Insert Element For A Vehicle Wheel And Vehicle Wheel With At Least One Such Insert Element
20220134802 · 2022-05-05
Inventors
- Sebastian VOGT (Lüdenscheid, DE)
- Michael RISSE (Menden, DE)
- Andreas ERDMANN (Menden, DE)
- Sven Chandra BOSE (Meinerzhagen, DE)
- Tobias PETER (Meinerzhagen, DE)
- Thomas TIMMERMANN (Meinerzhagen, DE)
- Andreas NOWACK (Meinerzhagen, DE)
Cpc classification
B60B7/12
PERFORMING OPERATIONS; TRANSPORTING
B60B2310/307
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An insert element for a vehicle wheel comprises several supporting bodies for supporting the insert element on supporting surfaces of the vehicle wheel. The supporting bodies have a supporting shoulder, which can be brought to bear against a supporting surface of the vehicle wheel, and a fastening extension with an axial hollow channel and with at least one outwardly protruding locking projection, arranged at an axial distance from the supporting shoulder, for engaging behind an installation opening reaching through the supporting surface of the vehicle wheel. The supporting bodies are designed as elastomer components which are elastically deformable in the radial and axial direction and sit with their hollow channel on a supporting core. The supporting cores bear a radially protruding retaining flange and are held on the rear side on the insert element.
Each supporting body is held by the retaining flange in a form-fitting manner against being pulled off from the supporting core.
Claims
1-16. (canceled)
17. An insert element for a vehicle wheel, comprising: several supporting bodies arranged at a distance from one another on a rear side on the insert element for supporting and holding the insert element on supporting surfaces of the vehicle wheel, wherein the supporting bodies each have a supporting shoulder for bearing against a supporting surface of the vehicle wheel, and a fastening extension with an axial hollow channel and with at least one outwardly protruding locking projection arranged at an axial distance from the supporting shoulder for engaging behind an installation opening extending through the supporting surface of the vehicle wheel, wherein the supporting bodies are designed as elastomer components which are elastically deformable in radial and axial direction, and several supporting cores which each have a radially protruding retaining flange and are held on the rear side on the insert element, wherein the supporting bodies with their hollow channels each sit on a supporting core, and each supporting body is held by the retaining flange of the supporting core bearing the supporting body in axial direction of the supporting core in a form-fitting manner against being pulled off from the supporting core.
18. The insert element of claim 17, wherein the locking projection of the supporting body protrudes in radial direction with respect to the radial end of the retaining flange of the supporting core.
19. The insert element of claim 18, wherein the diameter of the lateral surface of the retaining flange of the supporting core is smaller than the diameter of the installation opening of the vehicle wheel which is to be reached through.
20. The insert element of claim 17, wherein the diameter of the lateral surface of the retaining flange of the supporting core is greater than the diameter of the installation opening of the vehicle wheel which is to be reached through, and the supporting core, starting from the retaining flange thereof, has at least one gap according to its longitudinal extension with a gap width, such that, as a result of a diameter reduction of the retaining flange made possible by the gap, the retaining flange can be passed through the installation opening of the vehicle wheel.
21. The insert element of claim 20, wherein the supporting core is formed by at least two supporting core segments which are spaced from one another by a respective gap.
22. The insert element of claim 21, wherein after connection of the insert element on a vehicle wheel, a securing element is arranged between the supporting core segments for blocking the diameter reduction of the retaining flange.
23. The insert element of claim 22, wherein the supporting core segments are designed in the manner of half-shells and the securing element is a securing pin, wherein the securing pin has a blocking section of larger diameter on which a guiding section of smaller diameter is formed, wherein the securing pin is movable in longitudinal axial direction in a channel formed by the two supporting core half-shells, wherein, in a securing position, the blocking section of the securing pin engages in the channel and, in a non-securing position, the blocking section of the securing pin does not engage in the channel, such that the two half-shells can be shifted with respect to one another for the diameter reduction of the retaining flange in the non-securing position.
24. The insert element of claim 23, wherein the securing element has guiding pins which engage in each gap separating the supporting core half-shells.
25. The insert element of claim 20, wherein the retaining flange of the support core and the locking projection of the support body have a front side designed as a truncated cone.
26. The insert element of claim 17, wherein the locking projection, on its side facing the supporting shoulder, has a locking surface designed as inclined.
27. The insert element of claim 17, wherein the supporting shoulder is a hollow chamber structure with several hollow chambers separated from one another in peripheral direction by a respective web extending in radial direction.
28. The insert element of claim 17, wherein several supporting bars are arranged with an angular distance from one another with respective radial extension around the supporting core in a region of the supporting core connection to the rear side of the insert element.
29. The insert element of claim 28, wherein the supporting bars are formed both on the supporting core and on the rear side of the insert element.
30. The insert element of claim 17, wherein, for supporting the insert element at contact regions between the vehicle wheel and the insert element, several projections as spacer elements are located on the insert element side and/or wheel side, with which the insert element is in contact in axial direction and/or in radial direction of the supporting cores, and this contact, in addition to the retaining flanges of the supporting cores, is used as abutment for pretensioning.
31. A vehicle wheel having several openings with at least one insert element connected to the vehicle wheel, wherein the at least one insert element is an insert element according to claim 17.
