Ventilation portal, use of such a and motor vehicle with forced ventilation
A collapsible absorber textile bag in motor vehicle ventilation systems addresses the conflict between noise reduction and airflow by expanding under pressure for sound absorption and collapsing for minimal airflow, ensuring efficient pressure equalization and noise damping.
Patent Information
- Application Number
- DE102020201156
- Authority / Receiving Office
- DE · DE
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2020-01-31
- Publication Date
- 2025-11-06
- Estimated Expiration
- 2040-01-31
AI Technical Summary
Existing ventilation systems in motor vehicles face a conflict between effective noise reduction and air permeability for pressure compensation, with thick absorber textiles providing good noise protection but high flow resistance, and open frames offering optimal pressure compensation but no damping.
A collapsible absorber textile bag fixed to the frame, which expands under pressure to increase surface area for sound absorption and airflow, while collapsing to minimize air flow when not in use, ensuring both effective noise reduction and rapid pressure equalization.
The collapsible absorber textile achieves high acoustic damping and airflow throughput, adapting to vehicle structures for versatile use without model-specific adaptations, while maintaining efficient pressure equalization.
Smart Images

Figure 00000000_0000_ABST
Abstract
Description
[0001] The invention relates to a ventilation portal comprising - a rigid frame surrounding an air passage opening and - an absorber textile made of a flexible, air-permeable, sound-absorbing material, tightly fixed to the frame and covering the air passage opening.
[0002] The invention further relates to the use of such a ventilation portal as a ventilation portal for a motor vehicle forced ventilation system, wherein the frame is inserted sealingly into a body opening of the motor vehicle.
[0003] The invention ultimately relates to a motor vehicle with a forced ventilation system, comprising - a body opening connecting the interior of a vehicle with the exterior of the vehicle as well as - a ventilation portal inserted into the body opening with a sealing effect, comprising a rigid frame surrounding an air passage opening and an absorber textile made of a flexible, air-permeable, sound-absorbing material, which is sealed to the frame and covers the air passage opening.
[0004] A ventilation portal of the generic type, its generic use and a motor vehicle of the generic type are known from DE 10 2012 020 683 A1.
[0005] Motor vehicles are typically equipped with a forced ventilation system that allows for rapid pressure equalization in the event of overpressure in the interior, for example, caused by slamming a door, as well as precise, automated climate and dehumidification management. Such a forced ventilation system usually includes a ventilation duct that connects the vehicle interior to a body opening in the bodywork separating the interior from the exterior. This body opening is typically located in a concealed position, such as behind a bumper, where it is not visible from the outside and is largely protected against moisture and dirt ingress. However, such a body opening also represents a disadvantageous acoustic leakage point, allowing outside noise to penetrate the vehicle interior.Particularly noteworthy here are exhaust noise, wind noise at bodywork edges, tire noise, and similar noises. It is therefore known to seal the body opening with an absorber fabric, such as acoustic fleece. This is typically done using a frame covered with the absorber fabric, which is then inserted into the body opening to create a seal. The ventilation portal, which spans at least the frame and its airflow opening and can be inserted into the body opening as a module, may include further components such as pivoting flaps, additional layers of absorber fabric, diaphragm valves, and similar features.
[0006] Thus, DE 10 2015 219 743 A1 discloses a frame covered on both sides, i.e. inside and outside, with an absorber textile, in whose air passage opening between the two absorber textile layers an arrangement of several pivotable closure flaps is positioned.
[0007] From the aforementioned generic publication, it is known to provide the frame with tension ribs that curve towards the outside of the vehicle, over which the absorber fabric is stretched in order to maintain a defined distance to the other areas of the ventilation portal or to the body opening. The publication states that the motivation for these measures is to avoid collisions between the absorber fabric and the rubber diaphragm valves located in the area of the air passage opening of the frame.
[0008] The problem with conventional forced ventilation systems lies in the conflict between effectively reducing noise transmission on the one hand and ensuring sufficient air permeability of the absorber fabric for effective pressure equalization on the other. For optimized noise reduction, an absorber fabric that is as thick as possible and has low air permeability would be ideal; however, this would create too much airflow resistance to dissipate pressure, such as that generated when a door slams, quickly enough. Conversely, an open frame would be optimal for pressure equalization; however, this would offer no damping whatsoever to noise penetrating from the outside.
[0009] From DE 10 2018 100 851 A1, a system is known in which an absorber textile is also stretched over a frame surrounding an air passage opening of a motor vehicle by means of tensioning ribs that curve towards the outside of the vehicle. However, in this system, the tension of the stretched absorber textile can be varied by means of an adjustable tensioning device. The resulting variability of the absorber textile's elongation state, and thus the size of the spaces between its fibers, allows for targeted adjustment of the air permeability and therefore also the sound absorption properties to the given situation. However, such a system is technically extremely complex and expensive.
[0010] The object of the present invention is to further develop a generic ventilation portal, its generic use and a generic motor vehicle in such a way that a good compromise with regard to noise reduction and pressure equalization is achieved in an economical manner.
