DOWEL ELEMENT, FASTENING DEVICE, METHOD FOR PRODUCING A DOWEL ELEMENT, AND METHOD FOR INSTALLING A FASTENING DEVICE
20170321736 · 2017-11-09
Assignee
Inventors
Cpc classification
F16B21/075
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B13/025
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B13/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B5/0024
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
In order to provide an anchor element for fastening an article to a further article, this anchor element being simple and inexpensive to produce and enabling an article to be fastened to a further article simply and reliably, it is proposed that the anchor element should include a base body that takes a hollow form, at least in certain regions, and surrounds a receiving space for receiving a fastening element, wherein the base body includes one or more elastically yielding spring elements that are formed by one or more wall portions of the base body, and these project into the receiving space in an installed condition of the anchor element.
Claims
1. An anchor element for fastening an article to a further article, the anchor element comprising: a base body that takes a hollow form, at least in certain regions, and surrounds a receiving space for receiving a fastening element, wherein the base body includes one or more elastically yielding spring elements that are formed by one or more wall portions of the base body, and these project into the receiving space in an installed condition of the anchor element.
2. An anchor element according to claim 1, wherein the base body takes an at least approximately hollow-cylindrical form, and/or the base body has a constant material thickness at least approximately throughout, and/or the base body is made from a metal sheet, and/or the base body includes one or more elastically yielding spring elements, which are formed by one or more wall portions of the base body that project into the receiving space in a spiral shape in an installed condition of the anchor element.
3. An anchor element according to claim 1, wherein one or more spring elements of the base body each have two lateral flanks, and wherein the flanks form mutually different angles (α (alpha), β (beta)) with a direction of connection of the anchor element, and/or one or more spring elements are formed such that they taper in the direction of an end projecting into the receiving space, and/or one or more spring elements form latching springs for latching the fastening element in the anchor element.
4. An anchor element according to claim 1, wherein the base body includes an insertion opening for inserting the fastening element into the receiving space, and in that one or more spring elements each have two lateral flanks, wherein a lateral flank of a respective spring element that faces the insertion opening forms a smaller angle with a direction of connection than a lateral flank of this spring element that is remote from the insertion opening, and/or the base body of the anchor element includes a sleeve that forms a wall of the anchor element, wherein, in an installed condition of the anchor element, the one or more spring elements of the base body project from the sleeve into the receiving space, and/or the base body of the anchor element is formed in one piece.
5. An anchor element according to claim 1, wherein the anchor element includes one or more anchoring elements for anchoring the anchor element in an article, and/or one or more anchoring elements are formed by wall portions of the base body which, in an installed condition of the anchor element, starting from the sleeve, project outwards away from the receiving space, and/or in a condition that is ready for installation of the anchor element, one or more anchoring elements, starting from the sleeve, project at least in certain regions into the receiving space, and/or one or more anchoring elements form barbs for anchoring the anchor element in an article, and/or one or more anchoring elements form an external thread of the anchor element.
6. An anchor element according to claim 1, wherein the anchor element includes one or more locking elements for locking one or more spring elements in a pre-stressed condition, and/or one or more locking elements are formed by wall portions of the base body, and/or one or more locking elements project into the receiving space and/or, when a fastening element is inserted into the receiving space, are actuable, in particular for the purpose of releasing one or more spring elements.
7. An anchor element according to claim 1, wherein the anchor element includes two or more spring elements that are arranged one behind the other in a direction of connection, and/or the anchor element includes two or more spring elements that are arranged next to one another in relation to a direction of connection and/or peripheral direction.
8. An anchor element according to claim 1, wherein the base body includes an insertion opening, through which a fastening element is insertable into the receiving space, and a fastening opening arranged opposite the insertion opening, wherein, in the region of the fastening opening, the base body includes an inwardly projecting portion and/or takes a tapering form.
