This claims the benefit of German Patent Application DE 10 2010 027 904.8, filed Apr. 19, 2010 and hereby incorporated by reference herein.
The present invention relates to a device for fastening an add-on component to a support part, and to a system for fastening an add-on component to a support part.
In structural engineering, devices for fastening an add-on component to a support part are employed in order to fasten add-on components to the support part. Examples of add-on components are photovoltaic modules, façade elements or lines as components of a water-heating system or of an electric installation. In general, support rails or mounting rails are employed as the support parts.
German Patent Application No. 103 13 564 A1 shows a connection element for components. The components are provided with slots that are aligned with each other for purposes of receiving the connection element, whereby the connection element is configured as a one-piece spring clip that has diametrically projecting spring arms whose width is dimensioned so they can be inserted into the slots, whereby a bearing section is at an axial distance opposite from the free ends of the spring arms, said bearing section being shaped onto the spring clip and having an engagement section for a mounting tool.
German Patent Application No. 10 2006 011 836 B3 discloses a fastening element having a baseplate. Opposing first arms, which each have a first contact section, project from the baseplate at a first distance from the baseplate, and at least two opposing second arms, which have a second contact section, also project from the baseplate at a second distance from the baseplate. Here, the first arms have actuation sections that are each configured as a surface with an eyelet.
German Patent Application No. 10 2007 042 484 B3 discloses a device for fastening an add-on component to a support part, having a head part that has contact sections projecting laterally and that is intended for contact with the add-on component or with the support part. An elastic front wall arrangement has two barrier flaps that are oriented approximately at a right angle relative to the front wall. These barrier flaps have latching steps that rest on the support part when the device is in a catching position.
German Utility Model No. 20 2005 003 224 U1 discloses an insertion part for holding a sliding block in an undercut profile groove of a profile strip. In its inserted state, the insertion part has the same essentially parallel longitudinal axis as the axis of the profile strip, whereby the insertion part has a seat for the sliding block with axially opposite seat-limiting surfaces between which the sliding block can be held, as well as bearing surfaces that are arranged between the seat-limiting surfaces in order to bear the sliding block. In this context, the insertion part has first support surfaces which, when the insertion part is in the inserted state, provide support of the said insertion part on undercut surfaces of the profile groove, whereby at least some of the first support surfaces are arranged so as to be flexibly deflectable in such a way that the insertion part can be inserted into the profile groove through the opening of the profile groove.
German Utility Model No. 20 2006 018 426 U1 discloses a mounting rail system for holding objects, especially flat elements such as solar modules or solar collectors, whereby at least one rail-like profile having at least two profile strips running in the longitudinal direction of the rail-like profile and at least one resiliently elastic clamping element for fastening the rail-like profile to a substrate and/or for holding objects on the rail-like profile having at least two spring legs that engage with opposite sides of the rail-like profile and that are opposite from each other interact with one of the profile strips in such a way that the resilient clamping element can be resiliently affixed to the rail-like profile.
It is an object of the present invention to provide a device and a system with which add-on components can be fastened to a support part by means of the device and by means of the system employing a simple technical set-up and without a need for tools. Furthermore, the device and the system should be cost-effective to produce and should allow simple and reliable handling.
The present invention provides a device for fastening an add-on component to a support part, comprising at least one movable holding element that can preferably be pivoted around a rotational axis and that, when it is inserted into an opening of the support part due to the contact between the at least one holding element and the support part, can be moved into an engagement position so as to be inserted into the opening, and that, after it has been inserted into the opening, can be moved into a catching position by means of a return movement of the at least one holding element, so that the at least one holding element can catch behind at least one edge of the support part in order to create a positive connection between the at least one holding element and the support part, and comprising at least one means for affixing the add-on component to the device, whereby the at least one holding element can be moved from the engagement position into the catching position by means of at least one elastic element, and/or can be moved in a clamping movement.
In another embodiment, the at least one holding element and the at least one elastic element are separate parts. The at least one holding element and the at least one elastic element are thus separate parts that are preferably detachably connected to each other. Only when the device is being installed is the at least one holding element joined to the at least one elastic element, for example, positively and/or non-positively.
In one variant, the device comprises at least two holding elements, and/or, when the at least one holding element is in the catching position, it is arranged at least partially, especially completely, in a hollow space enclosed by the support part, and/or two holding elements are arranged opposite from each other, and/or a non-positive connection can be established between the at least one holding element and the support part.
In another embodiment, the at least one means encompasses a carrier plate or a grid for purposes of affixing the device to the add-on component, preferably directly.
In a supplementary variant, the at least one holding element is a chuck which preferably can be pivoted around a rotational axis.
Advantageously, the device may comprise a web that can be inserted into the opening and the at least one holding element is pivotably mounted on the web, preferably by means of an articulated joint.
In a supplementary embodiment, the web is formed, preferably in one piece, on the carrier plate, and/or a plane formed by the web is arranged essentially perpendicular, for instance, with a deviation of less than 10° or 5°, with respect to a plane formed by the carrier plate.
In particular, a contact surface of the at least one holding element on the support part may be configured so as to be curved, essentially as a contact-surface arc, especially in a section perpendicular to the rotational axis of the at least one holding element.
In another embodiment, the at least one edge of the support part that can be caught by the at least one support part is curved, especially in a section perpendicular to the rotational axis of the at least one holding element, essentially as an edge arc.
