Load compartment cover having sound-absorbing characteristics
09937878 · 2018-04-10
Assignee
Inventors
Cpc classification
International classification
Abstract
The invention relates to a load compartment cover having sound-absorbing characteristics. A load compartment is provided between the rear seats and a tailgate. The load compartment cover is embodied from a sound-absorbing partition that is arranged in a space above a base of the load compartment and is embodied from a material that is in part permeable to sound waves. A load compartment cover of this type is to be easily handled in practice and is not to comprise any disadvantages associated with known load compartment covers. This is achieved by virtue of the fact that the partition is formed from multiple, preferably two, thin sheets that are arranged spaced apart one above the other. The thin sheets are provided with a micro perforation and only one air cushion is provided between the thin sheets.
Claims
1. A load compartment cover for vehicles having a load compartment that is provided between the rear seats and a tailgate, said load compartment cover comprising: a sound-absorbing partition that is arranged in a space above a base of the load compartment and is embodied from a material that is in part permeable to sound waves, characterized in that the sound-absorbing partition is formed from multiple thin sheets that are arranged spaced apart one above the other, wherein at least one of the thin sheets is provided with a micro perforation and that only one air cushion is provided between the thin sheets.
2. The load compartment cover as claimed in claim 1, characterized in that the partition is formed from two thin sheets that are arranged spaced apart one above the other.
3. The load compartment cover as claimed in claim 2, characterized in that a common cassette is provided to receive the thin sheets and the thin sheets are selectively wound or unwound in said cassette.
4. The load compartment cover as claimed in claim 3, characterized in that a separate spring-loaded winding spool is provided in the cassette for each thin sheet, wherein the winding spools are arranged spaced apart one above the other.
5. The load compartment cover as claimed in claim 3, characterized in that a single spring-loaded winding spool is provided in the cassette and the thin sheets can be wound and unwound jointly on said winding spool and that at least one spacer is arranged between the thin sheets on the or near the exit of the cassette.
6. The load compartment cover as claimed in claim 5, characterized in that a common hand grip is provided so as to actuate the thin sheets.
7. The load compartment cover as claimed in claim 6, characterized in that the thin sheets are fastened to the common hand grip spaced apart one above the other.
8. The load compartment cover as claimed in claim 3, characterized in that a single spring-loaded winding spool is arranged in the cassette and it is possible to wind or unwind a first end of the thin sheet on said winding spool, that a second end of the thin sheet is fastened to the cassette in a spacing below or above the first end, and that the thin sheet is guided over a deflecting roller that is arranged above a hand grip.
9. The load compartment cover as claimed in claim 8, characterized in that the thin sheet is embodied from two part pieces that are embodied so as to be different over the length that said thin sheet that can be drawn out.
10. The load compartment cover as claimed in claim 9, characterized in that the winding spools comprise self-stopping drives.
11. The load compartment cover as claimed in claim 10, characterized in that the thin sheets comprise a thickness of below 1 mm and in particular a thickness of 0.05 to 0.4 mm.
12. The load compartment cover as claimed in claim 11, characterized in that the micro perforation of a thin sheet comprises variations by means of at least one change in relation to the spacing of the holes, the shape of the holes, the diameter of the holes or the arrangement of the holes on the thin sheet.
13. The load compartment cover as claimed in claim 12, characterized in that the spacings of the holes of the micro perforation that is provided in the thin sheets is between 2 and 10 mm.
14. The load compartment cover as claimed in claim 13, characterized in that the spacing between the thin sheets or between the ends of the thin sheet can be varied.
15. The load compartment cover as claimed in claim 14, characterized in that the cassette that receives the thin sheets is configured to be adjusted in terms of its height relative to the base of the load compartment.
16. The load compartment cover as claimed in claim 1, characterized in that the micro perforation of a thin sheet comprises variations by means of at least one change in relation to the spacing of the holes, the shape of the holes, the diameter of the holes or the arrangement of the holes on the thin sheet.
17. The load compartment cover as claimed in claim 16, characterized in that the spacings of the holes of the micro perforation that is provided in the thin sheets is between 2 and 10 mm.
Description
BRIEF DESCRIPTION OF THE DRAWING FIGURES
(1) The invention is illustrated in the drawing in an exemplary manner and is described in detail with reference to the drawing. In the figures:
(2)
(3)
(4)
(5)
(6)
DETAILED DESCRIPTION
(7) In accordance with the schematic illustration in
(8) The two thin sheets 1 and 2 are embodied from material that is in part permeable to sound waves and the thin sheets are provided with a micro perforation 30.
(9) The thin sheets 1 and 2 are in a tensioned state so that the spacing between the thin sheets is approximately constant over their entire length so that the air cushion 3 that is required for the absorption of sound is provided.
