Projection assembly for a motor vehicle headlight
11614213 · 2023-03-28
Assignee
Inventors
Cpc classification
F21S41/47
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/29
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/143
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/255
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/43
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21S41/25
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/255
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/29
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/43
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
Projection device (10) for a motor vehicle headlight, which projection device (10) comprises the following: projection optics (50), a shield element (100), a base body (200), wherein the shield element (100) can be pushed onto the base body (200) along a push-on direction (X) by means of guide elements (110) onto the base body (200), wherein the guide elements (110) engage in counter-guide elements (210), and wherein the guide elements (110) have an end stop (111) and the counter-guide elements (210) have a stop (211), which stops (211) are designed in combination with the end stops (111) to limit the movement of the shield element (100) in the direction of the push-on direction (X) towards an end position, wherein the projection device (10) comprises at least one clamping device, which comprises a first and a second clamping element (120a, 220a), wherein the first clamping element (120a) is designed to engage the second clamping element (220a), and wherein the at least one clamping device is designed to clamp the shield element (100) in its end position on the base body (200).
Claims
1. A projection device (10) for a motor vehicle headlight, the projection device (10) comprising: projection optics (50) for imaging a light distribution, which is formed from light emitted from at least one light source (30), a shield element (100), a base body (200), wherein the projection optics (50) and the shield element (100) are mechanically connected to the base body (200), wherein the shield element (100) can be pushed onto the base body (200) along a push-on direction (X) by at least two guide elements (110) onto the base body (200), wherein the at least two guide elements (110) engage in counter-guide elements (210) arranged on the base body (200) and corresponding to the at least two guide elements (110), wherein the at least two guide elements (110) of the shield element (100) respectively have an end stop (111) at a first end and the counter-guide elements (210) of the base body (200) respectively have a stop (211), which stops (211) in combination with the end stops (111) of the counter-guide elements (210) are configured to limit the movement of the shield element (100) in the direction of the push-on direction (X) towards an end position, wherein the projection device (10) comprises at least one clamping device, which comprises a first and a second clamping element (120a, 220a), wherein the first clamping element (120a) is arranged on the shield element (100) and the second clamping element (220a) is arranged on the base body (200), and wherein the first clamping element (120a) is configured to engage the second clamping element (220a), and wherein the at least one clamping device is configured to clamp the shield element (100) in a clamping device end position on the base body (200), and wherein the projection device (10) comprises a holding element (300) and at least one securing device, wherein the at least one securing device comprises a first and a second securing element (120b, 320b), wherein the first securing element (120b) is configured to engage the second securing element (320b), and wherein the at least one securing device is-configured to secure the at least one clamping device against disengagement of the clamping elements (120a, 220a), wherein the first securing element (120b) is arranged on the shield element (100) and the second securing element (320b) is arranged on the holding element (300).
2. The projection device according to claim 1, wherein the holding element (300) of the projection optics is attached to the base body (200) opposite along the push-on direction (X).
3. The projection device according to claim 1, wherein the guide elements (110) of the shield element (100) are arranged on the shield element (100) spaced apart from one another orthogonally to the push-on direction (X).
4. The projection device according to claim 1, wherein at least two clamping devices are provided, wherein a first clamping element (120a) is assigned to each guide element (110) of the shield element (100).
5. The projection device according to claim 4, wherein the first clamping element (120a) of the clamping devices is respectively arranged at a second end opposite the first end of the guide elements (110).
6. The projection device according to claim 1, wherein the first clamping element (120a) is configured as a latching element and the second clamping element (220b) is configured as a mating latching element.
7. The projection device according to claim 6, wherein the first clamping element (120a) is configured as a latching lug and the second clamping element (220b) is configured as an undercut or recess.
8. The projection device according to claim 1, wherein the second securing element (320b) of the holding element (300) is configured as a pin projecting from the holding element (300) in the direction of the push-on direction (X).
9. The projection device according to claim 1, wherein the at least one securing device is configured in such a manner that the second securing element (320b) in engagement with the first securing element (120b) exerts a force transverse to the push-on direction (X) on the first securing element (120b).
