AIR VENT WITH A DEVICE FOR CONTROLLING AN AIR FLOW
20190126726 ยท 2019-05-02
Inventors
Cpc classification
F24F13/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B64D13/00
PERFORMING OPERATIONS; TRANSPORTING
F24F13/072
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F11/79
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60H1/3414
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An air vent (10) with a device for controlling an air flow is described. The air vent (10) has a housing (12) which surrounds an air duct (16) at least in sections, and has a displacement body (32) mounted pivotably in the housing (12). The housing (12) has an air inlet portion (20), a central portion (22) and an air outlet portion (24), wherein the cross section of the air duct (16) is reduced from the central portion (22) towards the air outlet portion (24). The displacement body (32) is pivotable about a pivot axis (D) running parallel to an air outlet opening (26) provided in the air outlet portion (24), and is of drumstick-like design at least in sections.
Claims
1-10. (canceled)
11. An air vent with a device for controlling an air flow, wherein the air vent is formed as a gap vent and has a small height by comparison with its width, comprising a housing surrounding an air channel at least in a section and a displacement body pivotably mounted in the housing, wherein the housing has an air inlet section, a centre section and an air outlet section and the cross-section of the air channel reduces going from the centre section towards the air outlet section, the displacement body is pivotable about a pivot axis, which extends parallel to an air outlet opening provided in the air outlet section, and has a lobar form at least in a section in the cross-section of the air vent perpendicular to the pivot axis, the displacement body is arranged completely within the air channel and the displacement body extends over the width of the air vent.
12. The air vent according to claim 11, wherein the displacement body has at least a first section and a second section, wherein the first section is of lobar form and the second section has a thickness which is smaller by comparison with the first section.
13. The air vent according to claim 12, wherein the transition between the first section and the second section of the displacement body falls away flatly or steeply.
14. The air vent according to claim 12, wherein the pivot axis extends through the first section of the displacement body.
15. The air vent according to claim 12, wherein the first section of the displacement body is arranged to face the air inlet section or the air outlet opening.
16. The air vent according to claim 11, wherein the displacement body is of hollow or solid construction.
17. The air vent according to claim 11, wherein the air outlet section has, in the region of the air outlet opening, transitions with an edge.
18. The air vent according to claim 11, wherein curved outlet surfaces adjoin the air outlet opening.
19. The air vent according to claim 11, wherein the air channel has a smaller diameter in the region of the air inlet section than the air channel in the region of the centre section.
20. The air vent according to claim 11, wherein the displacement body is coupled with an electric motor.
21. The air vent according to claim 13, wherein the pivot axis extends through the first section of the displacement body.
22. The air vent according to claim 13, wherein the first section of the displacement body is arranged to face the air inlet section or the air outlet opening.
23. The air vent according to claim 14, wherein the first section of the displacement body is arranged to face the air inlet section or the air outlet opening.
24. The air vent according to claim 12, wherein the displacement body is of hollow or solid construction.
25. The air vent according to claim 12, wherein the air outlet section has, in the region of the air outlet opening, transitions with an edge.
26. The air vent according to claim 12, wherein curved outlet surfaces adjoin the air outlet opening.
27. The air vent according to claim 12, wherein the air channel has a smaller diameter in the region of the air inlet section than the air channel in the region of the centre section.
28. The air vent according to claim 12, wherein the displacement body is coupled with an electric motor.
Description
[0025] In the drawings:
[0026]
[0027]
[0028]
[0029]
[0030]
[0031] In the figures, parts provided with the same reference numerals substantially correspond with one another insofar as nothing to the contrary is indicated. Moreover, description of components which are not significant for understanding of the teaching described herein has been dispensed with.
[0032]
[0033] The displacement body 32 is mounted in the region of the centre section 22 to be pivotable about a pivot axis D. The air vent 10 has an air outlet opening 26 in the air outlet section 24. The height of the air outlet opening 26 is substantially less than the height of the air channel 16 in the region of the centre section 22 and in the region of the air inlet section 20.