[0011] This problem is solved in conjunction with the features of the preamble of claim 1 by the fact that the absorber textile is designed as a sack that is fully fixed to the frame with its edge and can collapse under its own weight.
[0012] The problem is further solved by the features of claim 5, i.e. by using a ventilation portal according to the invention as a ventilation portal of a motor vehicle forced ventilation system, wherein the frame is sealed and inserted into a body opening of the motor vehicle in such a way that the bag extends beyond the frame towards the outside of the vehicle.
[0013] The problem is finally solved in conjunction with the features of the preamble of claim 7 by the fact that the absorber textile is designed as a bag which is fully fixed to the frame with its edge, is collapsible under its own weight and projects beyond the frame towards the outside of the vehicle.
[0014] Preferred embodiments are the subject of the dependent patent claims.
[0015] The basic idea of the present invention is based on the concept of increasing the surface area of the absorber textile through which a corresponding airflow passes during pressure equalization. This increase in surface area can be used to improve the acoustic damping effect—namely, by selecting a material with higher flow resistance—and / or to improve the overall air permeability due to the larger throughput area. In the case of inactive forced ventilation, i.e., when no pressure equalization from the vehicle interior to the vehicle exterior is currently required, the bag hangs slackly, collapsed under its own weight, at the outer edge of the body opening or on the frame of the ventilation portal. In this state, it is typically acoustically inactive.This is irrelevant, since in this state the ventilation flaps or valves preferably contained in the ventilation portal are closed, and the airflow opening of the ventilation portal is thus (especially acoustically) sealed. In a preferred embodiment of the invention, ventilation flaps pivotally mounted and opening towards the inside of the bag or towards the outside of the vehicle are arranged in the airflow opening. With active forced ventilation, however, e.g., with overpressure generated by the air conditioning system inside the vehicle, the bag inflates due to its flow resistance. Incident sound is effectively absorbed. At the same time, the maximized flow area allows for a total airflow sufficient for rapid pressure equalization. This enables a high airflow from the inside to the outside and simultaneously a high acoustic damping effect from the outside to the inside.The inflating bag adapts to the surrounding structures, such as the inside of a bumper covering the body opening. Therefore, the same ventilation portal can be used across different vehicle models with varying body opening positions and / or different designs of the elements covering them. In particular, no model-specific tension rib structure is required.
[0016] However, in a preferred embodiment of the invention, the bag may be loosely placed over a spacer structure connected to the frame. This spacer structure can be designed to be small in size and limited to its basic function of maintaining a minimum distance between the absorber fabric and the airflow opening. In this way, any collision between the absorber fabric and any ventilation flaps or similar components is avoided. At the same time, the size and shape of the spacer frame do not impose any (upper) restrictions on the size and shape of the bag in its inflated state.
[0017] Alternatively or additionally, the bag can have one or more spaced-apart, stiffened sections. Such bag stiffeners, which can be designed, for example, as webs or ribs, also act effectively as spacers, as they prevent the bag from collapsing completely.
[0018] Alternatively or additionally, the bag can be fixed at one or more points to vehicle structures located on the outside opposite the frame. In particular, such structures opposite the frame could be the interior of a bumper covering the body opening. This point fixing of the bag to such vehicle structures also counteracts the complete collapse of the bag when not pressurized, thus providing an effective spacing effect.
[0019] Regarding the preferred selection and dimensioning of the absorber textile, reference is made to DE 10 2015 219 743 A1 already mentioned at the beginning.
[0020] Further details and advantages of the invention will become apparent from the following, specific description and the drawings.
[0021] They show: Fig. 1 a highly schematic representation of a first embodiment of a ventilation portal according to the invention in its final assembly state, Fig. 2 a highly schematic representation of a second embodiment of a ventilation portal according to the invention in its final assembly state, Fig. 3 a highly schematic representation of a third embodiment of a ventilation portal according to the invention in its final assembly state, Fig. 4 a highly schematic representation of a fourth embodiment of a venting portal according to the invention in the final assembly state.
[0022] Identical reference symbols in the figures indicate identical or analogous elements.
[0023] The Fig. Figures 1 to 4 show, in highly schematic sectional views, preferred embodiments of a ventilation portal 10 according to the invention in its final assembly state in the body 12 of a motor vehicle. The ventilation portal 10 is inserted into a body opening 14, i.e., an opening in the body 12 separating the vehicle interior from the vehicle exterior. The body opening 14 is located in an area covered by a bumper 16 mounted externally on the body. The essential elements of the ventilation portal 10 are its frame 18 and a flexible, bag-like absorber textile 20 attached to the outer edge of the frame in a sealing manner. The absorber textile 20 is shown in the illustrations of the Fig. Figures 1 to 4 are each shown twice: once in its inflated state (with a solid bold line) and once in its collapsed state (with a bold dashed line). In the illustrated embodiments, the frame 18 is inserted into the body opening 14 by means of a sealing flange 22. At the inner edge of the frame, the air passage opening 24 formed or surrounded by the frame 18 is closed by means of a further absorber textile 26 stretched over the air passage opening 24.