9. An anchor element according to claim 1, wherein the anchor element includes one or more fluid receptacles for receiving a fluid, in particular for receiving adhesive.
10. A fastening device for fastening an article to a further article, including: one or more anchor elements according to claim 1; one or more fastening elements for inserting and fixing in the one or more anchor elements.
11. A fastening device according to claim 10, wherein one or more fastening elements each include one or more fastening portions by means of which the one or more fastening elements are fixable in one or more receiving spaces of one or more anchor elements, and/or one or more fastening elements each include one or more anchoring portions by means of which the one or more fastening elements are fixable on or in one or more articles, and/or one or more fastening elements each include one or more abutment portions by means of which the one or more fastening elements are positionable in a predetermined position on or in one or more articles, and/or one or more fastening elements include in each case one or more fastening portions, in each case one or more anchoring portions and in each case one or more connection portions, wherein in each case a connection portion is arranged between an anchoring portion and a fastening portion of a fastening element.
12. A fastening device according to claim 11, wherein, in relation to a longitudinal centre axis of the fastening element, the connection portion has a smaller extent in the radial direction than an adjacent anchoring portion and/or an adjacent fastening portion.
13. A fastening device according to claim 10, wherein one or more fastening elements have, at least in certain regions, an at least approximately T-shaped longitudinal section.
14. A fastening device according to claim 10, wherein an end of a fastening portion of a fastening element that is remote from an anchoring portion of the fastening element is formed to taper in the direction away from the anchoring portion.
15. A fastening device according to claim 10, wherein an end of a fastening portion of a fastening element that faces an anchoring portion of the fastening element is formed to taper towards the anchoring portion.
16. A fastening device according to claim 10, wherein an end of a fastening portion of a fastening element that is remote from an anchoring portion of the fastening element is provided with a tool receptacle.
17. A fastening device according to claim 10, wherein two mutually opposite ends of a fastening element are anchorable to a respective article by means of a respective anchor element.
18. A method for producing an anchor element, the anchor element used for fastening an article to a further article, the anchor element includes a base body that takes a hollow form, at least in certain regions, and surrounds a receiving space for receiving a fastening element, wherein the base body includes one or more elastically yielding spring elements that are formed by one or more wall portions of the base body, and these project into the receiving space in an installed condition of the anchor element, the method comprising: providing a sheet-metal material; making cuts and/or openings in the sheet-metal material, in order to form one or more spring elements; and shaping the sheet-metal material in order to produce a sleeve of the anchor element and/or to shape and/or to put into a pre-stressed position the one or more spring elements.
19. A method according to claim 18, wherein, for the purpose of forming one or more anchoring elements, cuts and/or openings are made in the sheet-metal material.
20. A method for installing a fastening device, the fastening device for fastening an article to a further article, wherein the fastening device includes one or more anchor elements, wherein the one or more anchor elements are used for fastening an article to a further article, the one or more anchor element include a base body that takes a hollow form, at least in certain regions, and surrounds a receiving space for receiving one or more fastening elements, wherein the base body includes one or more elastically yielding spring elements that are formed by one or more wall portions of the base body, and these project into the receiving space in an installed condition of the one or more anchor elements, and wherein the fastening device includes the one or more fastening elements for inserting and fixing in the one or more anchor elements, the method comprising: providing the fastening device; inserting the anchor element into an opening in an article, and anchoring the anchor element in the opening; fixing one end of the fastening element to or in a further article; and inserting a further end of the fastening element into the receiving space of the anchor element, in order to produce a connection between the two articles.
21. A method according to claim 18, wherein the sheet-metal material is prepared as a flat strip material and/or cut to size.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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[0189] Like or functionally equivalent elements are provided with the same reference numerals in all the Figures.
DETAILED DESCRIPTION OF THE DRAWINGS
[0190] A first embodiment, illustrated in
[0191] A fastening device 100 of this kind may for example be used in furniture manufacture in order to connect two panel elements or other components of a piece of furniture to one another.
