FAN SYSTEM FOR A HEADLIGHT OF A MOTOR VEHICLE, HEADLIGHT, AND MOTOR VEHICLE
20230074354 ยท 2023-03-09
Assignee
Inventors
- Annhild GOCKEL (Bueren, DE)
- Sebastian SCHOLZ (Soest, DE)
- Ralf SEIGER (Lippstadt, DE)
- Franz-Georg WILLEKE (Anroechte, DE)
Cpc classification
B60Q2200/00
PERFORMING OPERATIONS; TRANSPORTING
F21S45/49
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21S45/49
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A fan system for a headlight of a motor vehicle, wherein the fan system comprises a fan mount which is designed to be fastened to a housing of the headlight and comprises at least two bayonet guides and comprises a fan which comprises at least two bayonet elements, wherein the bayonet guides and the bayonet elements form a bayonet joint by means of a plug-in movement of the fan into the fan mount in an axial direction and a rotational movement of the bayonet elements into the bayonet guides in a rotational direction, wherein each of the bayonet guides is formed between a main body of the fan mount and a bayonet arm of the relevant one of the bayonet guides, wherein each of the bayonet arms is fastened to the main body and is spaced apart from the main body in a direction counter to the axial direction.
Claims
1. A fan system for a headlight of a motor vehicle, the fan system comprising: a fan mount that is designed to be fastened to a housing of the headlight; at least two bayonet guides; and a fan that comprises at least two bayonet elements, wherein the at least two bayonet guides and the at least two bayonet elements form a bayonet joint via which the fan is adapted to be fastened to the fan mount via a plug-in movement of the fan into the fan mount in an axial direction and a rotational movement of the bayonet elements into the bayonet guides in a rotational direction, wherein each of the at least two bayonet guides is formed between a main body of the fan mount and a bayonet arm of the relevant one of the bayonet guides, and wherein each of the at least two bayonet arms is fastened to the main body and is spaced apart from the main body in a direction counter to the axial direction.
2. The fan system according to claim 1, wherein at least one of the bayonet arms comprises a connecting section, via which the at least one bayonet arm is fastened to the main body and which extends transversely to the main body and in a direction counter to the axial direction.
3. The fan system according to claim 2, wherein the at least one bayonet arm with the connecting section also has a free end and extends from its end opposite the free end transversely from the connecting section and counter to the rotational direction.
4. The fan system according to claim 2, wherein the at least one connecting section forms a stop to which one of the bayonet elements is applied or applies when the fan is fastened to the fan mount.
5. The fan system according to claim 3, wherein at least one of the bayonet arms with the connecting section has an oversized area in which one of the bayonet elements is fixed between the main body and the bayonet arm when the fan is fastened to the fan mount.
6. The fan system according to claim 5, wherein at least one of the bayonet arms with the connecting section has a start-up slope between its free end and its oversized area.
7. The fan system according to claim 1, wherein one of the bayonet arms is formed as a resilient bayonet arm, which in the direction counter to the axial direction is elastic with respect to the main body of the fan mount.
8. The fan system according to claim 7, wherein a slot is formed between the resilient bayonet arm and an edge region of the main body.
9. The fan system according to claim 7, wherein the resilient bayonet arm has a latching protrusion for one of the bayonet elements.
10. The fan system according to claim 7, wherein the resilient bayonet arm comprises an actuating lever which is configured to move the resilient bayonet arm in the direction counter to the axial direction when actuating the actuating lever.
11. The fan system according to claim 1, wherein at least one of the bayonet elements is formed as a tab.
12. The fan system according to claim 1, wherein the fan comprises four bayonet elements and the fan mount comprises four bayonet guides.
13. The fan system according to claim 12, wherein the fan has a rectangular or substantially rectangular frame and in each case one of the bayonet elements is arranged at each of the corners of the rectangular frame.