10. The projection device according to claim 1, wherein the first clamping element (120a) of the at least one clamping device is formed with the first securing element (120b) of the at least one securing device as an integral, elastic spring tongue.
11. The projection device according to claim 1, wherein the shield element (100) is arranged in a notional horizontal plane in the projection device (10).
12. The projection device according to claim 1, wherein the projection device comprises the at least one light source (30), which is configured to emit light in a main emission direction (X1).
13. The projection device according to claim 12, wherein the push-on direction (X) is parallel to the main emission direction (X1).
14. The projection device according to claim 12, wherein the holding element (300) is configured as a heat sink which is assigned to the at least one light source (30) and is configured to dissipate the heat generated by the at least one light source (30).
15. A motor vehicle headlight having at least one projection device in accordance with claim 1.
16. The projection device according to claim 1, wherein the at least two guide elements (110) consist of exactly two guide elements.
Description
(1) The invention is explained below in more detail based on exemplary drawings. In the drawings,
(2)
(3)
(4)
(5)
(6) The projection optics 50 can, as shown in the figures, be designed as a projection lens, for instance.
(7) The shield element 100 can be pushed onto the base body 200 along a push-on direction X by means of two guide elements 110, which are arranged on the shield element spaced apart from one another orthogonally to the push-on direction X, onto the base body 200, wherein the guide elements 110 engage in counter-guide elements 210 arranged on the base body 200 and corresponding to the guide elements 110.
(8) The guide elements 110 of the shield element 100 respectively have an end stop 111 at a first end and the counter-guide elements 210, which are designed as recesses or grooves on the base body 200 in the example shown, respectively have a stop 211, which stops 211 are designed in combination with the end stops 111 of the guide elements 210 to limit the movement of the shield element 100 in the direction of the push-on direction X towards an end position. In the end position of the shield element 100, the shield element 100 is arranged in a notional horizontal plane in the projection device 10. The terms “horizontal”, “vertical” etc. refer here to a correct installed state of the projection device, for example in a motor vehicle headlight.
(9)
(10) The first clamping elements 120a of the shield element 100 are designed here as latching lugs, which respectively engage with the second clamping elements 220a, which are designed as recesses or undercuts on the base body 200.
(11) The projection device 10 shown further comprises a holding element 300 and two securing devices, which respectively comprise a first and a second securing element 120b, 320b, wherein the first securing element 120b is designed to engage the second securing element 320b, and wherein the at least one securing device is designed to secure the at least one clamping device against disengagement of the clamping elements 120a, 220a, wherein the first securing element 120b is arranged on the shield element 100 and the second securing element 320b is arranged on the holding element 300, as can be seen in
(12) The holding element 300 of the projection optics 50 is attached in this case to the base body 200 opposite along the push-on direction X, wherein the second securing element 320b of the holding element 300 is designed as a pin projecting from the holding element 300 in the direction of the push-on direction X.
(13) The first clamping element 120a of each clamping device is designed with the first securing element 120b of each securing device as an integral, elastic spring tongue, which spring tongue is arranged at the second end opposite the first end of each guide element 110 on the shield element 100 and extends substantially opposite the push-on direction X, wherein the first securing element 120b is designed as a lug, and wherein the second securing element 320b in engagement with the first securing element 120b exerts a force transverse to the push-on direction X on the first securing element 120b. As a result of the lug 120b being physically or mechanically connected to the first clamping element 120a, the first clamping element 120a or the latching lug is pushed into the recess 220a by the force exerted by the second securing element 320b. The force exerted by the second securing element 320b is opposite to a release force, which would be required to disengage or release the latching connection of the latching lug 120a and the recess 220a.
(14) The projection device 10 further comprises at least one or more light sources 30, which are designed to emit light in a main emission direction X1, wherein the push-on direction X is parallel to the main emission direction X1, as is shown in
(15)
REFERENCE LIST
(16) projection device . . . 10 light source . . . 30 projection optics . . . 50 shield element . . . 100 guide element . . . 110 end stops . . . 111 first clamping element . . . 120a first securing element . . . 120b base body . . . 200 counter-guide element . . . 210 stop . . . 211 second clamping element . . . 220a holding element . . . 300 second securing element . . . 320b push-on direction . . . X main emission direction . . . X1