OUTFLOW NOZZLE OF A MOTOR VEHICLE
20210086590 · 2021-03-25
Inventors
Cpc classification
B60H1/3414
PERFORMING OPERATIONS; TRANSPORTING
B60H1/24
PERFORMING OPERATIONS; TRANSPORTING
B60H1/3428
PERFORMING OPERATIONS; TRANSPORTING
B60H1/345
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An outflow nozzle of a motor vehicle includes a housing having at least one outflow slit on the outflow side. The housing narrows towards the outflow slit while forming guide surfaces, in which housing a horizontal lamella that is assigned to the outflow slit and that can be changed in its position is mounted. On the outer side, the horizontal lamella is provided with opposing lead surfaces for the air flow. Transversely to the horizontal lamella, at least one vertical lamella that is pivotable about a vertical pivot pin is arranged. The lead surfaces of the horizontal lamella, which can be pivoted about a horizontal pivot axis, run in an inclined manner towards the outflow slit.
Claims
1-12. (canceled)
13. An outflow nozzle of a motor vehicle, the outflow nozzle comprising: a housing having at least one outflow slit on an outflow side of the outflow nozzle and having guide surfaces that are inclined so as to narrow along the housing towards the outflow slit; a horizontal lamella mounted in the housing in a manner such that the horizontal lamella are pivotable about a horizontal pivot axis, wherein an outer surface of the horizontal lamella has opposing lead surfaces for air flow; and at least one vertical lamella is arranged in the housing transversely to the horizontal lamella, wherein the at least one vertical lamella is pivotable about a vertical pivot pin, wherein the opposing lead surfaces of the horizontal lamella extend in an inclined manner towards one another in a direction towards the outflow slit.
14. The outflow nozzle of claim 13, wherein the at least one vertical lamella is pivotably secured on the horizontal lamella.
15. The outflow nozzle of claim 13, wherein the at least one vertical lamella is secured on the horizontal lamella by a coupling.
16. The outflow nozzle of claim 13, wherein the at least one vertical lamella comprises a plurality of vertical lamellas, wherein the plurality of vertical lamellas are connected to one another by an axially displaceable lamella comb.
17. The outflow nozzle of claim 13, wherein the horizontal lamella is wedge-shaped in cross-section on a side of the horizontal lamella facing away from the outflow slit.
18. The outflow nozzle of claim 15, wherein the horizontal lamella has two pivot brackets opposite each other, wherein the two pivot brackets are pivotably mounted on side walls of the housing by a pivot axis.
19. The outflow nozzle of claim 18, further comprising: stops configured to limit a pivot angle of the two pivot brackets are arranged on mutually facing inner sides of the side walls of the housing.
20. The outflow nozzle of claim 13, wherein the inclination of the opposing lead surfaces of the horizontal lamella corresponds approximately to the inclination of the guide surfaces of the housing.
21. The outflow nozzle of claim 13, wherein the guide surfaces of the housing each extend at an angle of 30 to 40 degrees to horizontal.
22. The outflow nozzle of claim 18, further comprising: coupling brackets attached at ends to a coupling rod of the coupling, wherein the coupling brackets are pivotably attached to the two pivot brackets.
23. The outflow nozzle of claim 22, wherein the at least one vertical lamella has a pivot pin rotatably secured in a bearing opening of the coupling rod, wherein the pivot pin is configured to pivot the at least one vertical lamella.
24. The outflow nozzle of claim 13, wherein the horizontal lamella has a lamella bar having the opposing lead surfaces and a lamella cap attached to the opposing lead surfaces on a side facing away from the outflow slit.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021] An embodiment example of the invention is described below using the attached drawings, wherein:
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
DETAILED DESCRIPTION
[0030] It should be noted at first that the terms horizontal, vertical, top and bottom refer to the position of an outflow nozzle installed in a motor vehicle.
[0031]
[0032] On the opposite side, housing 1 is connected to an air supply (not shown).
