FASTENING ARRANGEMENT, IN PARTICULAR FOR FASTENING AN ELECTRIC DRIVE TO AN ELECTRIC BICYCLE
20230219651 ยท 2023-07-13
Inventors
- Claus Fleischer (Stuttgart-Vaihingen, DE)
- Conrad Haeussermann (Trochtelfingen, DE)
- Erdogan Dikmenli (Ludwigsburg, DE)
- Harald Hundt (Aichelberg, DE)
- Jannis-Jeremias Schipperges (Reutlingen, DE)
- Mehmet Yalcin (Moeglingen, DE)
- Peter Niebel (Kusterdingen-Maehringen, DE)
- Rolando Doelling (Hechingen, DE)
- Sigmund Braun (Kusterdingen, DE)
- Stefan Holst (Reutlingen, DE)
Cpc classification
B62M6/55
PERFORMING OPERATIONS; TRANSPORTING
B62K19/30
PERFORMING OPERATIONS; TRANSPORTING
B62M6/40
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A fastening system configured for fastening a device to a hollow component having two holes situated opposite one another. The fastening system includes a first screw that has a head and that is designed to be guided through a first hole of the holes, and a sliding sleeve having an outer diameter that has a tolerance. The sliding sleeve is designed to accept the first screw at the second hole of the holes. An outer diameter of the sliding sleeve is displaceable in the axial direction of the first screw due to a clearance fit.
Claims
1-17. (canceled)
18. A fastening system, configured to fasten of a device to a hollow component that has two holes situated opposite one another, the fastening system comprising: a first screw that has a head and that is configured to be guided through a first hole of the holes; and a sliding sleeve that is configured to accept the first screw, the sliding sleeve being displaceable relative to the hollow component and/or to the device.
19. The fastening system as recited in claim 18, wherein the sliding sleeve has an outer diameter that has a tolerance, the sliding sleeve being configured to accept the first screw at a second hole of the holes, and wherein a tolerance fit is formed at the outer diameter of the sliding sleeve, so that the sliding sleeve is displaceable in an axial direction of the first screw, in the second hole.
20. The fastening system as recited in claim 19, wherein the sliding sleeve has an inner threading configured to accept the first screw.
21. The fastening system as recited in claim 19, further comprising: a second screw, wherein the first screw has a blind hole having an inner threading and the second screw has an outer threading that is configured for a screw connection with the inner threading of the blind hole, or the first screw has an outer threading and the second screw has a blind hole with inner threading that is configured to accept the outer threading of the first screw.
22. The fastening system as recited in claim 21, wherein a length of the first screw is greater than a length of the second screw.
23. The fastening system as recited in claim 18, wherein the sliding sleeve has a main body and an inner flange, the main body being made of a different material than the inner flange, and the main body has a lower hardness than the inner flange.
24. The fastening system as recited in claim 23, wherein the sliding sleeve further has an outer flange, the outer flange being made of the same material as the inner flange.
25. The fastening system as recited in claim 24, wherein the outer flange and the inner flange are perforated discs that are fixedly connected to the main body or are loosely placed on the main body.
26. The fastening system as recited in claim 23, wherein the clearance fit is formed at an outer circumference of the main body.
27. The fastening system as recited in claim 18, further including a first socket and a second socket, the first screw being guided through the first socket and the second socket.
28. The fastening system as recited in claim 27, wherein the first socket has an inner socket and an outer socket, and/or the second socket has an inner socket and an outer socket, and wherein the inner socket is made of a different material than the outer socket.
29. The fastening system as recited in claim 28, wherein a hardness of the inner socket is greater than a hardness of the outer socket.
30. The fastening system as recited in claim 28, wherein the second socket has an inner threading and the first screw has an outer threading that is engaged with the inner threading of the second socket.
31. The fastening system as recited in claim 27, wherein the first socket and the second socket each have an outward-oriented flange at one of their ends, the flange being formed in by the inner socket and the outer socket.
32. The fastening system as recited in claim 18, further comprising a damping element made of a steel wire mesh that has a centric opening, at least the first screw being guided through the damping element.
33. The fastening system as recited in claim 19, wherein the sliding sleeve is situated in the second hole.
34. A vehicle, comprising: a device; a hollow component having two holes situated opposite one another; and a fastening system configured to fasten the device to the hollow component, the fastening system including: a first screw that has a head and that is configured to be guided through a first hole of the holes, and a sliding sleeve that is configured to accept the first screw, the sliding sleeve being displaceable relative to the hollow component and/or to the device.
