basic technical solution of the present disclosure, during usage, the left-hand drive light incident part 101 and the right-hand drive light incident part 201 are internally provided with independent light sources, when the light source in the left-hand drive light incident part 101 is turned on, light emitted by the light source is collected and collimated by the left-hand drive light incident part 101, then the light emitted from the left-hand drive light incident part 101 is collected to the left-hand drive cut-off part 103 in the front-back extension direction of the left-hand drive transmission part 102, and the light is emitted after being cut off by the left-hand drive cut-off part 103 to form a left-hand drive light pattern; when the light source in the right-hand drive light incident part 201 is turned on, light emitted by the light source is collected and collimated by the right-hand drive light incident part 201, then the light emitted from the right-hand drive light incident part 201 is collected to the right-hand drive cut-off part 203 in the front-back extension direction of the right-hand drive transmission part 202, and the light is emitted after being cut off by the right-hand drive cut-off part 203 to form a right-hand drive light pattern; the light sources of the left-hand drive light incident part 101 and the right-hand drive light incident part 201 are independently arranged and individually addressable, and are independently turned on and off. When the light source in the left-hand drive light incident part 101 is turned on while the light source in the right-hand drive light incident part 201 is turned off, a headlight pattern corresponding to a left-hand drive automobile is formed, and when the light source in the right-hand drive light incident part 201 is turned on while the light source in the left-hand drive light incident part 101 is turned off, a headlight pattern corresponding to a right-hand drive automobile is formed.
(36) It should be noted that “light is collected and collimated” refers to the process in which light emitted by the light sources in the light incident parts enters a structure at first, and the light is refracted into the light incident parts and irradiated toward the cut-off parts after being reflected by outer contours. “light is collected to the cut-off parts” means that the light entering from the light incident parts is gathered and emitted to the cut-off parts directly through the transmission parts or after being reflected by the transmission parts, and the positions of the cut-off parts are equivalent to light emergent surfaces of the optical elements, and light patterns in a cut-off shape are formed after cutting-off.
(37) In a preferred embodiment of the present disclosure, the left-hand drive light incident part 101 and the right-hand drive light incident part 201 each comprise a light source connection portion and a lampshade. Preferably, each light source connection portion is a concave arc surface cavity, and each lampshade is a horn-shaped light condensing cup which is gradually enlarged from the end close to the corresponding light source to the end away from the corresponding light source. During usage, the light sources are arranged at the corresponding positions in the spaces defined by the concave arc surface cavities, and the lampshades can effectively collect and collimate the light emitted by the corresponding light sources, the light sources are better used, and the light utilization efficiency is improved.
(38) In an embodiment of the present disclosure, as shown in
(39) It should be noted that the horizontal line section, the turning point section and the diagonal section of the left-hand drive cut-off part 103 or the right-hand drive cut-off part 203 are in a corresponding cut-off line shape, so that the light pattern formed after cutting-off is in the shape of the corresponding cut-off line. However, the shape of the lower surfaces of the optical elements is not limited, and the lower surfaces may be two bent surfaces which are in surface connection, or special-shaped curved surfaces, as long as the shape of the corresponding cut-off line is formed at the cut-off part. “Horizontal” should be understood as an extending trend in the left-right direction, that is, the line segment is horizontal or approximately horizontal from front to back, and is limited to a strict horizontal relationship.
(40) In a preferred embodiment of the present disclosure, the left-hand drive cut-off part horizontal line section 1031 and the right-hand drive cut-off part horizontal line section 2031 are of a horizontal concave structure. When the left-hand drive optical element 1 or the right-hand drive optical element 2 is cooperatively used with a lens, the focal point of the lens is not a line or a surface, and the cut-off part is used as a light emergent portion of the optical element. The aberration of light beams on the two sides can be corrected through the horizontal concave structures, and a clearer headlight pattern is formed. “Concave” here means that the distance between the position close to the middle and the lens is greater than the distance between the two sides and the lens, the concave line type is not strictly limited herein, the line may be specifically set as a inwardly-concave arc line or a line in a similar shape, for example, an irregular curve. The equivalent technical effects can be achieved as long as the left-hand drive cut-off part horizontal line section 1031 and the right-hand drive cut-off part horizontal line section 2031 are in a concave linear shape in the plan view from top to bottom. Specifically, the left-hand drive cut-off part horizontal line section 1031 and the right-hand drive cut-off part horizontal line section 2031 may be arranged as an inwardly-concave arc structure with the radius R being greater than or equal to 80 mm.
