Fastening device and method for fastening an element in a keyhole-shaped cutout in a wall
09746016 · 2017-08-29
Assignee
Inventors
- David Vargha (Budapest, HU)
- Boris Adam (Gaeufelden, DE)
- Ulf Behnke (Reutlingen, DE)
- Jeanine Wegner (Reutlingen, DE)
Cpc classification
H05K5/0073
ELECTRICITY
H05K5/0078
ELECTRICITY
F16B21/09
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16B39/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B21/09
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A fastening device for fastening an element in a keyhole-shaped cutout in a wall includes a retaining element which in the fastened state of the fastening device is designed to rest against a front side of the wall, and to at least partially cover an edge of a narrower opening of the key-shaped section in a wall. The fastening device also includes a support element which in the fastened state of the fastening device is designed to engage through a wider opening of the keyhole-shaped cutout in the wall, and to support the fastening device against a lateral edge of the wider opening during fastening.
Claims
1. A fastening device for fastening an element in a keyhole-shaped cutout in a wall, comprising: a retaining device having a top surface adapted to rest against a front side of the wall and; a connecting device protruding above the top surface of the retaining device, the connecting device being adapted to at least partially cover an edge of a narrower opening of the keyhole-shaped cutout in the wall in a fastened state and to engage through the narrower opening of the keyhole-shaped cutout in the wall in the fastened state of the fastening device, in order to fasten the fastening device to the wall at the narrower opening of the keyhole-shaped cutout in the wall; and at least two support devices protruding above the top surface of the retaining device at respective two oppositely situated ends of the top surface of the retaining device, the at least two support devices are integrated into the top surface of the retaining device and are adapted to engage through a wider opening of the keyhole-shaped cutout in the wall in the fastened state of the fastening device and to support the fastening device against respective two oppositely situated lateral edges of the wider opening during fastening, wherein the two support devices each have an angular shape, wherein a partial section of each of the angular support devices in the fastened state projects substantially at a right angle from an edge of the wider opening into an inner region of the wider opening, the partial section being situated at the side of the support device facing away from the narrower opening.
2. The fastening device according to claim 1, wherein the two support devices each have a straight supporting edge adapted for support on the lateral edge of the wider opening.
3. The fastening device according to claim 1, wherein the two support devices each have a supporting edge, the supporting edges being situated at a mutual distance which corresponds to a width of the wider opening of the keyhole-shaped cutout in the wall.
4. The fastening device according to claim 1, further comprising a locking device, in the fastened state of the fastening device, being adapted to engage through a wider opening of the keyhole-shaped cutout in the wall and to retain the fastening device from a back side of the wall.
5. The fastening device according to claim 4, wherein the locking device includes a hook made of a flexible material.
6. The fastening device according to claim 4, wherein the locking device is at least partially enclosed by a protective element.
7. A sensor element, comprising: a fastening device as recited in claim 1.
8. A method for fastening a fastening device to a wall which includes a keyhole-shaped cutout, the fastening device including a retaining device having a top surface and at least two support devices that are integrated into the top surface of the retaining device and are protruding above the top surface of the retaining device at respective two oppositely situated ends of the top surface of the retaining device, the keyhole-shaped cutout being formed by a wider opening in the wall and a narrower opening in the wall which is connected to the wider opening, the fastening device further including a connecting device protruding above the top surface of the retaining device, the method comprising: inserting the at least two support devices of the fastening device through the wider opening of the keyhole-shaped cutout in the wall in a fastened state; engaging the connecting device through the narrower opening of the keyhole-shaped cutout in the wall in the fastened state of the fastening device, in order to fasten the fastening device to the wall at the narrower opening of the keyhole-shaped cutout in the wall, the connecting device at least partially covering an edge of the narrower opening of the keyhole-shaped cutout in the wall; supporting the fastening device against twisting by pressing the at least two support devices against respective two oppositely situated lateral edges of the wider opening of the keyhole-shaped cutout; and pressing the retaining device against the wall, wherein the two support devices each have an angular shape, wherein a partial section of each of the angular support devices in the fastened state projects substantially at a right angle from an edge of the wider opening into an inner region of the wider opening, the partial section being situated at the side of the support device facing away from the narrower opening.
9. The method according to claim 8, wherein the method is for fastening the fastening device recited in claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(10) Any indicated dimensions and measurements are for example only, so that the present invention is not limited to these dimensions and measurements. Identical or similar elements are provided with identical or similar reference numerals. In addition, the figures of the drawing, and the description thereof, contain numerous features in combination. It should be understood that these features may also be considered individually, or may be combined into further combinations not explicitly described herein.
(11) The purpose of example embodiments of the present invention, among other things, is to ensure increased anti-twist protection in the assembly of a component, using a keyhole-screw design. A further aim is to provide an option for preventing the component from partially tilting outward after a screw-in bolt is inserted into the keyhole. When this tilting outward occurs, the component may twist about the axis of a fastening bolt so that it may then no longer be correctly screwed on. This risk is eliminated with the aid of example embodiments of the present invention.
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(13) A protective element 130 which encloses locking element 120 in a U shape is also provided in the exemplary embodiment of the present invention illustrated in
(14) According to example embodiments of the present invention, however, at least one support element 150 is provided which during fastening of the fastening device in the wall or a support offers the option of supporting the fastening device against a lateral edge of the wider opening of the keyhole-shaped cutout. In the exemplary embodiment illustrated in
(15) The advantage of example embodiments of the present invention lies in an efficient, cost-effective, and easily implemented anti-twist protection, and in the partial prevention of tilting outward after the fastening device is inserted into the keyhole. Incorrect assembly due to twisting of the component after the pre-assembly and before the final screwing is thus effectively prevented.
(16) To provide manufacturing of fastening device 100 in the most simple and cost-effective manner possible, retaining element 110, locking element 120, protective element 130, and support elements 150 may be manufactured in one piece from a flexible plastic material. This merely requires a simple and inexpensive adaptation of an injection mold in order to make use of the advantages of example embodiments of the present invention. The additional consumption of plastic material which is required is negligible.
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(19) According to the example embodiment of
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(21) When example embodiments of the present invention are used, the anti-twist protection is also provided when component 140 partially tilts out of the keyhole after pre-assembly. By extension, the component may also be prevented from partially tilting out of the keyhole before final assembly. Without using the arrangements described herein, after partially tilting out of the keyhole the component may rotate about the bolt axis (of a screw connection 210) and then be improperly screwed on.
(22) Example embodiments of the present invention are thus substantially based on lateral mountings 150 which prevent twisting directly after the component is suspended into the keyhole. The extension makes use of locking of the component in the keyhole during the pre-assembly (insertion of the component mounting into the keyhole). For locking, a clip-in pin, for example, may be used which is composed of a flexible pin having a locking tab. The lock may also be used without the lateral mountings. In this case, anti-twist protection is not provided only when the component is not locked and then partially tilts out of the keyhole (
(23) An advantage of example embodiments of the present invention is that the component is prevented from twisting after the component mounting is inserted into the keyhole. When the locking device is used, it is also no longer possible for the component to partially tilt out of the keyhole.
(24) In principle, example embodiments of the present invention may be used for all components which use the keyhole-screw concept.
(25) Use of the described approach is currently the only known option for ensuring anti-twist protection when using the hole pattern established by AK-LV29 (standard specification).
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