[0192] The fastening device 100 includes an anchor element 104 (see
[0193] The anchor element 104 includes a base body 108 that includes a substantially hollow-cylindrical sleeve 110.
[0194] The base body 108, in particular the sleeve 110, surrounds a receiving space 112 of the anchor element 104.
[0195] The receiving space 112 serves in particular to receive a fastening portion 114 of a fastening element 106.
[0196] The base body 108 includes a wall 116 that in particular forms the sleeve 110.
[0197] The wall 116 of the base body 108 is formed such that it is partly interrupted.
[0198] In particular, wall portions 118 that project out of the wall 116 forming the sleeve 110 are provided.
[0199] Here, there are provided in particular one or more wall portions 118 that project into the receiving space 112. These wall portions 118 are in particular spring elements 120 of the anchor element 104.
[0200] As can be seen in particular from
[0201] Here, the spring elements 120 extend from the sleeve 110 inwards into the receiving space 112 and at the same time along a peripheral direction 122 of the anchor element 104.
[0202] The spring elements 120 in particular serve to latch a fastening element 106 in the receiving space 112 of the anchor element 104. The spring elements 120 are thus in particular latching springs 124.
[0203] The spring elements 120 in particular take the form of tabs 126 that extend from the sleeve 110 into the receiving space 112.
[0204] The spring elements 120 are preferably elastic in form, so that they can be moved in a reversibly elastic manner from the relaxed position (rest position) illustrated in
[0205] The anchor element 104 moreover includes one or more anchoring elements 128, which are preferably likewise formed by wall portions 118 in the base body 108 but in this case project outwards away from the receiving space 112.
[0206] The anchoring elements 128 are in particular barbs 130 for fixing the anchor element 104 in an article 102 (see
[0207] For the purpose of simple installation of the anchor element 104, it may moreover be provided for an end of the anchor element 104 that is to the front in relation to a direction of connection 132 of the fastening device 100 to be provided with an introduction ramp 134.
[0208] In this case, the introduction ramp 134 preferably surrounds a fastening opening 136 for the purpose of fixing the anchor element 104 to an article 102.
[0209] The functioning of the fastening opening 136 is explained separately, with reference to
[0210] The anchor element 104 is preferably provided with an insertion opening 138.
[0211] The insertion opening 138 enables a fastening element 106 to be inserted into the receiving space 112 of the anchor element 104.
[0212] The insertion opening 138 and the fastening opening 136 are preferably arranged at mutually opposite ends of the anchor element 104.
[0213] The anchor element 104 may in particular take a substantially rotationally symmetrical form in relation to a longitudinal centre axis 140 of the anchor element 104.
[0214] The anchor element 104 in that case has in particular a hollow-cylindrical sleeve 110 of circular cross section.
[0215] As can be seen in particular from
[0216] The flat strip material 142 is preferably a sheet-metal material 144, in particular a metal sheet 146.
[0217] In order to produce an anchor element 104, for example a metal sheet 146 of suitable external dimensions is produced, in particular being punched or cut out.
[0218] The metal sheet 146 is moreover provided with one or more cuts 148. In particular, by means of the cuts 148 the contours of the spring elements 120 and the anchoring elements 128 are made in the metal sheet 146, which otherwise forms the wall 116 of the sleeve 110.
[0219] The cuts 148 may in this case be made in the metal sheet 146 for example by means of laser cutting, punching, stamping, etc.
[0220] In a further processing step, the metal sheet 146 is formed into shape. In particular, the metal sheet 146 is bent such that the hollow-cylindrical sleeve 110 is formed.
[0221] Moreover, the spring elements 120 and the anchoring elements 128 are bent into the desired shape and position.
