CENTRIFUGAL PENDULUM HAVING A ROLLER TRACK PROJECTING AXIALLY OUTWARD, AND TORQUE TRANSMISSION DEVICE
20230358294 · 2023-11-09
Assignee
Inventors
- Alain Rusch (Gambsheim, FR)
- Martin Häßler (Graben-Neudorf, DE)
- Martin Loth (Bühl, DE)
- Laurent Theriot (Strasbourg, FR)
Cpc classification
F16F2236/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F2226/047
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F2222/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F2232/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A centrifugal pendulum for a motor vehicle drivetrain includes a carrier, a pendulum mass, mounting for pivoting relative to the carrier, and a roller body. The carrier has a carrier roller track and the pendulum mass has a pendulum mass roller track. The roller body has a first rolling region arranged in the carrier roller track and a second rolling region arranged in the pendulum mass roller track. The carrier roller track is formed at least partially by an axially formed sheet-metal portion having a free edge, and the free edge faces away from the pendulum mass.
Claims
1. A centrifugal pendulum for a motor vehicle drivetrain, comprising a carrier and a pendulum mass, which is mounted for pivoting relative to the carrier by means of at least one roller body, wherein a first rolling region of the at least one roller body is accommodated in a roller track of the carrier and a second rolling region of the at least one roller body is accommodated in a roller track of the pendulum mass, wherein at least one of the two roller tracks is formed partly or completely by an axially formed sheet-metal portion in such a way that a free edge of the axially formed sheet-metal portion faces away from the nearest pendulum mass.
2. The centrifugal pendulum according to claim 1, wherein the formed sheet-metal portion has an area curved by sheet-metal forming, with which a portion of the roller body can be brought into contact and over which the portion of the roller body preferably rolls.
3. The centrifugal pendulum according to claim 1, wherein the sheet-metal portion partly or completely forms a bearing region of a through hole forming the roller track.
4. The centrifugal pendulum according to claim 3, wherein the sheet-metal portion forms a radial outer side or a radial inner side of the bearing region.
5. The centrifugal pendulum according to one of claims 1, wherein the carrier has two flange elements, wherein both flange elements have a roller track for each roller body which accommodates said roller body and is formed by an axially formed sheet-metal portion.
6. The centrifugal pendulum according to claim 5, wherein the free edges of the formed sheet-metal portions of the two flange elements face away from one another.
7. The centrifugal pendulum according to claims 1 6, wherein the sheet-metal portion is formed in such a way that it runs essentially perpendicularly to a radially extending disk region of the carrier or the pendulum mass.
8. The centrifugal pendulum according to claim 7, wherein a transition between the sheet-metal portion and the disk region is formed in such a way that a radius formed by this transition is less than half the material thickness of the disk region.
9. The centrifugal pendulum according to claim 1, wherein the at least one roller body has a conical support surface by means of which it is axially supported on the carrier or the pendulum mass, preferably in the area of the formed sheet-metal portion that is curved by sheet-metal forming.
10. The centrifugal pendulum according to claims 1, wherein the roller track of the pendulum mass is longer than the roller track of the carrier.
11. The centrifugal pendulum according to claim 1, wherein the roller track of the carrier or the roller track of the pendulum mass is case-hardened.
12. A torque transmission device for a motor vehicle drivetrain, having the centrifugal pendulum according to one of claims 1 to 11 and a clutch disk connected to the carrier of the centrifugal pendulum.
13. A centrifugal pendulum for a motor vehicle drivetrain, comprising: a carrier comprising a carrier roller track; a pendulum mass, mounted for pivoting relative to the carrier, the pendulum mass comprising a pendulum mass roller track; and a roller body comprising: a first rolling region arranged in the carrier roller track; and a second rolling region arranged in the pendulum mass roller track, wherein: the carrier roller track is formed at least partially by an axially formed sheet-metal portion having a free edge; and the free edge faces away from the pendulum mass.
14. The centrifugal pendulum of claim 13, wherein: the axially formed sheet-metal portion comprises an area curved by sheet-metal forming; and a portion of the roller body rolls on the area curved by sheet-metal forming.
15. The centrifugal pendulum of claim 13, wherein the axially formed sheet-metal portion forms a bearing region of a through hole forming the carrier roller track.
16. The centrifugal pendulum of claim 15, wherein the axially formed sheet-metal portion forms a radial outer side or a radial inner side of the bearing region.
17. The centrifugal pendulum of claim 13, wherein: the carrier comprises two flange elements; each one of the two flange elements comprises a respective carrier roller track, and the first rolling region is arranged in the respective carrier roller tracks.
18. The centrifugal pendulum of claim 17, wherein: the respective carrier roller tracks comprise respective free edges; and the respective free edges face away from one another.
19. The centrifugal pendulum of claim 13, wherein: the carrier comprises a radially extending disk region; and the axially formed sheet-metal portion is formed such that it runs perpendicular to the radially extending disk region.
20. The centrifugal pendulum of claim 19, wherein: the radially extending disk region comprises a disk region thickness; the carrier comprises a transition region between the axially formed sheet-metal portion, and the radially extending disk region; and a radius formed by the transition region is less than half of the disk region thickness.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The disclosure is now explained in more detail below with reference to figures, in which context various exemplary embodiments are also shown.
