SEALING PLUG
20210046979 · 2021-02-18
Inventors
Cpc classification
B62D25/24
PERFORMING OPERATIONS; TRANSPORTING
F16B21/086
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
B62D25/24
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A closing plug for closing holes in objects, in particular for closing holes in vehicle bodies, wherein the closing plug has at least one first circumferential wall which encloses a cavity, wherein a transverse wall is present in the cavity between the circumferential side wall, which transverse wall has an outer shape which corresponds to the shape of the cavity and is attached to the side wall in a circumferential manner, wherein, for the purpose of reinforcing the circumferential wall against yielding outward or inward, at least one reinforcement rib extends transversely through the cavity and so as to connect opposite regions of the circumferential side wall.
Claims
1. A closing plug for closing holes in vehicle bodies, wherein the closing plug (1) has at least one first circumferential wall (2) which encloses a cavity (3), wherein a transverse wall (4) is present in the cavity (3) between the circumferential side wall (2), which transverse wall has an outer shape which corresponds to the shape of the cavity (3) and is attached to the side wall (2) in a circumferential manner.
2. The closing plug as claimed in claim 1, wherein, for the purpose of reinforcing the circumferential wall (2) against yielding outward or inward, at least one reinforcement rib (15) extends transversely through the cavity (3) and so as to connect opposite regions of the circumferential side wall (2).
3. The closing plug as claimed in claim 1, wherein the closing plug is formed as a 1-component structural part composed of a heat-activatable adhesive material.
4. The closing plug as claimed in claim 2, wherein a TPE material and/or a material having adhesive properties at relatively high temperatures of e.g. 110 C. to 195 C. is provided as the heat-activatable adhesive material.
5. The closing plug as claimed in claim 2, in that there are a plurality of reinforcement ribs (15).
6. The closing plug as claimed in claim 1, wherein the transverse wall (4) is arranged in the region of a circumferential edge (5, 6) of the circumferential side wall (2) or is arranged at any desired point of the circumferential side wall (2) axially between the free edges (5, 6), wherein, given the arrangement of the transverse wall (4) in the region of the circumferential edges (5, 6) so as to terminate with said edges, a cup-, bowl- or trough-like structure is formed or, given an arrangement between the circumferential edges (5, 6), the cavity (3) is subdivided into partial cavities (3a, 3b) in a symmetrical or asymmetrical manner.
7. The closing plug as claimed in claim 1, wherein, given an arrangement of the transverse wall (4) in the region of one of the circumferential edges (5, 6), at least one rib (15) extends from that surface of the transverse wall (4) which faces the cavity (3) in the direction of the axially opposite circumferential edge (5, 6).
8. The closing plug as claimed in claim 1, wherein, when the transverse wall (4) subdivides the cavity (3) between the edges (5, 6) into partial cavities (3a, 3b) in a symmetrical or asymmetrical manner, one of the partial cavities (3a, 3b) has a transverse rib arrangement comprising at least one rib (15) or both partial cavities (3a, 3b) have a transverse rib arrangement comprising at least one rib (15).
9. The closing plug as claimed in claim 1, wherein a central, axial extension (17) is formed in the region of a longitudinal center of the cavity (3) or the partial cavities (3a, 3b), the ribs (15) being formed between said extension on the one hand and the inner surface of the wall (2) on the other hand.
10. The closing plug as claimed in claim 1, wherein an annular coaxial rib (18) is arranged coaxially around the longitudinal center of the cavity (3) or the partial cavities (3a, 3b), the ribs (15) being guided outward radially in relation to the inner surface of the wall (2) from said annular coaxial rib.
11. The closing plug as claimed in claim 1, wherein the annular rib (18) and/or the central extension (17) project over a partial quantity of the axial length between the transverse wall (4) and a respective circumferential edge (5, 6) or over the entire height up to a circumferential edge (5, 6) or beyond.
12. The closing plug as claimed in claim 1, wherein projections (17) or annular ribs (18) are arranged so as to project into the partial cavities (3a, 3b) given cavities and partial cavities (3, 3a, 3b) on either side of the transverse wall (4).
13. The closing plug as claimed in claim 1, wherein the ribs (15) have, over their radial extent, a uniform height, a height which decreases radially outward or increases radially outward or a varying height from an axial center of the cavity (3) toward a circumferential wall (2).
14. The closing plug as claimed in claim 1, wherein an outer circumferential side wall (7) branches off from one of the circumferential edges (5, 6) of the circumferential side wall (2) obliquely outward in the direction of other circumferential edges (5, 6), said outer circumferential side wall diverging from the first inner circumferential wall (2), wherein a sealing lip (9) branches off from a free end edge (8) of the second circumferential wall (7) obliquely outward and against its direction of extent.
