Fan device
10662956 · 2020-05-26
Assignee
Inventors
- Robert Dent (Schwäbisch Hall, DE)
- Bernd Armin Schanzenbach (Mainhardt, DE)
- Elmar Mangold (Unterschneidheim, DE)
Cpc classification
F04D25/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/644
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04D25/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/52
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to a fan device with at least one locking element for securing the fan device to a wall portion, in particular to an electrical enclosure wall, with a front and a rear face. The fan device is inserted into a front-face wall portion opening in a pressureless manner, and the locking element is movable in the direction of the rear face of the wall portion in the inserted state.
Claims
1. A fan device for being inserted without pressure in an opening of a wall, the wall having a wall front side and a wall rear side, the opening connecting the wall front side and the wall rear side, the fan device comprising: a fan front side proximal to the wall front side; a locking element for fastening the fan device in the opening of the wall, wherein the locking element displaces in a mounting direction from the wall front side to the wall rear side; wherein the locking element is mounted to be actuatable from the fan front side; and wherein the locking element comprises a rotatable locking bar, the rotating locking bar is part-circle-shaped and comprises a latching lug for engaging with latching steps integrated in a fan carrier; wherein the rotating locking bar comprises an actuating pressure surface onto which a force is manually exertable by a user to enable a distal end of the rotating locking bar to abut on the wall.
2. The fan device of claim 1, wherein the locking element comprises a plurality of latching positions for locking the fan device to a plurality of thicknesses of the wall.
3. The fan device of claim 1, further comprising a housing; wherein the locking bar rotates relative to the housing to fasten the fan device to the wall.
4. The fan device of claim 1, further comprising a housing; wherein the locking element is movable to the housing and is manually displaceable from a mounting position into a fixing position, the locking element being in the fixing position when the fan device is fixed onto the wall, the locking device being in the mounting position when the fan device is inserted in the opening of the wall.
5. The fan device of claim 4, wherein in the fixing position the locking element abuts the rear side of the wall.
6. The fan device of claim 1, further comprising a housing; wherein the locking element is disposed through the housing, the locking element being displaceable relative to the housing.
7. The fan device of claim 1, wherein the locking element is disposed in an inner edge region of the fan device.
8. The fan device of claim 1, wherein the locking element is disposed in a side region of the fan carrier.
9. The fan device of claim 1, wherein the locking element is stepless for locking the fan device to a plurality of thicknesses of the wall.
10. The fan device of claim 1, further comprising a fan carrier; wherein the locking element is disposed in at least a corner of the fan carrier.
11. A fan device for mounting in an opening of a wall, the wall having a wall front side and a wall rear side, the opening connecting the wall front side and the wall rear side, the fan device comprising: a fan carrier comprising a fan front side proximal to the wall front side when the fan device is mounted in the opening, and a plurality of latching steps integrated in the fan carrier; a locking element for preventing the fan device from dismounting from the opening, the locking element comprising a user-initiated pressure surface actuatable from the fan front side, a rotatable locking bar having a part circle-shape, the pressure surface connected to the locking bar, and a latching lug for engaging with the plurality of latching steps, the latching lug formed on a side of the locking bar; wherein the locking bar displaces in a direction of rotation from the wall front side to the wall rear side to abut a portion of the latching lug against the wall rear side to lockably mount the fan device in the opening.
12. The fan device of claim 11, wherein the portion of the latching lug abutting the wall rear side is a distal end of the latching lug.
13. The fan device of claim 11, wherein the direction of rotation is substantially perpendicular to a plane of the wall.
14. The fan device of claim 11, further comprising a housing; wherein the locking element is disposed through the housing, the locking element being displaceable relative to the housing.
15. The fan device of claim 11, wherein the locking element is disposed in an inner edge region of the fan device.
16. The fan device of claim 11, wherein the locking element is disposed in a side region of the fan carrier.
17. The fan device of claim 11, wherein the side of the locking bar is formed on is arcuate.
Description
BRIEF DESCRIPTION OF THE INVENTION
(1) The invention is explained in more detail below by way of the drawing, in which:
(2)
(3)
(4)
(5)
(6)
(7)
(8)
DETAILED DESCRIPTION OF THE INVENTION
(9)
(10) In order to avoid dust entering the switching cabinet by means of the fan device 1, the fan device 1 is preferably provided with a dust cover 7 which is shown in an open state in
(11) In the representation according to
(12)
(13) As can be seen from
(14) As
(15) The mounting and the fastening of the fan device 1 on the wall portion 3 is effected in the case of said embodiment of the invention in such a manner that the fan device 1 is inserted into a corresponding recess of the wall portion 3. In this connection, the locking element A is situated in a mounting position such that the insertion of the fan device 1 into the recess of the wall portion is not obstructed. As a result, the locking element A or the tongue 13 is pulled in the movement direction 21 such that the tensioning hook 15 moves toward the inside surface 25 of the wall portion 3. The pull on the tongue 13 is effected until the tensioning hook 15 abuts against the inside surface 25 of the wall portion 3 and consequently has reached its fixing position. As a result of the locking element A being displaceable in the mounting direction 25, it is able to be used for arbitrary wall thicknesses.