[0222] All these shaping procedures are preferably plastic shaping procedures, with the result that the spring elements 120 and the anchoring elements 128 may in particular be brought into the rest positions (rest locations) illustrated in
[0223] As can be seen in particular from
[0224] The flanks 150 extend in particular from an initial region 152 of a spring element 120, adjoining the sleeve 110, to an end 154 of the spring element 120 which, in the installed condition of the anchor element 104, projects into the receiving space 112.
[0225] Here, the flanks 150 may have different shapes.
[0226] In the embodiment of the anchor element 104 that is illustrated in
[0227] This means that an angle α (alpha) that is formed between the lateral flank 150 facing the insertion opening 138 and the direction of connection 132 is smaller than an angle β (beta) that is formed between the lateral flank 150 remote from the insertion opening 138 and the direction of connection 132.
[0228] The result of a configuration of this kind for the flanks 150 of the spring elements 120 is that a fastening element 106 that is inserted into the receiving space 112 of the anchor element 104 initially has to overcome little resistance, when it is moved in the direction of connection 132, in order to move along the flat flank 150 and in so doing to push the spring elements 120 outwards.
[0229] As soon as a fastening portion 114 of the fastening element 106 has been moved past the ends 154 of the spring element 120, the steep flank 150 has the effect of drawing the fastening element 106 into the receiving space 112, such that ultimately the fastening element 106 is fixed to the anchor element 104.
[0230] As indicated in
[0231] This may in particular enable the anchor element 104 to abut reliably against an article 102.
[0232]
[0233] The fastening element 106 includes the above-mentioned fastening portion 114, which is insertable into the receiving space 112 of the anchor element 104 in order to connect it to the anchor element 104.
[0234] The fastening portion 114 in particular takes the form of a mushroom-shaped thickening of the fastening element 106.
[0235] For example, the fastening portion 114 has a substantially T-shaped cross section.
[0236] It may be provided for the fastening portion 114 to have a plurality of sub-portions 158.
[0237] In particular, a central sub-portion 158 takes a substantially circular-cylindrical form.
[0238] Two further sub-portions 158 that are arranged on either side of the sub-portion 158 take a for example substantially conical form and taper, in particular from the central sub-portion 158 in the direction of connection 132.
[0239] Further, the fastening element 106 includes an anchoring portion 160.
[0240] The anchoring portion 160 takes the form for example of a screw portion 162 and serves to anchor the fastening element 106 in an article 102.
[0241] For example, the fastening element 106 may be screwed into a bore 164 in an article 102 by means of the anchoring portion 160.
[0242] Further, the fastening element 106 includes an abutment portion 166.
[0243] The abutment portion 166 is in particular arranged at an end of the anchoring portion 160 that faces the fastening portion 114 and serves as the limitation on movement when the fastening element 106 is fixed to the article 102.
[0244] In particular, by means of the abutment portion 166 it may be ensured that the fastening element 106 can only be screwed into the article 102 to a predetermined depth.
[0245] The abutment portion 166 in this case takes the form for example of an annular projection that projects radially outwards.
[0246] The fastening element 106 further preferably includes a connection portion 168.
[0247] The connection portion 168 is in particular arranged between the fastening portion 114 and the anchoring portion 160.
[0248] Further, the connection portion 168 is preferably arranged between the fastening portion 114 and the abutment portion 166.
[0249] The connection portion 168 is in particular a region having a radial extent that is small by comparison with the fastening portion 114.
[0250] In particular, by means of the connection portion 168 together with the fastening portion 114, a substantially T-shaped longitudinal section of the fastening element 106 is formed. As a result, the fastening element 106 can be simply inserted into the receiving space 112 of the anchor element 104 and, by means of the spring elements 120, reliably captured and fixed.
[0251] It may be favourable if the fastening portion 114 of the fastening element 106 includes a tool receptacle 170.
[0252] The tool receptacle 170 is in particular an Allen key receptacle or a crosshead receptacle or similar.
[0253] Preferably, there may be placed on the tool receptacle 170 a tool that fits it, for example in order simply to fix the fastening element 106 in the article 102, for example to screw it into the article 102.