(10) In practice, the thin sheets 1 and 2 should comprise a thickness of less than 1 mm. In tests, thin sheets having a thickness of 0.05 to 0.4 mm have been proven reliable. Thin sheet thicknesses of 0.2 to 0.4 mm are preferred. The hole diameter of the micro perforation should be smaller than 1 mm, wherein diameters between 0.1 mm to 0.4 mm are preferred.
(11) The spacing of the holes of the micro perforation is in part dependent upon which sound wave frequency is to be damped the most. For the sound level that is to be experienced in motor vehicles, the spacing of the holes of the micro perforation should be between 2 and 10 mm.
(12) The spacings between the upper thin sheet 1 and the lower thin sheet 2 can be varied so as to optimize the absorption of sound, and the spacing of the partition, which is embodied from the two thin sheets 1 and 2, with respect to the base 4 of the load compartment 5 can be varied.
(13) The absorption coefficient over the sound frequency is illustrated for various load compartment covers in the diagram in
(14) The lower curve (standard cover) illustrates the absorption curve over the sound frequency in the case of a conventional cover that is embodied from a simple flexible plane.
(15) The three upper curves represent load compartment covers that make use of the principle of the Helmholtz Resonator. The two thin sheets 1 and 2 that are provided with micro perforation form a delimitation of the vibrating air mass that communicates with the air cushion 3 that is used as a resilient element. The sound energy that occurs is to a large extent converted into kinetic energy of the mass and consequently is absorbed by means of the viscous friction on the hole edges.
(16) In the case of the curve Prototype 1 MPA 8 and the curve Prototype 2 MPA 13, an intermediate layer was provided in each case between the two thin sheets 1 and 2 and the thin sheets 1 and 2 are held at a precise spacing relative with respect to one another by means of said intermediate layer that is simultaneously used as a resilient element.
(17) One test without an intermediate layer of this type in accordance with Prototype 3 MPA clearly illustrates that an intermediate layer as was hitherto typical in sound absorption plates is not necessary at all since the three curves extend at approximately the same level.
(18) Only on the basis of this acquired knowledge, namely that a costly intermediate layer is not required between the thin sheets 1 and 2, does this principle become of interest for load compartment covers since it is now no longer necessary to provide heavy, rigid absorption plates that are cumbersome to stow away when not in use.
(19) On the basis of this acquired knowledge, elegant and expedient solutions for load compartment covers are now possible as are illustrated schematically as examples in
(20) In the case of the first exemplary embodiment, in accordance with
(21) If the two thin sheets 6 and 7 are drawn out of the cassette with the aid of the hand grip 11 against the resilient pre-tension of the winding spool 9 and 10, the two thin sheets 6 and 7 thus always remain in the same spacing arranged one above the other so that the air cushion 3 that is required for the absorption of sound remains between the two thin sheets.
(22) The spring-loaded winding spools 9 and 10 are fitted with a self-stopping drive 32 so that the two thin sheets 6 and 7 can be drawn in and drawn out with the aid of the hand grip 11 similar to a type of latching roller blind.
(23) In the case of the second embodiment of the invention that is illustrated in
(24) In order to also be able to maintain a predetermined spacing between the two thin sheets 16 and 17 in this embodiment, a spacer 18 is arranged between the two thin sheets 16 and 17 on or near the exit of the cassette 14. The upper thin sheet 16 is guided along above the spacer 18 and the lower thin sheet 17 is guided along below the spacer 18 so that the height of the spacer 18 predetermines the spacing between the two thin sheets 16 and 17.
(25) In the case of this exemplary embodiment, a common hand grip 19 is also provided for the two thin sheets 16 and 17. In order to also maintain the spacing of the two thin sheets 16 and 17 relative to one another on the side of the hand grip 19, fastening sites 20 and 21 for the thin sheets 16 and 17 are likewise provided on the hand grip 19 as in the case of the exemplary embodiment that is illustrated in
(26) The handling of this exemplary embodiment corresponds to the first exemplary embodiment that is illustrated in
(27) In the case of the third exemplary embodiment of the invention that is illustrated in
(28) In the case of the exemplary embodiments in accordance with
(29) The same can also be achieved in the case of the exemplary embodiment in accordance with
(30) In all three exemplary embodiments in accordance with
(31) In addition it is also possible to vary the spacing between the thin sheets, wherein the respective fastening sites are set on the hand grips and in the region of the cassettes in order to achieve the desired sound-absorbing characteristics of the load compartment cover in accordance with the invention.
(32) Further embodiments of the invention are technically readily possible, wherein it is merely to be ensured that the thin sheets that are equipped with the predetermined characteristics are tensioned in a corresponding spacing with respect to one another over the load compartment.