[0033] As can be seen, for example, in
[0034] A horizontal lamella 3 is assigned to the outflow slit 2, the horizontal lamella 3 consisting of a lamella bar 5 and a lamella cap 6 connected to it, wherein in the example the horizontal lamella 3 is mirror-symmetrical in cross-section in the direction of flow.
[0035] At each of the opposing end faces of the lamella bar 5, a pivot bracket 4 is connected, which has axle bearings 16 at its free end, which serve to accommodate a pivot axis 12, by means of which the horizontal lamella 3 is pivotably mounted on side walls 13 of housing 1.
[0036] As shown in particular in
[0037] While the lead surfaces 18 are provided on the lamella bar 5, the lamella cap 6 is wedge-shaped in cross-section against the direction of flow, with all the edges formed being rounded to avoid flow resistance and noise-generating turbulence.
[0038]
[0039] Coupling brackets 9 are pivotably connected to the pivot brackets 4 by means of pivot pins 15, which are also part of a coupling element 7 as well as a coupling rod 8 to which the coupling brackets 9 are attached.
[0040] On this coupling rod 8, several vertical lamellas 10 are pivotably held parallel and spaced apart from each other, preferably at the same distance, in the longitudinal direction of the coupling rod 8. For this purpose, each vertical lamella 10 has a pivot pin 22 that engages in a bearing opening 20 of the coupling rod 8, wherein a slit 19 in the vertical lamella 10 enables the pivot pin 22 to be inserted into the bearing opening 20. This is particularly evident in
[0041] For pivoting the vertical lamella 10, a rod-shaped lamella comb 11 is provided, having bearing bores in which rotary pins 21 of the vertical lamella 10 engage, so that a pivoting movement of all vertical lamella 10 results when the lamella comb 11 is moved axially.
[0042] In
[0043]
[0044] In
[0045]
[0046]
[0047] Furthermore, the arrangement of the stops 14 on the associated side wall 13 is particularly clear.
[0048]
[0049] As described, the invention is used for an outflow nozzle with only one outflow slit 2. However, it is also conceivable to implement the invention in the case of an outflow nozzle which, in accordance with the prior art, has several outflow slits 2 arranged parallel to and at a distance from one another, to each of which a horizontal lamella 3 and vertical lamella 10 are assigned.
[0050] Although the invention has been illustrated and described in detail by way of preferred embodiments, the invention is not limited by the examples disclosed, and other variations can be derived from these by the person skilled in the art without leaving the scope of the invention. It is therefore clear that there is a plurality of possible variations. It is also clear that embodiments stated by way of example are only really examples that are not to be seen as limiting the scope, application possibilities or configuration of the invention in any way. In fact, the preceding description and the description of the figures enable the person skilled in the art to implement the exemplary embodiments in concrete manner, wherein, with the knowledge of the disclosed inventive concept, the person skilled in the art is able to undertake various changes, for example, with regard to the functioning or arrangement of individual elements stated in an exemplary embodiment without leaving the scope of the invention, which is defined by the claims and their legal equivalents, such as further explanations in the description.
LIST OF REFERENCE NUMERALS
[0051] 1 Housing
[0052] 2 Outflow slit
[0053] 3 Horizontal lamella
[0054] 4 Pivot bracket
[0055] 5 Lamella bar
[0056] 6 Lamella cap
[0057] 7 Coupling element
[0058] 8 Coupling rod
[0059] 9 Coupling bracket
[0060] 10 Vertical lamella
[0061] 11 Lamella comb
[0062] 12 Pivot axis
[0063] 13 Side wall
[0064] 14 Stop
[0065] 15 Pivot pin
[0066] 16 Axle bearing
[0067] 17 Guide surface
[0068] 18 Lead surface
[0069] 19 Slit
[0070] 20 Bearing opening
[0071] 21 Rotary pin
[0072] 22 Pivot pin