This application is the United States National Phase of PCT Appln. No. PCT/DE2020/100701 filed Aug. 13, 2020, which claims priority to German Application No. DE102019124927.9 filed Sep. 17, 2019, the entire disclosures of which are incorporated by reference herein.
The present disclosure relates to a freewheel assembly, which may be used in a torque transmission device having an electric starter motor or in a transmission, e.g., in a motor vehicle such as a motorcycle, having a single-piece flange formed by deep drawing and an outer ring, as well as several rolling bodies accommodated within the outer ring freewheel unit which cooperate with clamping ramps of the outer ring. The outer ring is fastened in a sleeve portion of the flange via a press fit.
Generic freewheel assemblies are already known in the prior art. For example, DE 10 2016 218 714 B4 discloses a freewheel assembly having a freewheel and a flange.
A disadvantage of the designs known from the prior art is that, when these freewheel assemblies are installed by the customer, there is often a relatively high effort in connecting these freewheel assemblies to further components.
The present disclosure provides a centering collar foil led on an end face of a disk portion of the flange that projects radially outward from the sleeve portion. A centering collar is understood to be a projection which protrudes axially from the flange/disk portion and which forms a radial bearing surface/centering surface.
This centering collar simplifies further assembly, while the flange can still be produced simply by deep drawing.
Accordingly, the centering collar may be formed by a projection formed by deep-drawing technology. In this way the manufacturing effort is further simplified.
For simple assembly and a simple design of the further components that can be connected to the flange, the centering collar may form an annular/completely circumferential bearing surface pointing radially outward.
If multiple through holes distributed in the circumferential direction are made in the disk portion radially outside the centering collar, good accessibility is enabled for the assembly of the freewheel assembly, for example via a screw connection.
For a compact axial design, the outer ring may have the same length (axial extent) as the sleeve portion.
A circumferential groove may be impressed on a second end face (of the disk portion) facing away from the first end face having the centering collar.
The sleeve portion may have an outer diameter which is smaller than an outer diameter of the centering collar.
If the groove is arranged at the same radial height as the centering collar, the disk portion can be implemented in a compact manner both axially and radially.
Furthermore, the disk portion may be arranged to be eccentric to the sleeve portion, as seen in an axial direction.
In this context, the sleeve portion and the disk portion may be arranged relative to one another in such a way that the flange as a whole has an (essentially) L-shaped cross-sectional area.
In other words, according to the present disclosure, a sleeve freewheel (freewheel unit) combined with a drawn flange is implemented. The deep-drawn flange is connected by means of a press fit.
In the following, the present disclosure is now explained in more detail with reference to figures.
In the figures:
The figures are only schematic in nature and serve only for understanding the disclosure. The same elements are provided with the same reference symbols.
The freewheel assembly 1 according to the disclosure, illustrated in terms of the structure thereof with
The freewheel assembly 1 has a central axis of rotation 17, as shown in
As can be seen in
As shown in
As can also be seen in connection with
According to the disclosure, a centering collar 11 is formed directly on a (first) end face 9 of the disk portion 10. This centering collar 11, as can be seen, for example, in
The flange 2 is realized as a deep-drawn element, and the disk portion 10, the sleeve portion 8 and the centering collar 11 and the groove 15, for example, are formed together in a deep-drawing step, i.e., by means of a tool, in a deep-drawing process.
In other words, according to the disclosure, a deep-drawn flange 2 is provided in combination with a sleeve freewheel 6 (FRAX freewheel). The L-shaped flange 2 having a centering collar 11 molded onto the rear side 9 is connected to the FRAX freewheel 6 by means of a press fit 7. At the end customer, the flange 2 is then attached to a housing with screws.
Number | Date | Country | Kind |
---|---|---|---|
10 2019 124 927.9 | Sep 2019 | DE | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/DE2020/100701 | 8/13/2020 | WO |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2021/052527 | 3/25/2021 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
3528534 | Benson | Sep 1970 | A |
20140231206 | Altmann | Aug 2014 | A1 |
20160017936 | Reimchen | Jan 2016 | A1 |
Number | Date | Country |
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3739220 | Jun 1994 | DE |
102008021960 | Nov 2009 | DE |
102014204174 | Sep 2015 | DE |
102014209119 | Nov 2015 | DE |
102016218714 | May 2018 | DE |
102017127528 | Nov 2018 | DE |
2013053505 | Apr 2013 | WO |
Number | Date | Country | |
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20220268325 A1 | Aug 2022 | US |