14. A headlights for a motor vehicle comprising a fan system according to claim 1 and at least one illuminant.
15. A motor vehicle comprising at least one headlight according to claim 14.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0026] The present invention will become more fully understood from the detailed description given hereinbelow and the accompanying drawings which are given by way of illustration only, and thus, are not limitive of the present invention, and wherein:
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
DETAILED DESCRIPTION
[0035]
[0036] The fan 10 further comprises a rotor 12 and impellers 13 attached thereto for cooling or ventilating an illuminant 62 of a headlight 60 (see
[0037] At each corner of the frame 11 is a bayonet element 14.1, 14.2, 14.3, 14.4 in the form of a tab. The number of bayonet elements 14 can also be more or less than four. The bayonet elements 14.1, 14.2, 14.3, 14.4 have a partially round or partially circular end. On the frame 11 is also a plug 15 for the electrical connection of an energy source and optionally a control unit to the electric motor 17.
[0038]
[0039] The fan mount 20 further comprises four bayonet guides 30.1, 30.2, 30.3, 30.4. The number of bayonet guides 30 can also be more or less than four. The number of bayonet guides 30 may in particular correspond to the number of bayonet elements 14. The bayonet elements 14.1, 14.2, 14.3, 14.4 are moved into the fan mount 20 into the bayonet guides 30.1, 30.2, 30.3, 30.4 by a rotational movement in the rotational direction R (see
[0040] The fan mount 20 also has main body protrusions 28.1, 28.2 on its main body 22, wherein only one such main body protrusion 28 can be provided. The main body protrusions 28.1, 28.2 extend from the round main body 22 counter to the axial direction Z. They are provided at or near the bayonet guides 30.1, 30.3 which are transversely opposite each other. Together with the rectangular shape of the frame 11 of the fan 10 with the rectangle 16, which is not square, this allows for the determination of a single mounting position of the fan 10 on the fan mount 20. This ensures that the plug 15 is only located in the position shown on side B of the rectangle 16 (see
[0041] On the round main body 22 are functional pieces 24, 25 of the fan mount 20. The functional piece 24 has a hole 27 for strain relief by means of a cable tie. As a result, a load on the plug 15 can be avoided or at least reduced. The function piece 25 is used for fastening to the housing 61 of the headlight 60. By means of two screw holes 26.1, 26.2 in the function piece 25, the fan mount 20 can be screwed to the housing 61.
[0042] The fan mount 20 also has two thread areas 29.1, 29.2 for self-tapping screws on its main body 22. There may also be only one thread area 29 provided. The thread areas 29.1, 29.2 are reinforced or strong areas of the main body 22. Self-tapping screws can furrow a thread into the material of the main body 22 in these thread areas 29.1, 29.2. As a result, the bayonet joint 50 can be secured by means of self-tapping screws even if one or more of the bayonet elements 14 and / or the bayonet guides 30 are damaged.
[0043]
[0044] Further details of the part of the bayonet joint 50.1 are shown in
[0045] The bayonet arm 32.1 has a free end 33.1 opposite the connecting section 31.1. The bayonet arm 32.1 extends in the direction from the free end 33.1 to the connecting section 31.1 with start-up slope 36.1 to an oversized area 35.1 with respect to the main body 22. The oversized area 35.1 clamps the bayonet element 14.1 between the main body 22 and the bayonet arm 32.1. Furthermore, by means of the abutment 34.1, the bayonet arm 32.1 is located at the connecting section 31.1 designed as a stop. As a result, the part of the bayonet joint 50.1 is securely fixed in the axial direction Z and in the rotational direction R.
[0046] As
[0047] The parts of the bayonet joint 50.2, 50.3 are identical to the part of the bayonet joint 50.1 described with reference to
[0048] As shown in
[0049] As
[0050] In the present case, the fan mount 20 with all its components is designed in one piece. Likewise, the frame 11 of the fan 10 with the bayonet elements 14.1, 14.2, 14.3, 14.4 is designed in one piece. This facilitates production. The fan mount 20 may, for example, be made of a plastic. The fan 10 may be made of a metal.
[0051]
[0052] The invention being thus described, it will be obvious that the same may be varied in many ways. Such variations are not to be regarded as a departure from the spirit and scope of the invention, and all such modifications as would be obvious to one skilled in the art are to be included within the scope of the following claims.