35. The vehicle as recited in claim 34, wherein the vehicle is an electric bicycle, the device is an electric drive of the electric bicycle, and the hollow component is a frame of the electric bicycle or a frame component of the electric bicycle.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Preferred exemplary embodiments of the present invention are described in detail with reference to the figures.
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
DETAILED DESCRIPTION OF EXAMPLE EMBODIMENTS
[0025] In the following, a fastening system 1 according to a first preferred exemplary embodiment of the present invention is described in detail with reference to
[0026] Fastening system 1 is designed to fasten a device 2, in this exemplary embodiment an electric drive of a bicycle having a multi-part housing 2a, 2b, to a hollow component 3, in this exemplary embodiment a frame component of the bicycle.
[0027] As can be seen in
[0028] Fastening system 6 includes a first screw 60 having a head 61 and a sliding sleeve 62. Inner flange 61 preferably has an outer diameter larger than an outer diameter of main body 60. Outer flange 62 has an outer diameter smaller than the outer diameter of main body 60. Sliding sleeve 6 is made of two different materials. Main body 60 is made of a soft flexible material, for example plastic. In particular, main body 60 is elastically deformable. Inner flange 61 and outer flange 62 are made of a hard elastic material, for example metal. In this exemplary embodiment, inner flange 61 and outer flange 62 are provided as perforated discs. Here inner flange 61 and outer flange 62 are each placed only on the end face regions of main body 60.
[0029] With its outer diameter, main body 60 defines a clearance fit 90 with second hole 32 of hollow component 3. As a result, a displacement of sliding sleeve 6 in the axial direction X-X of first screw 4 is possible.
[0030] Fastening system 1 further includes a second screw 5, as well as a first socket 7 and a second socket 8.
[0031] Second screw 5 has a head 50 and a body having an outer threading 51. As can be seen in
[0032] First socket 7 has an inner socket 70 and an outer socket 71. Inner socket 70 and outer socket 71 are made of different materials. Inner socket 70 is preferably made of a metallic material and outer socket 71 is preferably made of a plastic material. The inner socket and the outer socket each have an outward-oriented flange 70a or, respectively, 71a (cf.
[0033] As can be seen in
[0034]
[0035] Thus, fastening system 1 enables a two-stage screw connection, and in addition main body 60 of sliding sleeve 6 enables an acoustic damping of the structural mechanical transfer path of the electric drive to the hollow frame. The mounting of fastening system 1 does not introduce any significant tensions into the overall system, and in particular interrupts an acoustic transfer path from device 2 to hollow component 3.
[0036] In addition, first socket 7 and second socket 8 form, through their respective inner sockets 70, 80, a stop via which a necessary tensioning of the fastening system is dissipated.
[0037]
[0038] Differing from the first exemplary embodiment, fastening system 1 of the second exemplary embodiment has a sliding sleeve 6 that has an inner threading 63. First screw 4 has an outer threading 41. Outer threading 41 engages with inner threading 63 of sliding sleeve 6. In addition, a first socket 7 and a second socket 8 are provided, second socket 8 having no inner threading in the second exemplary embodiment. First and second socket 7 and 8 each have an inner socket 70, 80 and an outer socket 71, 81. Here, first and second sockets 7, 8 have different axial lengths.
[0039] A clearance fit 9 is again formed between sliding sleeve 6 and second hole 32. In this way, a tolerance compensation can be enabled. Alternatively, there can be a transition fit between sliding sleeve 6 and second hole 32. When first screw 4 is tightened, sliding sleeve 6 is thus displaced in the axial direction, towards device 2, until sliding sleeve 6 contacts flange 80a of second socket 8. Starting from the time of contact, a pre-tension force for the fastening of device 2 on hollow component 3 is then built up.
[0040]
[0041] The third exemplary embodiment additionally has damping elements 12 that are situated between device 2 and hollow component 3. More precisely, damping elements 12, as visible in
[0042]
[0043] In the fourth exemplary embodiment, sliding sleeve 6 is no longer situated in hollow component 3, but rather in device 2. As can be seen in
[0044]
[0045] In other respects, this exemplary embodiment corresponds to the preceding exemplary embodiments, so that reference is made to the description provided there.