[0034] The cross-section of the air channel 16 increases starting from the air inlet section 20 towards the centre section 22 by a small amount, such as is illustrated in
[0035] The outlet surfaces 28 have a curvature. By way of the curvature 28 it is possible in the case of a neutral setting (not illustrated in
[0036] The channel walls 18 similarly have a curvature which reduces the air channel 16 towards the air outlet opening 26. As a result, in the case of orientation of the displacement body 32 as shown in
[0037] In the case of a central orientation, which is not illustrated in
[0038] The displacement body 32 can also be brought into intermediate settings, in which case a non-uniform distribution of the entering air flow to the upper region and the lower region can be undertaken. If, for example, air flows not only in the upper region, but also in the lower region, with the supplied air quantity in the upper region being significantly greater than in the lower region, the air flow which is issued via the lower region in the direction of the air outlet opening 26 causes a slight upward deflection of the output air flow.
[0039] The air vent 10 is constructed so that the side walls of the air vent 10 through which the pivot axis D runs form a flat surface. Such a curvature therefore prevails in the air channel 16 only in the opposite channel walls 18. The displacement body 32 is constructed in analogous manner so that the side surfaces of the displacement surfaces 32, through which the pivot axis D extends, represent a planar surface and lie against the flat channel walls of the air channel 16. The displacement body 32 therefore extends substantially over the entire width of the air channel 16 in the drawing direction. The cross-section of the air vent 12 is therefore substantially the same over its entire length, as illustrated in
[0040] The air vent 10 is particularly suitable as a so-called gap air vent, which usually has a width of more than 300 millimetres. The displacement body 32 is controllable by way of a control wheel or an electric motor. For that purpose the displacement body 32 has, for example, bearing pins received in corresponding openings in the opposite planes of the channel walls of the air channel 16. At least one of the bearing pins is then coupled with the electric motor or the control wheel by way of gearwheels or other drive means. Activation of the electric motor by control commands via buttons or other control elements or activation by rotation of a control wheel produces pivotation of the displacement body 32. The displacement body 32 is thereby pivoted and changes the apportioning of the air flow, which is supplied by way of the air inlet section 22, to the upper section and the lower section. Deflection of the output air flow over a wide range can thereby be achieved in simple mode and manner.
[0041] Moreover, the air vent 10 has only a few components. The components such as displacement body 32, bearing pins and housing 12 can consist of, for example, a plastics material and can therefore be produced simply and economically in high batch numbers.
[0042]
[0043] As can be inferred from the schematic illustration of
[0044]
[0045] The air vent 10 comprises, in correspondence with the air vent 10 of the first form of embodiment, a housing 12 with an air inlet section 20, a centre section 22 and an air outlet section 24, an air outlet opening 26 being provided in the air outlet section 24. The transitions 30 form an edge at which the output air flow 42 (see
[0046] The displacement body 32 is mounted to be pivotable about the pivot axis D. Analogously to the first described form of embodiment, the displacement body 32 can be pivoted by way of a control wheel or an electric motor. The second section 36 of the displacement body 32 has a greater length than the displacement body 32, which is shown in
[0047] In the case of the setting of the displacement body 32 shown in
[0048] If the displacement body 32 were pivoted in counter-clockwise sense, the second section 36 would free an air flow between the first section 34 of the displacement body 32 and the lower channel wall 18 so that depending on the setting of the second section 36 an air deflection of the output air flow upwardly is achieved. If the second section 36 is disposed substantially in a middle setting, in which case the second section 36 is in a horizontal position, there is substantially no deflection of an output air flow and the air flow flows in the drawing direction of
[0049] By virtue of the formation of the first sections 34 as club-like sections 34 the displacement body 32 of the first form of embodiment and the displacement body 32 of the second form of embodiment produce, in addition to the air deflection, acceleration of the output air flow, since the cross-section of the air channel 16 is substantially reduced.
[0050]
[0051]
[0052]
[0053] As illustrated in
[0054] An advantage of the construction of the air vent 10 (particularly the form of embodiment illustrated in
REFERENCE NUMERAL LIST
[0055] 10 air vent
[0056] 12 housing
[0057] 14 supply channel
[0058] 16 air channel
[0059] 18 channel wall
[0060] 20 air inlet section
[0061] 23 centre section
[0062] 24 air outlet section
[0063] 26 air outlet opening
[0064] 28 outlet surface
[0065] 30 transition
[0066] 32 displacement body
[0067] 34 section
[0068] 36 section
[0069] 38 transition
[0070] 40 air flow
[0071] 42 air flow
[0072] D pivot axis