[0254] The tool receptacle 170 is in particular arranged at an end of the fastening portion 114 that is remote from the anchoring portion 160.
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[0257] It can be seen in particular from a comparison of
[0258] First the anchor element 104 is inserted into an article 102, in particular into a bore 164 in an article 102.
[0259] By means of the anchoring elements 128 of the anchor element 104, in this case the anchor element 104 is automatically prevented from moving the anchor element 104 in opposition to the direction of connection 132.
[0260] The fastening element 106 is fixed in a further article 102, for example being screwed into a bore 164 in a further article 102.
[0261] In a following step, the articles 102 are moved towards one another such that the fastening portion 114 of the fastening element 106 is screwed into the receiving space 112 of the anchor element 104, in the direction of connection 132.
[0262] The fastening portion 114 of the fastening element 106 is preferably dimensioned such that it at least approximately completely fills the receiving space 112 in a plane perpendicular to the direction of connection 132, and thus preferably extends peripherally as far as the wall 116.
[0263] The spring elements 120 thus project into the path of movement of the fastening portion 114 of the fastening element 106 and thus, as the fastening portion 114 moves in the direction of connection 132, come into engagement with the fastening portion 114.
[0264] Because of the shape of the lateral flanks 150 of the spring elements 120, and/or because of the shape of the one or more sub-portions 158 of the fastening portion 114, the spring elements 120 are pushed outwards by the fastening portion 114, out of the rest position illustrated in
[0265] As soon as the fastening portion 114 has moved past the ends 154 of the spring elements 120, the lateral flanks 150 of the spring elements 120 that are remote from the insertion opening 138 of the anchor element 104 bring about a retracting movement of the fastening portion 114 into the receiving space 112, since the spring elements 120 engage behind the fastening portion 114 as a result of springing back into the receiving space 112, and thus fix it in relation to the anchor element 104.
[0266] In particular, the lateral flanks 150 of the spring elements 120 that are remote from the insertion opening 138 are then in engagement with an end 172 of the fastening portion 114 that faces the anchoring portion 160.
[0267] Because the lateral flanks 150 of each spring element 120 are at different inclinations, a different force profile can be selected for the movement of pushing the fastening portion 114 into the receiving space 112 from that for the retracting movement of the fastening portion 114 that is brought about by means of the spring elements 120. In particular, it may be made easy to push in the fastening portion 114, with at the same time a strong retaining force in the installed condition.
[0268] By suitable shaping of the lateral flanks 150 and/or suitable shaping of the fastening portion 114, it is possible to produce a detachable or indeed non-detachable connection between the anchor element 104 and the fastening element 106.
[0269] In the embodiment of the fastening device 100 that is illustrated in
[0270] Different variants and aspects of differently constructed fastening devices 100 are described below.
[0271] All the features described are combinable, individually or in combination with other features, with individual or a plurality of features of the fastening device 100 described above, as desired.
[0272] An alternative embodiment of a fastening element 106 that is illustrated in
[0273] By means of a fastening element 106 of this kind it is possible in particular to produce variable positioning in or on an article 102, for example so that different relative positions of the articles 102 to be connected to one another can be adopted in a directed way.
[0274] Otherwise, the embodiment of the fastening element 106 that is illustrated in
[0275]
[0276] The fastening portions 114 differ in particular in the differently formed sub-portions 158.
[0277] In
[0278] A fastening portion 114 according to
[0279]
[0280] According to
[0281] According to
[0282] According to
[0283] According to
[0284] The embodiments that are illustrated in
[0285]
[0286] Whereas, in the embodiment of the spring elements 120 that is illustrated in
[0287] In the embodiments according to
[0288] The lateral flanks 150 that are remote form the insertion opening 138 in this case take for example a curved form (see
[0289] The lateral flank 150 that is remote from the insertion opening 138 may moreover be formed at least approximately perpendicular to the direction of connection 132 (see
[0290] Depending on the configuration of the fastening portion 114, in this case a straight lateral flank 150 that is remote from the insertion opening 138 (see
[0291] Otherwise, the variants of spring elements 120 that are illustrated in
[0292] An alternative embodiment of a fastening device 100, illustrated in
[0293] In order to connect two articles 102, two anchor elements 104 are thus required, in each case one anchor element 104 being fixed in a bore 164 in the respective article 102.