15. The closing plug as claimed in claim 1, wherein a sealing lip (9) branches off from one of the circumferential edges (5, 6) of the circumferential side wall (2) obliquely outward and against the direction of extent, wherein a bead (20) or a step (10) is formed on an opposite circumferential edge (5, 6) as restraint means preventing the plug from being pulled out of a hole.
16. The closing plug as claimed in claim 1, wherein the sealing lip (9) is formed at least in subregions from a heat-activatable adhesive material or comprises such a material on a surface which faces a body (12), in order to adhesively bond the sealing lip (9) and the body (12) given suitable heat treatment.
17. The closing plug as claimed in claim 1, produced by a 1-component injection molding process from a heat-activatable adhesive material.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0047] The invention is explained by way of example with reference to a drawing,
[0048] in which:
[0049]
[0050]
[0051]
[0052]
[0053]
[0054]
[0055]
[0056]
[0057]
[0058]
[0059]
[0060]
[0061]
[0062]
[0063]
DETAILED DESCRIPTION
[0064] A closing plug 1 according to the invention has a first circumferential side wall 2 which encloses a cavity 3.
[0065] A transverse wall 4 is provided in the cavity 3 such that it is delimited from the circumferential side wall 2, said transverse wall having an outer shape which corresponds to the shape of the cavity 3.
[0066] The circumferential side wall 2 has a first circumferential free edge 5 and a second circumferential free edge 6 which are present at diametrically opposite ends of the wall 2.
[0067] The transverse wall 4 can be arranged respectively in the region of one of the circumferential edges 5, 6 or at any desired point of the circumferential side wall 2 between the free edges 5, 6 (
[0068] In the case in which the transverse wall 4 is arranged in the region of the circumferential edges 5, 6, in particular so as to terminate with said edges, a cup-, bowl- or trough-like structure is thus formed, whereas, given an arrangement between the circumferential edges 5, 6, the cavity 3 is subdivided into partial cavities 3a, 3b in a symmetrical or asymmetrical manner.
[0069] An outer circumferential side wall 7 can branch off from a circumferential second edge 6 of the circumferential side wall 2, in particular obliquely outward in the direction of the first circumferential edge 5, said outer circumferential side wall diverging from the first inner circumferential wall 2.
[0070] The second circumferential outer wall 7 extends for example as far as the level of the first circumferential edge 5.
[0071] A sealing lip 9 branches off from the free end edge 8 of the second circumferential wall 7 obliquely outward and against the direction of extent of the second wall 7.
[0072] A step 10 is arranged in a circumferential manner on the second outer wall 7 and somewhat narrows the second outer wall 7 in this region. The step 10 is optional (it is e.g. not present in
[0073] With respect to the axial extent of the second outer wall 7, this step 10 is arranged approximately at the level of a free circumferential edge 11 of the sealing lip 9.
[0074] The sealing lip 9, on the one hand, and the step, on the other hand, interact (
[0075] After the closing plug 1 has been plugged through the hole 13, the sealing lip rests on one side on the flat-plate-like body 12 under a material-related restoring force and it is endeavored to pull the closing plug out of the hole 13 again. The radial pressing of the outer wall 7 by the inside of the hole 13 prevents the plug from being pulled out.
[0076] The circumferential step 10 on the outer wall 7 bears here against the opposite lateral surface of the flat-plate-like body 12 and impedes it. This is, however, only necessary if the material and the plug design cannot sufficiently apply radial pressing.
[0077] The inner circumferential wall 2 and the outer circumferential wall 7 delimit between them an annular groove 14 which encircles the inner wall 2 and the transverse wall 4.
[0078] As a result of this distance between the inner wall 2 and the outer wall 7 and the fact of being formed from an elastic material, the outer wall 7 presses under the restoring force of the elastic material against a circumferential edge of the hole 13 and seals said hole in this way. The inner wall 2 and the outer wall interact here in the manner of a clamping spring.
[0079] In this embodiment, the plug 1 preferably has a small radial oversize in relation to the width of the hole 13, in order to bring about a sealing action. Since the plug 1 is produced from an elastic material, it is nevertheless readily possible to plug it through the hole 13.
[0080] Also in this embodiment, the transverse wall 4 can terminate or substantially terminate between the circumferential edges 5, 6 (
[0081] In addition to the bead (20) described, one embodiment can also be formed with a circumferential wall 2 (
[0082] In a further advantageous embodiment, a second outer wall 7 is not present, but a sealing lip 9 branches off from a circumferential edge 5 of the circumferential side wall 2.