[0024] Furthermore, in the illustrated embodiments, a flap arrangement 28 consisting of several outwardly pivoting ventilation flaps is arranged within the frame 18. When the pressure between the vehicle interior and exterior is equal, and when there is negative pressure inside the vehicle, the flaps are closed, as indicated by the dashed lines. When there is positive pressure inside the vehicle, the flaps open outwards to allow pressure equalization.
[0025] Such pressure equalization is associated with an airflow from the inside to the outside, which inflates the bag-like absorber textile 20, as shown by the solid lines. This maximizes the interaction area of the absorber textile 20, so that even with a comparatively high flow resistance of the absorber textile 20, good airflow and thus efficient ventilation or pressure equalization between the vehicle interior and exterior is possible. At the same time, the flow resistance of the absorber textile 20 ensures effective sound absorption, which is thereby prevented from penetrating the vehicle interior. The absorber textile bag 20 conforms to the structures surrounding the body opening 14, in this case the bumper 16.
[0026] In the inactive state of such a forced ventilation, i.e. with the flap arrangement 28 closed, the absorber textile bag 20 hangs down slackly.
[0027] In order to counteract in particular a possible collision between the absorber textile bag 20 and the flap arrangement 28, the absorber textile bag 20 is, in the embodiment of Fig. 2 is fixed at two fixing points 30 on the bumper 16. This means that the absorber textile bag 20 hangs clearly spaced away from the flap arrangement 28 even when relaxed.
[0028] In the embodiment of Fig. 3 this effect is achieved by a spacer structure 32 which extends beyond the outer edge of the frame 18 in a rib- or frame-like manner.
[0029] In the embodiment of Fig.4 the absorber textile 20 is provided with its own stiffening elements 34 which, in the relaxed state, counteract its complete collapse and thus create an effective spacer effect.
[0030] Naturally, the embodiments discussed in the detailed description and shown in the figures represent only illustrative examples of the present invention. In light of this disclosure, a wide range of variations is available to the person skilled in the art. Reference symbol list 10 Ventilation portal 12 Bodywork 14 Body opening 16 bumpers 18 frames 20 Absorber textile 22 flange 24 air passage openings 26 more absorbent textiles 28 flap arrangement 30 Fixation point 32 spacer structure 34 Stiffening element
Claims
[1] Ventilation portal (10), comprising - a rigid frame (18) surrounding an air passage opening (24) and - an absorber textile (20) made of a flexible, air-permeable, sound-absorbing material, which is tightly fixed to the frame (18) and covers the air passage opening (24), characterized by , that the absorber textile (20) is designed as a sack that is fully fixed to the frame (18) with its edge and can collapse under its own weight. [2] Venting portal (10) according to claim 1, characterized by , that ventilation flaps (28) which are pivotably mounted and openable towards the inside of the bag are arranged in the air passage opening (24). [3] Venting portal (10) according to any of the preceding claims, characterized by , that the bag is loosely placed over a spacer structure (32) connected to the frame (18). [4] Venting portal (10) according to any of the preceding claims, characterized bythat the bag has one or more spaced-apart, stiffened areas (34). [5] Use of a venting portal (10) according to one of the preceding claims as a venting portal (10) of a motor vehicle forced ventilation system, wherein the frame (18) is sealed and inserted into a body opening (14) of the motor vehicle in such a way that the bag extends beyond the frame (18) towards the outside of the vehicle. [6] Use according to claim 5, characterized by that the bag is fixed at one or more points (30) on the frame (18) on the outside opposite vehicle structures (16). [7] Motor vehicle with a forced ventilation system comprising - a body opening (14) connecting the interior of a vehicle with the exterior of the vehicle, as well as - a ventilation portal (10) inserted into the body opening (14) with a rigid frame (18) surrounding an air passage opening (24) and an absorber textile (20) made of a flexible, air-permeable, sound-absorbing material, which is sealed to the frame (18) and covers the air passage opening (24), characterized by , that the absorber textile (20) is designed as a bag which is fully fixed to the frame (18) with its edge, which is collapsible under its own weight and extends beyond the frame (18) towards the outside of the vehicle. [8] Motor vehicle according to claim 7, characterized by , that ventilation flaps (28) which are pivotably mounted and openable towards the outside of the vehicle are arranged in the air passage opening (24). [9] Motor vehicle according to one of claims 7 to 8, characterized by , that the bag is loosely placed over a spacer structure (32) connected to the frame (18). [10] Motor vehicle according to any one of claims 7 to 9, characterized by that the bag has one or more spaced-apart, stiffened areas (34). [11] Motor vehicle according to any one of claims 7 to 10, characterized by that the bag is fixed at one or more points (30) on the frame (18) on the outside opposite vehicle structures (16).
Citation Information
Patent Citations
Mounting arrangement for reducing noise in interior space of vehicle, has sound-absorbing element which is formed of textile fabric, and is fixedly arranged in region of chassis orifice to partially cover chassis orifice
DE102012020683A1
air conditioning system and vehicle
DE102012102774A1
sound reduction device
DE102015219743A1
Light and / or air outlet opening for a passenger compartment of a vehicle
DE102018100851A1