[0294] The connection between the two anchor elements 104 and thus between the two articles 102 is then made by means of the fastening element 106 in that a respective fastening portion 114 is inserted into a respective anchor element 104 and is fixed therein.
[0295] Otherwise, the embodiment of the fastening device 100 that is illustrated in
[0296] An alternative embodiment of an anchor element 104, illustrated in
[0297] In particular, a spring element 120 is lockable in a pre-stressed position by means of the locking element 176.
[0298] Here, the locking element 176 may take the form of a ratchet 178 that is insertable into a path of movement of the spring element 120.
[0299] The locking element 176 is preferably formed by a wall portion 118 of the base body 108.
[0300] In particular, the locking element 176 is formed in one piece with the base body 108, the spring elements 120 and the anchoring elements 128.
[0301] The locking element 176 is preferably movable from a locking position, illustrated in
[0302] In the locking position, the locking element 176 preferably projects into the receiving space 112 of the anchor element 104. In particular, in so doing the locking element 176 blocks a movement of the spring element 120 that is directed into the receiving space 112 once the spring element 120 is moved outwards from the rest position illustrated in
[0303] As can be seen in particular from
[0304] In particular, the locking element 176 is movable from the locking position, illustrated in
[0305] The anchor element 104 may in this case have one or more locking elements 176.
[0306] In particular, one or more locking elements 176 may be provided for one or more spring elements 120.
[0307] Otherwise, the embodiment of an anchor element 104 that is illustrated in
[0308] An alternative embodiment of a fastening device 100, illustrated in
[0309] In this case, the locking element 176 is not a constituent part of the base body 108 of the anchor element 104, however, but an additional component.
[0310] The locking element 172 for example takes the form of a locking ball 180 and is arranged in the receiving space 112 of the anchor element 104.
[0311] A fastening portion 114 of the fastening element 106 preferably has a sub-portion 158 that takes, at least in certain regions, a form that is complementary with the locking ball 180.
[0312] As a result, the fastening portion 114 of the fastening element 106 is engageable with the locking ball 180 in a simple manner in order to move the locking ball 180 in the direction of connection 132 and thus to release the pre-stressed spring elements 120.
[0313] Otherwise, the embodiment of a fastening device 100 that is illustrated in
[0314] An alternative embodiment of an anchor element 104, illustrated in
[0315] In further embodiments of anchor elements 104, it is further also possible for only individual spring elements 120 or for four, five or more than five spring elements 120 to be provided.
[0316] Otherwise, the embodiment of an anchor element 104 that is illustrated in
[0317] An alternative embodiment of a fastening device 100, illustrated in
[0318] Moreover, the fastening element 106 includes, preferably, a plurality of fastening portions 114 that are arranged one behind the other in the direction of connection 132.
[0319] By using a plurality of the spring elements 120 arranged one behind the other in the direction of connection 132, it is possible to fix a fastening element 106 in different positions in relation to the anchor element 104.
[0320] Further, it is preferably possible to fix the fastening element 106 in different positions in relation to the anchor element 104 in that the fastening element has a plurality of fastening portions 114 arranged one behind the other in the direction of connection 132.
[0321] It may be favourable if a spacing A taken in the direction of connection 132 between two spring elements 120 that are arranged one behind the other differs from a spacing B taken in the direction of connection 132 between two fastening portions 114 arranged one behind the other. As a result, in particular a closely graduated latching of the fastening element 106 to the anchor element 104 may be achieved.
