The invention relates to a fastening system for releasably fixing a second component on a first component, such as attaching a covering component to a component of a vehicle body. The fastening system has at least one spacer fixable on its one side on the first component by a first fastener and provided on its opposite side with a first touch-and-close fastener part. The first touch-and-close fastener part can be brought into releasable engagement with a corresponding second touch-and-close fastener part. The second touch-and-close fastener part, on its side facing away from the fastener elements, can be fixed on the second component by means of a second fastener.
The fastening system disclosed in WO 2009/097950 is used, among other things, to fix two-dimensional coverings at defined locations, for example, to mask unsightly looking areas. It can also be used for thermal and acoustical insulation. Panel-shaped covering components are used, for example, in the production of motor vehicles to cover large areas of sheet metal parts as the components of the vehicle body. In this context, components of a vehicle body may include, for example, loading doors, floors and ceilings of the vehicle body. In addition to this motor vehicle sector, such fastening systems can be used in trains, ships, and aircraft, where comparable problems have to be solved.
Since fastening systems provide a releasable connection between a second component, such as a covering component, and a first component, such as another component, technical devices, extending inside the other component, such as cables, air conditioning ducts, control electronics, etc., can be designed to be easily accessible, as needed, by simply removing the covering part from the other component with the respective technical device. Due to the fastening by interactive touch-and-close fastener parts, such measures can be carried out with relatively little physical effort and minimal installation effort.
Certain limitations with respect to the use of such fastening system exist only in cases in which the covering components are subject to high thermal loads. For example, problems due to high thermal loads exist when the fastening system is installed for vehicle body components exposed, for example, to higher temperatures, for example, due to direct solar radiation in the summer. Therefore, it is mandatory to design the adhesive bond, which is provided in the state of the art, between the spacer and the component, such as the vehicle body component, such that this adhesive bond is suitably heat resistant. Preferably, reactive adhesives, such as moisture crosslinking polyurethane adhesives, are used for this purpose. High temperature resistant hot melt adhesives, such as polyamide adhesives can also be used. The handling of such relatively cost intensive adhesives is relatively time consuming.
An object of the present invention is to provide an improved fastening system that can be used advantageously for all purposes, even in cases of increased thermal stress.
The invention basically achieves this object by a fastening system where a spacer can be fixed on the first component by a screw connection forming the first fastener. While still retaining the advantages offered by a fastening system corresponding to the state of the art, the screw connection, provided according to the invention, enables reliable use even under service conditions during which, in particular, thermal stresses may occur, without high temperature resistant adhesives being necessary.
Consequently, the arrangement can be configured in an especially advantageous way in that the spacer has a drilled hole for forming the screw connection. This drilled hole has an opening edge facing the fastener elements and having a conical expansion in which the head of a countersunk head screw can be received. The upper end of the head is then located below the fastener elements. When the screw connection is designed to be “sunk” or countersunk, the mutual mating of the corresponding fastener elements is not adversely affected by the screw connection.
Advantageously the spacer can be a frame part having a rectangular box shape as well as a frame depression for the flush reception of a substrate layer with the fastener elements of the first touch-and-close fastener part. The drilled hole is formed preferably in the central region of the frame depression.
In this context, the arrangement can be configured with a distinct advantage in that the opening edge of the drilled hole is surrounded by an annular rib. The annular rib projects from the surface of the frame depression and is concentric to the drilled hole. The height of the annular rib is equal to or less than the thickness of a substrate layer of the fastener elements. The substrate layer is receivable in the frame depression. This projecting annular rib can extend, relative to the centering of the substrate layer, into a round opening formed in the substrate layer.
Other objects, advantages and salient features of the present invention will become apparent from the following detailed description, which, taken in conjunction with the annexed drawings, discloses a preferred embodiment of the present invention.
Referring to the drawings which form a part of this disclosure and which are diagrammatic and not to scale:
The fastening system is explained in detail by one exemplary embodiment shown in
Instead of the five fastening parts 18, shown in
The back side of the second touch-and-close fastener part 32 exhibits a second fastening means 38, preferably in the form of an adhesive. An adhesive that is used most preferably for this purpose is a pressure sensitive, acrylate-based adhesive or a so-called synthetic rubber adhesive. In order to protect the top adhesive layer 38, which can be seen in the direction of
The composite of spacer 20 with the two touch-and-close fastener parts 30 and 32 forms together with the protective film 40 a fastening part 18 according to
If at this point the covering component 10 is to be detached from the vehicle body component 12, the covering component 10 is peeled off correspondingly from the surface 16 of the door, with the spacer 20 and the first touch-and-close fastener part 30 remaining on the vehicle body component 12 (door) as the first component. The corresponding second touch-and-close fastener part 32 remains on the covering component 10 as the second component. When the covering component 10 is removed, corresponding maintenance work can be performed on the door. The first touch-and-close fastener part 30 is fixed by an adhesive (not shown in detail) in the frame depression 24 of the spacer 20. Preferably, spacer 20 has the shape of a square cross section, such that the first touch-and-close fastener part cannot be lost.
The height of the respective spacers 20 can be designed to vary to be able to compensate for dissimilar dimensions, for example, inside the vehicle body component 12. To be able to ensure ease of assembly on site, the various groups of spacers 20 can be colored such that one design, for example, with the greater height is colored blue. The other spacers 20 then are colored a different color, for example, green.
The two touch-and-close fastener parts 30, 32 shown in
Moreover, viewed in the direction of
The individual fastener parts 30, 32 can be cut out of the two-dimensional composite that is produced in this way. Alternatively, the weaving method is configured such that the required square base shape is achieved immediately. Instead of the illustrated weaving method, the proposed fastener can also exist in the knitted form.
At variance with the examples in
While one embodiment has been chosen to illustrate the invention, it will be understood by those skilled in the art that various changes and modifications can be made therein without departing from the scope of the invention as defined in the appended claims.
Number | Date | Country | Kind |
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10 2010 027 394 | Jul 2010 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2011/003046 | 6/21/2011 | WO | 00 | 2/6/2013 |
Publishing Document | Publishing Date | Country | Kind |
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WO2012/007089 | 1/19/2012 | WO | A |
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20130125350 A1 | May 2013 | US |