COMBINED LENS COMPRISING OF LENS AND REFLECTOR, AND VEHICLE LAMP MODULE WITH SAME
20220214022 ยท 2022-07-07
Assignee
Inventors
Cpc classification
F21S43/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/365
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/321
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/275
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/255
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/147
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/675
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21W2107/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21S41/275
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/32
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/675
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to a combined lens at least includes a lens and a reflector. Viewed from a reflective light path, parallel light is refracted twice by an incident surface and an emergent surface of the lens, is reflected once by the reflector, and then is converged to one point, namely a focus of the combined lens. A distance between the lens and the reflector is less than a focal length of the lens. The lens may be a convex lens or a concave lens, and the reflector may be a convex mirror, a plane mirror or a concave mirror. In addition, in a traditional lens, a focus position is controlled through two optical surfaces, namely an incident surface and an emergent surface, the lens is usually thicker in the case of the same focal length, and moreover, an optical axis direction is generally a center line of the lens.
Claims
1. A combined lens comprising: a lens and a reflector, wherein viewed from a reflective light path, parallel light is refracted twice by an incident surface and an emergent surface of the lens, is reflected once by the reflector, and then is converged to one point, namely a focus of the combined lens, and a distance between the lens and the reflector is less than a focal length of the lens.
2. The combined lens according to claim 1, wherein the lens is a convex lens or a concave lens, the reflector is a convex mirror, a plane mirror or a concave mirror, s number of reflecting surfaces of the lens and the reflector is 1 or several.
3. The combined lens according to claim 1, wherein reflecting surfaces of the reflector are two or more curved surfaces, and can form two or more focuses by combining with the lens.
4. The combined lens according to claim 1, wherein a reflecting surface of the reflector is a revolution curved surface, and forms continuous focuses by combining with the lens, and the continuous focuses form a curve.
5. The combined lens according to claim 1, wherein an optical axis of the combined lens is divided into two optical axes, namely a reflecting surface optical axis and a lens optical axis.
6. The combined lens according to claim 5, wherein the optical axis is divided into a lens main optical axis, and one or more reflecting surface sub optical axes.
7. A vehicle lamp module, comprising a combined lens according to claim 1.
8. The vehicle lamp module as claim 7, wherein a first reflector, a second reflector and a lens are sequentially disposed along a light path direction; the second reflector is a plane reflector or a curved surface reflector; when the second reflector is the plane reflector: a focus of the lens determined by reflection of the plane reflector is located at a focus position of the first reflector; and when the second reflector is the curved surface reflector: the curved surface reflector receives reflected light from the first reflector, and converges and reflects the light forwards, and the light is further converged by the lens and then is emitted forwards.
9. The vehicle lamp module as claim 7, wherein the first reflector adopts an ellipsoidal structure, a first focus of the ellipsoidal structure is the same as a focus of the combined lens, and a light source is disposed at a second focus of the ellipsoidal structure.
10. The vehicle lamp module as claim 7, wherein the first reflector is located below the plane reflector, and the lens is located in front of the plane reflector.
11. The vehicle lamp module as claim 7, wherein the curved surface reflector is located above or behind the first reflector, and the lens is located in front of the curved surface reflector.
12. The vehicle lamp module as claim 11, wherein a front end of the lens does not exceed a front end of the first reflector in a front-back direction.
13. The vehicle lamp module as claim 12, wherein emergent light of the lens is approximate to parallel light.
14. An adjusting method of a combined lens comprising of a lens and a reflector, comprising: adopting the combined lens of claim 1; when a second reflector is a plane reflector, adjusting a focus of the lens by adjusting an inclination angle of the plane reflector; and when the second reflector is a curved surface reflector, adjusting a light convergence degree of the curved surface reflector by adjusting a curvature of the curved surface reflector, and then adjusting a thickness of the lens.
15. A vehicle lamp module, comprising a combined lens according to claim 2.
16. The vehicle lamp module as claim 15, wherein a first reflector, a second reflector and a lens are sequentially disposed along a light path direction; the second reflector is a plane reflector or a curved surface reflector; when the second reflector is the plane reflector: a focus of the lens determined by reflection of the plane reflector is located at a focus position of the first reflector; and when the second reflector is the curved surface reflector: the curved surface reflector receives reflected light from the first reflector, and converges and reflects the light forwards, and the light is further converged by the lens and then is emitted forwards.