[0322] Otherwise, the embodiment of a fastening device 100 that is illustrated in
[0323] An embodiment of a fastening device 100, illustrated in
[0324] This makes it possible for example to make a connection between two articles 102 that cannot rotate in relation to the direction of connection 132.
[0325] As can be seen in particular from
[0326] A configuration of this kind for an anchoring portion 160 is in particular independent of a cross sectional shape of the fastening element 106 and/or anchor element 104.
[0327] Otherwise, the embodiment of a fastening device 100 that is illustrated in
[0328] An alternative embodiment of an anchor element 104, illustrated in
[0329] In this case, the anchoring elements 128 are in particular arranged in the form of a ring.
[0330] An anchor element 104 of this kind is in particular fixable in a groove 186 in an article 102, wherein the groove 186 has an undercut portion 188 in relation to the direction of connection 132.
[0331] A groove 186 of this kind is for example producible by means of a T-shaped milling cutter, in particular by boring and circular milling.
[0332] Otherwise, the embodiment of an anchor element 104 that is illustrated in
[0333]
[0334] Here, for the purpose of anchoring the fastening element 106 and the anchor element 104, non-self-tapping anchoring projections 190 that are in the shape of a circular arc portion are provided.
[0335] Here, in each case the anchoring projections 190 project substantially perpendicular to the direction of connection 132, laterally away from a base body 108 of the anchor element 104 and a base body 192 of the fastening element 106 respectively.
[0336] By means of the anchoring projections 190, the fastening element 106 and the anchor element 104 are in particular engageable in grooves (not illustrated) in the articles 102, which have undercut portions formed to be substantially complementary with the anchoring projections 190.
[0337] The exact shape of the base bodies 108 and 192 and of the anchoring projections 190 arranged thereon, for anchoring in the articles 102, is described in particular in EP 1 990 549 A1, to which reference is explicitly made here and whereof the content is hereby incorporated into this description by reference.
[0338] The embodiment of a fastening element 106 that is illustrated in
[0339] The embodiment of an anchor element 104 that is illustrated in
[0340] Otherwise, as regards the structure and functioning of the fastening element 106 from
[0341] An alternative embodiment of an anchor element 104, illustrated in
[0342] Here, the fastening opening 136 makes it possible to pass through a screw part 194 of a screw 196.
[0343] A screw head 198 of the screw 196 is preferably made larger than the fastening opening 136, however, with the result that it cannot be moved through the fastening opening 136 in the direction of connection 132.
[0344] Using the screw 196, it is thus possible to screw the anchor element 104 to an article 102.
[0345] Otherwise, the embodiment of an anchor element 104 that is illustrated in
[0346] An alternative embodiment of an anchor element 104, illustrated in
[0347] A fluid receptacle 200 serves in particular to receive a fluid, for example adhesive.
[0348] The fluid receptacle 200 is in particular arranged in a region of the anchor element 104 which, when a fastening portion 114 of the fastening element 106 is inserted, is moved into the receiving space 112 or captured by the fastening portion 114.
[0349] The fluid receptacle 200 is preferably damageable as a result of the fastening portion 114 being inserted into the receiving space 112 of the anchor element 104, with the result that the fluid therein can emerge. In particular, as a result it may be made possible, when the fastening portion 114 is fixed in the receiving space 112 of the anchor element 104, for adhesive to be released at the same time, and this adhesive enables an additional connection, in particular a substance-to-substance bond, to be made between the anchor element 104, the fastening element 106 and/or one or more articles 102.
[0350] Otherwise, the embodiment of an anchor element 104 that is illustrated in
[0351] An embodiment of a fastening device 100, illustrated in
[0352] For example, the connection portion 168 may be provided with a knurling.
[0353] In particular, grooves are provided, running in the direction of connection 132.