[0018] In the figures:
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
DETAILED DESCRIPTION
[0030] The figures are merely schematic in nature and are therefore intended solely for the purpose of understanding the disclosure. The same elements are provided with the same reference symbols.
[0031]
[0032] The centrifugal pendulum 1 has a carrier 2, as shown in
[0033] A pendulum mass 4 is accommodated axially between the regions of the flange elements 14,15 forming the first roller tracks 6, which is guided in its pendulum/pivoting movement by means of the roller bodies 3 relative to the carrier 2. For this purpose, the pendulum mass 4 has a second roller track 8. The roller body 3 is accommodated in its axial region between the first roller tracks 6 to form a second rolling region 7 in this second roller track 8. The pendulum mass 4 is thus guided in a pivotable manner via the roller bodies 3 and by their inclusion in the roller tracks 6, 8 in the centrifugal force field during operation of the torque transmission device 21.
[0034] According to the disclosure, each of the first roller tracks 6 is formed by an axially folded/formed/projected sheet-metal portion 9 of the flange elements 14, 15 in such a way that a free edge or cut edge of the axially formed sheet-metal portion 9 faces away from the nearest pendulum mass 4. This is illustrated with the aid of the various
[0035] This forming process is shown in detail in connection with
[0036] In
[0037] Thus, on the respective flange element 14, 15, a one-piece sheet-metal portion 9 is formed in the form of a sheet-metal cup, which runs/projects in the axial direction. Its cut edge 25, previously machined by stamping or cutting, is thus axially aligned and thus radially spaced/not in frictional contact with the roller body 3 and faces away from the closest pendulum mass 4 or the pendulum mass 4 to be guided. In particular, the formed sheet-metal portion has an area curved by sheet-metal forming, with which a portion of the roller body can be brought into contact and over which the portion of the roller body may roll.
[0038]
[0039] In addition, it can be seen that each first roller track 6 has a smaller length/axially shorter and thus forms a smaller contact surface towards the roller body 3 than the second roller track 8.
[0040] Furthermore, the respective first and second roller track 6, 8 is case-hardened.
[0041] As can be seen in
[0042] In this context, for the sake of completeness, it should also be mentioned that in further embodiments, the pendulum mass 4 is alternatively or additionally implemented with such a sheet-metal portion 9. The pendulum mass 4 is then also formed completely from sheet-metal/sheet steel, e.g., a hot strip.
[0043] In other words, the disclosure includes using the sheet-metal surface as a roller track 6 (instead of the cutting edge 25). The sheet-metal surface essentially has qualities whereby the measures change as follows: There is no need for a narrow cutting clearance in the tool, since the quality of the cutting edge is no longer important. The metal sheets (14, 15, 4) may be formed from a hot strip. The sheet thickness can be selected to be thinner, since the track width is no longer dependent on the sheet thickness. There is no need to pre-carburize the sheets, as the increase in the rolling surface reduces the strength requirements.
[0044] The disclosure thus relates to the following points:
[0045] 1) A centrifugal pendulum 1 includes rollers 3 and formed from a sheet-metal carrier 2 and pendulum masses 4, wherein the track 6, 8 of the pendulum mass 4 or the carrier 2 includes the formed surface of the sheet metal.
[0046] 2) A centrifugal pendulum 1 includes rollers 3 and formed from a sheet-metal carrier 2 and pendulum masses 4, wherein the sheet-metal cut edge 25 has no contact with the roller 3 and is therefore not a functional surface.
[0047] 3) The centrifugal pendulum 1 according to point 1 or 2, wherein the tracks 6, 8 are formed from the bent sheet-metal part, which was originally in the region of the track.
[0048] 4) The centrifugal pendulum 1 according to point 3, wherein the tracks 6, 8 are bent at an angle of 90° ±10° to the rest of the part.
[0049] 5) The centrifugal pendulum 1 according to point 3, wherein the tracks 6, 8 are calibrated in an embossing tool sequence. As a result, the material in the region of the corner is displaced, the radius 18 is therefore less than half the material thickness 19.
[0050] 6) The centrifugal pendulum 1 according to point 4, wherein the rollers 3 have a conicity 20 adapted to the track projection angle. In this way, self-centering is achieved.
[0051] 7) The centrifugal pendulum 1 according to point 3, wherein the track 6, 8 has a larger area in the center than at the sides. As a result, the center area with the highest rolling load is protected against excessive pressure.
[0052] 8) The centrifugal pendulum 1 according to point 3, wherein the sum of the upper and lower axial extent of the track 6, 8 is smaller than the track opening (l.sub.1+l.sub.3 <l.sub.2 according to
[0053] 9) The centrifugal pendulum 1 according to point 3, where only the upper side of the track 6, 8 is bent. The roller 3 does not roll on the lower side and therefore does not need a curved track at this point
[0054] 10) The centrifugal pendulum 1 according to point 3, wherein the track 6, 8 is case-hardened.
TABLE-US-00001 REFERENCE NUMERALS 1 Centrifugal pendulum 2 Carrier 3 Roller body 4 Pendulum mass 5 First rolling region 6 First roller track 7 Second rolling region 8 Second roller track 9 Sheet-metal portion 10 Bearing region 11 Through hole 12 Outer side 13 Inner side 14 First flange element 15 Second flange element 16 Disk region 17 Transition 18 Radius 19 Material thickness 20 Support surface 21 Torque transmission device 22 Clutch disk 23 Hole 24 Rolling axis 25 Cut edge