(16) The tensioning hook is realized in particular in a wedge-shaped manner and is pulled against the inside surface 25 of the wall portion 3 in such a manner that a pressing pressure is generated between the fan device 1 and the wall portion 3. A locking of the locking element A is preferably effected by corresponding latching elements which can be mounted, for example, between the guide device 23 and the tongue 13. However, a different locking mechanism which prevents a more extensive relative displacement between the locking element A and the fan device 1 or the fan carrier 5 is basically also conceivable.
(17) In
(18)
(19) The rotating locking bar 27 is realized in a substantially part-circle-shaped or hook-shaped manner and interacts with latching steps 31 which are integrated in the fan carrier 5 and in which a latching lug 33, which is provided on the rotating locking bar 27, is able to engage when the rotating locking bar 27 is displaced in the direction of rotation 35. The direction of rotation 35 is substantially perpendicular to a plane of the wall portion 3 with the fan device 1 in a mounted state. The latching steps 31 are arranged along the movement direction of the rotating locking bar 27. The further the rotating locking bar 27 is rotated in the direction of rotation 35, the closer a distal end 37 of the rotating locking bar 27 moves to an inside surface 25 of the wall portion 3. The rotating locking bar 27 is rotated in the direction of rotation 35 and the latching lug 33 consequently latches in consecutive latching steps 31 until the distal end 37 of the rotating locking bar 27 knocks against the inside surface 25 of the wall portion 3. As a result of the latching lug 33 latching in the latching steps 31 of the fan carrier 5, it is no longer possible for the rotating locking bar 27 to be released from the fixing position (see
(20) The fan device 1 is fastened on a wall portion 3 by way of the locking element B according to the second embodiment of the invention therefore as follows:
(21) First of all, the fan device 1 is inserted into a corresponding recess in the wall portion 3, the cut-out in the wall portion 3 being adapted to the contour and the size of the fan device 1 or in particular to the dimensions of the fan carrier 5. In this connection, the locking element is situated in a mounting position in which the insertion of the fan device into the recess of the wall portion is not obstructed. Once the fan carrier 5 has been inserted into the recess of the wall portion 3, the rotating locking bar 27 is actuated manually by a user exerting a force onto a pressure surface 39 such that the rotating locking bar 27 is displaced around its rotational axis D in the direction of rotation 35. The locking lug 33, in this connection, gradually latches into the latching steps 31 integrated in the fan carrier 5 until the distal end 37 knocks against the inside surface 25 of the wall portion 3 and consequently assumes its fixed position.
(22) The number and the characteristics of the latching steps in combination with the latching lug 33 are preferably matched to different wall thicknesses. Each latching step 31 consequently enables a wall portion 3 with a different thickness to be received. Only four latching steps 31 are shown in the present example. However, it is obvious that it is also possible to provide a finer grid system which allows for a wider spectrum of wall thicknesses and is consequently usable in an even more flexible manner.
(23)
(24) Each of the locking elements B has to be manually actuated when the fan device 1 is fastened on the wall portion 3 in order to engage the rotating locking bar 27 behind the wall portion 3. As is made particularly clear in
(25) The locking element B can be opened, in principle, from the inside surface of the wall portion, for example by means of a screwdriver. In addition, the pressure surface 39 can be provided with a fluting such that the pressure is also able to be exerted by way of a tool, for example by way of a screwdriver.
(26)
(27) The second portion 43 includes a tensioning spring element 49 which is provided to be received in a recess 51 of a fan carrier 5 in order to engage there in a clamping or latching manner with at least one projection 53. The tensioning spring element 49 is realized in a resilient manner such that a spring arm 55 is displaceable when the tensioning spring element 49 is guided through the opening 51 in the fan carrier 5 and once it has passed through the opening 51 is expanded again and engages with the projection 53. In this way, the tensioning spring element 49 or the spring arm 55 prevents the second portion 43 being able to be released again from the fan device 1 through the opening 51.
(28) A fan device 1 is consequently fastened on a wall portion 3 by way of the locking element C in all as follows:
(29) First of all, as shown in
(30) In
(31) All in all, the present invention creates an advantageous fan device and advantageous locking elements which, unlike the conventional locking mechanisms, do not require excessive pressure to be exerted on the fan device to generate latching. Rather, the locking elements engage behind in such a manner that, in its fixing position, the locking element engages with the inside surface 25 of the wall portion 3, pressure being exerted exclusively onto the locking element and not onto the front side of the wall portion 3. In this way, the fan device 1 is fastened gently on the wall portion 3 and any deformation of a wall portion 3 is avoided.
LIST OF REFERENCES
(32) 1 Fan device 3 Wall portion 5 Fan carrier 7 Dust cover 9 Step 11 Frame 13 Tongue 15 Tensioning hook 17 Side region 19 Corner region 21 Mounting direction 23 Guide device 25 Inside surface 27 Rotating locking bar 29 Bearing 31 Latching steps 33 Latching lug 35 Direction of rotation 37 Distal end 39 Pressure surface 41 First portion 43 Second portion 45 Receiving region 47 Spring arm 49 Tensioning spring element 51 Opening 53 Projection 55 Spring arm 57 Recess A Locking element B Locking element C Locking element D Rotational axis