[0354] Since the connection portion 168 is preferably in contact with the ends 154 of the spring elements 120 in the installed condition of the fastening device 100, the contoured form of the connection portion 168 may preferably have the effect of transmitting force from the ends 154 of the spring elements 120 to the fastening element 106 or vice versa. This force transmission may for example be used to transmit a rotary movement from the fastening element 106 to the anchor element 104. Further, the transmission of force may serve to fix the fastening element 106 in a manner preventing rotation in relation to the anchor element 104.
[0355] As can be seen in particular from
[0356] Otherwise, the embodiment of a fastening device 100 that is illustrated in
[0357] An alternative embodiment of a fastening device 100, illustrated in
[0358] As a result of suitable shaping of the anchoring elements 128, they are actuable, preferably by means of the fastening portion 114 of a fastening element 106, when the fastening portion 114 is inserted into the receiving space 112 of the anchor element 104.
[0359] Here, the anchoring elements 128 are preferably movable out of the initial position illustrated in
[0360] In this case, the anchoring elements 128 are preferably plastically reshaped such that, after the anchoring elements 128 have been deformed by means of the fastening portion 114, they remain in the anchoring position illustrated in
[0361] Otherwise, the embodiment of a fastening device 100 that is illustrated in
[0362] An alternative embodiment of an anchor element 104, illustrated in
[0363] By means of the anchoring elements 128, consequently a fragmented external thread 202 of the anchor element 104 is preferably formed.
[0364] In particular, and by rotating the anchor element 104 about a longitudinal centre axis 140 thereof that runs parallel to the direction of connection 132, the anchor element 104 may in this case be unscrewed from a bore 164 in an article 102 or screwed into the bore 164 in the article 102.
[0365] For example, by combining an anchor element 104 of this kind with a fastening element 106 according to
[0366] Otherwise, the embodiment of an anchor element 104 that is illustrated in
[0367] In further embodiments (not illustrated) of fastening devices 100, individual or a plurality of features of the embodiments of fastening devices 100 that are described above may be combined with one another as desired. For example, the anchor element 104 according to
LIST OF REFERENCE NUMERALS
[0368] 100 Fastening device
[0369] 102 Article
[0370] 104 Anchor element
[0371] 106 Fastening element
[0372] 108 Base body (of anchor element 104)
[0373] 110 Sleeve
[0374] 112 Receiving space
[0375] 114 Fastening portion
[0376] 116 Wall
[0377] 118 Wall portion
[0378] 120 Spring element
[0379] 122 Peripheral direction
[0380] 124 Latching spring
[0381] 126 Tab
[0382] 128 Anchoring element
[0383] 130 Barb
[0384] 132 Direction of connection
[0385] 134 Introduction ramp
[0386] 136 Fastening opening
[0387] 138 Insertion opening
[0388] 140 Longitudinal centre axis
[0389] 142 Flat strip material
[0390] 144 Sheet-metal material
[0391] 146 Metal sheet
[0392] 148 Cut
[0393] 150 Flank
[0394] 152 Initial region
[0395] 154 End (of spring element 120)
[0396] 156 Collar
[0397] 158 Sub-portion
[0398] 160 Anchoring portion
[0399] 162 Screw portion
[0400] 164 Bore
[0401] 166 Abutment portion
[0402] 168 Connection portion
[0403] 170 Tool receptacle
[0404] 172 End (facing 160)
[0405] 174 End (remote from 160)
[0406] 176 Locking element
[0407] 178 Ratchet
[0408] 180 Locking ball
[0409] 182 Fluting
[0410] 184 End (remote from 138)
[0411] 186 Groove
[0412] 188 Undercut portion
[0413] 190 Anchoring projection
[0414] 192 Base body (of fastening element 106)
[0415] 194 Screw part
[0416] 196 Screw
[0417] 198 Screw head
[0418] 200 Fluid receptacle
[0419] 202 External thread
[0420] α (alpha) Angle
[0421] β (beta) Angle
[0422] A Spacing
[0423] B Spacing