(41) In a preferred embodiment of the present disclosure, as shown in
(42) As shown in
(43) In a preferred embodiment of the present disclosure, as shown in
(44) Further, the upper surfaces of the left-hand drive transmission part 102 and the right-hand drive transmission part 202 are provided with aluminum plating layers, and the reflectivity of the aluminum plating layers is greater than or equal to 0.8, so that the surfaces of the transmission parts have a high light reflection effect, light collection and condensation of the transmission parts are enhanced, and the optical efficiency is improved.
(45) In a preferred embodiment of the present disclosure, as shown in
(46) Furthermore, as shown in
(47) From the above description, it can be concluded that the optical device for the headlight of the present disclosure has the advantage that the left-hand drive light pattern and the right-hand drive light pattern are switched by independently turning on or off the light sources in the left-hand drive light incident part 101 and the right-hand drive light incident part 201, and in a specific light pattern situation, the light source corresponding to the unnecessary light pattern part is turned off, the corresponding light patterns do not need to be formed by shielding the light emitted by the light sources through a light-shielding structure, so that the optical efficiency is improved, meanwhile, the left-hand drive optical element 1 and the right-hand drive optical element 2 are each provided with the light incident part and the transmission part, so that more light emitted by the light sources is collected and collimated by the light incident parts, after the light is transmitted in the transmission parts, the headlight patterns with cut-off lines are formed due to the cutting-off effect of the cut-off parts, and thus the light utilization efficiency is higher; meanwhile, the device is simple in structure, and complicated structures such as a light-shielding sheet, a rotating mechanism and a solenoid valve are not required, so that an optical system is simple and easy to install; and the left-hand drive light pattern and the right-hand drive light pattern are switched by independently turning on or off the light sources in the left-hand drive light incident part 101 and the right-hand drive light incident part 201, mechanism noise of the rotating mechanism and the solenoid valve is avoided, and noiseless switching can be achieved.
(48) On the basis of the above-mentioned optical device for the headlight according to the present disclosure, the second aspect of the present disclosure provides an automotive lighting device comprising a lens and the above-mentioned optical device. The left-hand drive light incident part 101 is provided with a left-hand drive light source correspondingly, and the right-hand drive light incident part 201 is provided with a right-hand drive light source correspondingly.
(49) Further, the left-hand drive light incident part 101 is internally provided with the left-hand drive light source, and the right-hand drive light incident part 201 is internally provided with the right-hand drive light source 4. The left-hand drive light source and the right-hand drive light source 4 are independently arranged and are individually addressable so as to be independently turned on and off. When the left-hand drive light source is turned on and the right-hand drive light source 4 is turned off, light irradiation during left-hand driving is achieved, and when the right-hand drive light source 4 is turned on and the left-hand drive light source is turned off, light irradiation during right-hand driving is achieved. The lens is conventionally arranged as a secondary optical element of an automotive lighting device. The light emergent surface of the left-hand drive light source faces the left-hand drive light incident part 101, and the light emergent surface of the right-hand drive light source 4 faces the right-hand drive light incident part 201, wherein the light source may be one or more LED light sources or laser light sources. Further, the left-hand drive cut-off part 103 and the right-hand drive cut-off part 203 are located in the focal region of the lens, and the cut-off parts are not strictly limited to be located on the focal point of the lens here and may be slightly off, those skilled in the art can adjust according to different design situations, and the situation that the cut-off parts are located on the focus is not excluded. Those skilled in the art can clearly understand that the structure for forming a cut-off line is arranged at a position coincident with the focal point of the lens.
(50) According to the present disclosure, the automotive lighting device may further be provided with an auxiliary low-beam structure, and
(51) On the basis of the above-mentioned automotive lighting device of the present disclosure, a third aspect of the present disclosure provides an automobile including the above-mentioned automotive lighting device, and therefore has at least all the beneficial effects brought by the technical solutions of the embodiments of the optical device for the headlight, which are not repeated here.
(52) The preferred embodiments of the present disclosure have been described in detail above with reference to the accompanying drawings, but the present disclosure is not limited thereto. Within the scope of the technical idea of the present disclosure, various simple modifications can be made to the technical solutions of the present disclosure, including the combination of various specific technical characteristics in any suitable manner. In order to avoid unnecessary repetition, various possible combinations are not described separately in the present disclosure. However, these simple modifications and combinations should also be regarded as the content disclosed by the present disclosure and all belong to the protection scope of the present disclosure.