[0083] As a restraint means which counteracts the pulling-out of the plug, in this embodiment the circumferential edge 6 can be formed with a bead 20 which projects outward and acts in the same way as the step 10 in the embodiment with two walls 2, 7.
[0084] For the purpose of reinforcing the plug, at least one reinforcement rib 15 extends transversely through the cavity 3 and is attached here to two opposite regions of the circumferential side wall 2.
[0085] In particular, there may also be a plurality of ribs 15 which cross in particular in the region of a longitudinal center axis 16 of the cavity.
[0086] In an embodiment of the closing plug 1 in which the transverse wall 4 is arranged in the region of a circumferential edge 5, 6 or terminates with said circumferential edge, the at least one rib 15 extends for example from that surface of the transverse wall 4 which faces the cavity 3 in the direction of the axially opposite circumferential edge 5, 6.
[0087] In an embodiment in which the transverse wall 4 subdivides the cavity 3 between the edges 5, 6 in a symmetrical or asymmetrical manner, one of the partial cavities 3a, 3b can have a transverse rib arrangement with at least one rib 15. For the purpose of reinforcement, it can however also be the case that, on each side of the transverse wall 4, the two partial cavities 3a, 3b are formed with a transverse rib arrangement having at least one rib 15.
[0088] In a further advantageous embodiment, a central, axial extension 17 is formed in the region of a longitudinal center of the cavity 3, the ribs 15 being formed between said extension and the inner surface of the wall 2.
[0089] In a further embodiment (
[0090] The annular rib 18 and/or the central extension 17 can project over a partial quantity of the axial length between the transverse wall 4 and a respective circumferential edge 5, 6 or over the entire height up to the circumferential edge 5, 6 or beyond.
[0091] In an embodiment in which the transverse wall 4 subdivides the cavity 3 into partial cavities 3a, 3b in a symmetrical or asymmetrical manner, projections 17 of this type or annular ribs 18 can of course be arranged on each side of the transverse wall 4.
[0092] The ribs 15 here can, over their extent, have a uniform height or decrease in height toward a longitudinal center of the cavity 3 (
[0093] In addition, any intermediate shapes in which the height first decreases and then increases again to the starting value or above it are of course possible.
[0094] In an advantageous refinement, the sealing lip 9 is formed at least in subregions from a heat-activatable adhesive material or comprises such a material on a surface which faces a body 12, in order to adhesively bond the sealing lip 9 and the body 12 given suitable heat treatment.
[0095] In addition, a method for producing an abovementioned closing plug by means of a 2-component injection molding method is provided.
[0096] According to a further advantageous embodiment, the closing plug is provided for closing holes in objects, in particular for closing holes in vehicle bodies, wherein the closing plug 1 has at least one first circumferential wall 2 which encloses a cavity 3, wherein a transverse wall 4 is present in the cavity 3 between the circumferential side wall 2, which transverse wall has an outer shape which corresponds to the shape of the cavity 3 and is attached to the side wall 2 in a circumferential manner.
[0097] This closing plug can comprise the abovementioned features in combination with their technical effect.
[0098] The closing plug is distinguished in that it is formed as a 1-component structural part in one piece or completely from a heat-activatable adhesive material.
[0099] A TPE material and/or a material having adhesive properties at relatively high temperatures of e.g. 110 C. to 195 C. is provided as the heat-activatable adhesive material for the 1-component adhesive closing plug.
[0100] The adhesive properties are provided at temperatures of 110 C. or 120 C. or 130 C. or 140 C. or 150 C. The adhesive properties are provided at temperatures up to 155 C. or 165 C. or 175 C. or 185 C. or 195 C.
[0101] Furthermore, a closing plug is provided which is produced from a heat-activatable adhesive material by a 1-component injection molding method.
[0102] In particular, a method for producing a closing plug by means of a 1-component injection molding method from a heat-activatable adhesive material is also provided.
[0103] In the invention, it is advantageous that, as a result of the arrangement of a transverse rib arrangement with at least one rib inside a cavity of a closing plug, an inner circumferential wall which delimits the cavity and a transverse wall of the plug are reinforced such that, when being pressed into an opening to be closed, on the one hand, or when being pressed out of this opening, the plug is not elastically deformed to such an extent that relatively large forces counteract assembly or disassembly. During assembly, as a result of the spreading of the wall 7 the forces are lower, and, during disassembly, as a result of the stiffening the wall can contract inward to a smaller extent, and the result is thus an improved holding action.