In a supplementary embodiment, the center point of the contact-surface arc and/or the center point of the edge arc and/or the rotational axis of the at least one holding element are oriented with respect to each other in such a way that, when the at least one holding element executes a clamping movement, the distance between the edge of the support part and the contact surface of the at least one holding element is reduced, and/or the at least one elastic element is configured as a spring, especially as a wire spring. The clamping movement is preferably a movement of the at least one holding element in the direction of a pre-mounted position into the engagement position or in the direction of the return movement.
In another embodiment, the support part and/or the device and/or the carrier plate and/or the web and/or the at least one holding element and/or the at least one elastic element is made at least partially, especially completely, of metal, for instance, aluminum, steel or stainless steel, and/or it is made of plastic.
In a supplementary embodiment, there is a positive and/or non-positive connection between the device and the support part, and/or there is a clamping connection and/or a connection with a wedge effect or eccentric effect between the support part and the device.
In another embodiment, the device can be fastened to the support part by means of a snap mechanism and/or latching mechanism.
In a supplementary embodiment, the at least one movable holding element is not pre-tensioned when it is in the pre-mounted position. The at least one movable holding element is in the pre-mounted position when the device is not mounted on the support part and the at least one holding element is not in the engagement position and/or in the catching position.
Preferably, the at least one holding element is configured to be essentially, especially exclusively, plate-like or disk-like. The at least one holding element can thus be produced easily and cost-effectively, and it makes a reliable positive connection between the device and the support part possible.
In another embodiment, the at least one means comprises an adhesive, latching, riveted and/or screwed connection for purposes of affixing the add-on component to the device, especially to the carrier plate.
In another embodiment, the at least one elastic holding element has essentially no elastic properties and/or the at least one holding element is rigid and/or hard and/or essentially undeformable, for example, owing to the properties of the material of which it is made, and/or owing to the material thickness.
A system according to the invention for fastening an add-on component to a support part, comprising a device for fastening the add-on component to the support part, comprising at least one holding element that can be inserted into an opening of the support part and that can catch behind at least one edge of the support part with at least one movable holding element that, when it is inserted into the opening due to the contact between the at least one holding element and the support part, can be moved into an engagement position so as to be inserted into the opening, and that, after it has been inserted into the opening, can be moved into a catching position by means of a return movement of the at least one holding element, so that the at least one holding element can catch behind the at least one edge of the support part in order to create a positive connection between the at least one holding element and the support part, and also comprising at least one means for affixing the add-on component to the device, and also comprising the support part, whereby the device is configured as a device described in this patent application.
In another embodiment, the support part is a support rail, and/or the opening is a groove and/or the opening opens up into a hollow space delimited by the inside contour of the support part, so that the at least one edge is formed by the inner contour of the support part so that it can catch behind the at least one holding element.
In a supplementary embodiment, the opening is a mounting opening for fastening the device to the support part.
In a supplementary variant, when the device is fastened to the support part, two opposing holding elements are oriented with respect to a plane that runs through a central longitudinal axis of the support rail in such a way that the plane runs through the two holding elements and the plane is divided by the central longitudinal axis of the rail into a first partial plane and a second partial plane, and a first holding element is intersected by the first partial plane while the second holding element is intersected by the second partial plane. The central longitudinal axis of the rail is oriented in the direction of the greatest extension of the support rail and it preferably intersects the center point or the center of gravity of the support rail. The longitudinal axis of the rail can also be moved in parallel, so that it does not intersect the center of gravity.
In another variant, before the holding elements are inserted into the opening, the distance between the ends of two opposite holding elements in the direction of the distance is greater than the clear width of the opening in the direction of the distance, so that, when the two opposite holding elements are inserted, the holding elements can be moved due to the contact with the support part, especially in such a way that the maximum distance is reduced.
In another embodiment, when the device is fastened to the support part, the elastic element is pre-tensioned and consequently a pre-tensioning force can be exerted onto the at least one holding element, so that a clamping movement can be executed by the at least one holding element due to the pre-tensioning.
Embodiments of the invention will be described in greater detail below with reference to the accompanying drawings. The following is shown:
In the fields of structural engineering and construction, devices 1 are employed for fastening an add-on component 3 to a support part 5 (See
In this context, the device 1 comprises a carrier plate 13 as the means 12 for affixing the add-on component 3 to the device 1, and two movable holding elements 16 (
The mounting rail 7 has an opening 10 as a mounting opening, which is configured as a groove 11. The groove 11 extends with its larger extension in the direction of the longitudinal axis 19 of the rail. In this context, the inner contour 18 of the mounting rail 7 surrounds a hollow space 17 into which the opening 10 opens up. In an orientation parallel to the plane of projection of
In the embodiment of the device 1 shown in
In the pre-mounted state shown in
In the catching position of the holding elements 16 according to
When the device 1 is mounted onto the support part 5, the device 1 can first be placed onto the support rail 6. The distance between the holding elements 16 at the ends is greater than the clear width A of the opening 10. In order for the device 1 to be moved from the pre-mounted state according to
On the whole, the device 1 according to the invention and the system 2 according to the invention entail considerable advantages. Add-on components 3 are fastened to support parts 5 in a structurally simple manner. This translates into cost savings during the production of the device 1 and of the system 2 and, owing to the fact that the holding elements 16 are not pre-tensioned in the pre-mounted state, no unintentional movement of the holding elements 16 occurs. Therefore, in the pre-mounted state, neither the device 1 nor the system 2 sustain any damage when the device 1 is subjected to small forces while in the pre-mounted state.
Number | Date | Country | Kind |
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10 2010 027 904.8 | Apr 2010 | DE | national |