17. The vehicle lamp module as claim 15, wherein the first reflector adopts an ellipsoidal structure, a first focus of the ellipsoidal structure is the same as a focus of the combined lens, and a light source is disposed at a second focus of the ellipsoidal structure.
18. The vehicle lamp module as claim 15, wherein the first reflector is located below the plane reflector, and the lens is located in front of the plane reflector.
19. The vehicle lamp module as claim 15, wherein the curved surface reflector is located above or behind the first reflector, and the lens is located in front of the curved surface reflector.
20. The vehicle lamp module as claim 19, wherein a front end of the lens does not exceed a front end of the first reflector in a front-back direction.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
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[0052] Reference numerals: 1, light source; 2, first reflector; 3, light barrier; 4, lens; 5, plane reflector; 6, curved surface reflector; A, focus of combined lens.
DETAILED DESCRIPTION OF THE INVENTION
[0053] The invention will be described further with reference to the accompanying drawings and specific embodiments.
[0054] With reference to
[0055]
[0056]
Embodiment 1
[0057] With reference to
[0058] In this embodiment, the lens may be a convex lens or a concave lens. Only the convex lens is shown in the accompanying drawings, but actually the concave lens is also available. The reflector may be a convex mirror, a plane mirror or a concave mirror. The plane mirror is adopted in
[0059] Reflecting surfaces of the reflector are two or more curved surfaces, and can form two or more focuses A by combining with the lens, as shown in
[0060] A reflecting surface of the reflector is a revolution curved surface, and forms continuous focuses by combining with the lens, and the continuous focuses form a curve, as shown in
[0061] An optical axis of the combined lens is divided into two optical axes, namely a reflecting surface optical axis and a lens optical axis. The optical axis is divided into a lens main optical axis, and one or more reflecting surface sub optical axes, as shown in
[0062] With reference to
[0063] Preferably, with continued reference to
[0064] With reference to
[0065] An adjusting method of a combined lens comprising of a lens and a reflector adopts the above combined lens. A focus of the lens 4 is adjusted by adjusting an inclination angle of the plane reflector 5.
Embodiment 2
[0066] With reference to
[0067] With reference to
[0068] In a preferable solution, the first reflector 2 adopts an ellipsoidal structure. A first focus of the ellipsoidal structure is the same as a focus of the combined lens, and a light source is disposed at a second focus of the ellipsoidal structure, so that emergent light approximate to parallel light may be obtained.
[0069] With continued reference to
[0070] As a preferable solution, the curved surface reflector 6 is located above and behind the first reflector 2, and the lens 4 is located in front of the curved surface reflector 6. The setting of this position relation is beneficial to further shortening a distance of the combined lens of a vehicle lamp in a front-back direction, and saving space.
[0071] As a further preferable solution, a front end of the lens 4 does not exceed a front end of the first reflector 2 in a front-back direction.
[0072] With reference to
[0073] An adjusting method of a combined lens comprising of a lens and a reflector adopts the above combined lens. A light convergence degree of a curved surface reflector 6 is adjusted by adjusting a curvature of the curved surface reflector 6, and then a thickness of the lens 4 is adjusted.
Embodiment 3
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[0075] Only in view of the combined lens, the difference from Embodiment 1 lies in that reflecting surfaces of the reflector are two or more curved surfaces, and can form two or more focuses A by combining with the lens. As shown in
[0076] An optical axis of the combined lens is divided into two optical axes, namely a reflecting surface optical axis and a lens optical axis. The optical axis is divided into a lens main optical axis, and one or more reflecting surface sub optical axes, as shown in
[0077] The rest is the same as that of Embodiment 1.
Embodiment 4
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[0079] Only in view of the combined lens, the difference from Embodiment 3 lies in that a reflecting surface of the reflector is a revolution curved surface, and forms continuous focuses by combining with the lens, and the continuous focuses form a curve, as shown in
[0080] The rest is the same as that of Embodiment 3.
[0081] The above are the preferred embodiments of the invention, those of common skill in the art may also make various transformations or improvements on this basis. Without deviating from the general idea of the invention, these transformations or improvements should fall within the scope of protection claimed by the invention.