32. The vehicle wheel of claim 31, wherein the vehicle wheel openings are delimited in peripheral direction of the vehicle wheel by one or more spokes.
33. The vehicle wheel of claim 31, wherein the vehicle wheel is a light metal wheel.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0026] The below description is provided in reference to the appended figures based on embodiment examples, wherein:
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
[0037] and
[0038]
DETAILED DESCRIPTION
[0039] In
[0040] In the embodiment example shown, the fastening of the insert element 6 occurs via three fastening points, wherein an installation of the insert element 6 on the vehicle wheel 1 occurs without a tool. The fastening points can be seen in the rear view of the vehicle wheel 1 of
[0041] The fastening point B.sub.1 shown in an enlarged perspective representation in
[0042] The supporting body 9 sits on the supporting core 8. For this purpose, the supporting body 9 has a hollow channel 10a (see
[0043] The supporting body 9 has a supporting shoulder 13 which bears with its base surface 14 against the small sides of the supporting bars 12, which face the retaining flange 10. The surface of the supporting shoulder 13 opposite the base surface 14 is a contact surface 15, against which the hole marginal region of the installation hole, which faces the insert element 6, bears as complementary supporting surface. A holding section 16 is formed on the supporting shoulder 13. The diameter of the holding section 16 substantially corresponds to the diameter of the installation bore. On the holding section 16, a locking projection 17 which is peripheral in the embodiment example shown is formed with a locking surface 18 facing the contact surface 15. The locking projection 17 protrudes beyond the holding section 16. The supporting body 9 is tapered by the holding section 16. The holding section 16 and the locking projection 17 together form a fastening extension. As can be seen in
[0044] In the embodiment example shown, the supporting shoulder 13 is designed as hollow chamber part and has several hollow chambers 19 arranged peripherally distributed. Two adjacent hollow chambers 19 are each separated from one another by a web 20 extending in radial direction.
[0045] The fastening point B.sub.1 is shown in cross section in
[0046] In
[0047] In a further development, it is provided that the supporting body 9 with its base surface 14, when attached to the installation flange 7 of the vehicle wheel 1, is not supported on the supporting bars 12, but it is provided that, in order to apply the desired pretensioning force, the abutment occurs due to the contact arrangement of the spacer elements A on the outer side of the vehicle wheel 1. In this design, a certain play is present between the base surface 14 of the supporting shoulder 13 of the supporting body 9 and the supporting bars 12. Thus, in this design, for applying the desired pretensioning, the retaining flange 10—on the one hand—and the contact arrangement of the supporting elements A on the outer side of the vehicle wheel 1—on the other hand—act as abutment. It is understood that the spacer elements can also be arranged on the vehicle wheel side.
[0048]
[0049] The maximum diameter of the supporting core 8.1 in the region of its retaining flange 10.1 is greater than the diameter of the installation bore reaching through the installation flange 7. Therefore, the retaining flange 10.1 engages behind the installation bore of the vehicle wheel 1. The diameter of the locking projection 17.1 forming the locking surface 18.1 of the supporting body 9.1 corresponds to the maximum diameter of the retaining flange 10.1.
[0050]
[0051] The securing pin 22 has a blocking section 23, the outer diameter of which corresponds to the inner diameter of the inner channel of the supporting body 8.1. On the blocking section 23, a head 24 is formed for handling the securing pin 22. In the direction of the insert element 6.1, on the blocking section 23, a section 25 with reduced diameter is formed. If the section 25 is located in the region of the retaining flange 10.1, as is the case at fastening point B.sub.5, the two supporting core half-shells can be moved toward one another in the region of their retaining flange 10.1. Then it is possible to bring them through the installation bore. In the securing position of the securing pin 22, shown in
[0052] In the embodiment example of
[0053] From this disclosure it becomes clear that not only can an insert element as described be mounted particularly simply, but also advantageous properties of a conventional screw connection can be implemented.
[0054] The invention has been described using embodiment examples. Without departing the scope of the claims, numerous embodiments, modifications and possibilities for implementing said invention arise for a person skilled in the art, without needing to explain or show them in further detail in the context of this disclosure.
LIST OF REFERENCE NUMERALS
[0055] 1 Vehicle wheel
[0056] 2 Wheel opening
[0057] 3, 3.1 Spoke
[0058] 4 Hub region
[0059] 5 Rim well
[0060] 6, 6.1 Insert element
[0061] 7, 7.1 Installation flange
[0062] 8, 8.1 Supporting core
[0063] 9, 9.1 Supporting body
[0064] 10, 10.1 Retaining flange
[0065] 10a Hollow channel
[0066] 11, 11.1 Shaft section
[0067] 12 Supporting bar
[0068] 13, 13.1 Supporting shoulder
[0069] 14 Base surface
[0070] 15, 15.1 Contact surface
[0071] 16, 16.1 Holding section
[0072] 17, 17.1 Locking projection
[0073] 18, 18.1 Locking surface
[0074] 19 Hollow chamber
[0075] 20 Web
[0076] 21 Gap
[0077] 22, 22.1 Securing pin
[0078] 23 Blocking section
[0079] 24 Head
[0080] 25 Section
[0081] 26 Small snap arms
[0082] A Spacer element
[0083] B.sub.1-B.sub.5 Fastening point