SYNCHRONIZING RING
20210381558 · 2021-12-09
Inventors
Cpc classification
F16D23/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2300/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2023/0681
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16D23/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A synchronizing ring for a synchronizer of a transmission. The inside of the synchronizing ring being provided with a plurality of cams and corresponding recesses between the cams for receiving a plurality of axial protrusions of a further synchronizing ring. An inner radial surface of each cam is provided with a plurality of grooves for transportation of oil.
Claims
1. A synchronizing ring for a synchronizer of a transmission, the inside of the synchronizing ring being provided with a plurality of cams and corresponding recesses between the cams for receiving a plurality of axial protrusions of a further synchronizing ring, wherein an inner radial surface of each cam is provided with a plurality of grooves for transportation of oil.
2. A synchronizing ring according to claim 1, wherein each groove has a longitudinal extension direction in parallel with the longitudinal extension direction of the synchronizing ring.
3. A synchronizing ring according to claim 2, wherein the length of each groove is equal to the extension of the cam in the longitudinal extension direction of the synchronizing ring.
4. A synchronizing ring according to claim 1, wherein the synchronizing ring has a number of cams being a multiple of 3.
5. A synchronizing ring according to claim 1, wherein the synchronizing ring has a number of cams in the interval 3-9.
6. A synchronizing ring according to claim 1, wherein each cam has two main extension directions, one first main extension direction in the circumferential direction of the synchronizing ring and a second main extension direction in the radial direction of the synchronizing ring.
7. A synchronizing ring according to claim 1, wherein the total circumferential length of the cams is at least equal to the total circumferential length of the recesses between the cams.
8. A synchronizing ring according to claim 1, wherein each cam has 2-20 grooves, preferably 3-10 grooves and more preferably 4-8 grooves.
9. A synchronizing ring according to claim 1, wherein the synchronizing ring is a blocking ring.
10. A synchronizer for a vehicle transmission, the synchronizer comprising a synchronizing ring, a component and a further synchronizing ring, the inside of the synchronizing ring being provided with a plurality of cams and corresponding recesses between the cams for receiving a plurality of axial protrusions of the further synchronizing ring, wherein an inner radial surface of each cam is provided with a plurality of grooves for transportation of oil from a gap formed between an axial surface of each cam and the component.
11. A synchronizer according to claim 10, wherein each groove has a longitudinal extension direction in parallel with an axial direction of the synchronizer.
12. A synchronizer according to claim 11, wherein the length of each groove is equal to the extension of the cam in the axial direction of the synchronizer.
13. A synchronizer according to claim 10, wherein the synchronizing ring is an external ring arranged outside of the further synchronizing ring being an inner ring.
14. A synchronizer according to claim 10, wherein said component is a hub of the synchronizer.
15. A synchronizer according to claim 10, wherein the synchronizer is a multi-cone synchronizer and the synchronizing ring is a blocking ring of the synchronizer.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021] With reference to the appended drawings, below follows a more detailed description of embodiments of the invention cited as examples.
[0022] In the drawings:
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
DETAILED DESCRIPTION OF EXAMPLE EMBODIMENTS
[0030]
[0031] The synchronizer 2 comprises a synchronizing ring 11, a component 7 and a further synchronizing ring 12. The inside of the synchronizing ring 11 is provided with a plurality of cams 13 and corresponding recesses 14 between the cams 13 for receiving a plurality of axial protrusions 15 of the further synchronizing ring 12. The outside of the synchronizing ring 11 can be provided with teeth 16 for engagement with the sleeve 6.
[0032] An inner radial surface of each cam 13 is provided with a plurality of grooves 17 for transportation of oil from a gap 18 formed between an axial surface 19 of each cam 13 and the component 7. Each groove 17 forms a channel for transportation of oil. The component is here the hub 7 on which the sleeve 6 is arranged. The gap 18 is formed between the axial surface 19 of the cam 13 and an opposing axial surface 20 of the hub 7. The grooves 17 of the synchronizing ring 11 will be further described hereinafter with reference to further figures. The synchronizing ring 11 is an external ring arranged outside of the further synchronizing ring 12 being an inner ring.
[0033]
[0034] In
[0035] In the cut perspective view of the synchronizer 2 shown in
[0036] In
[0037]
[0038] Each cam 13 has suitably two main extension directions, one first main extension direction in the circumferential direction 27 of the synchronizing ring 11 and a second main extension direction in the radial direction 28 of the synchronizing ring 11. In addition, each cam 13 has a third extension direction or thickness in the longitudinal direction 29 or axial direction of the synchronizing ring. This direction is in parallel with the axial direction 8 of the synchronizer 2 when the synchronizing ring 11 is installed in the synchronizer 2.
[0039] Each groove 17 can have a longitudinal extension direction in parallel with the longitudinal extension direction 29 of the synchronizing ring 11. The length of each groove 17 is preferably equal to the extension of the cam 13 in the longitudinal extension direction 29 of the synchronizing ring 11. Hereby, each groove forms a channel extending from one side of the cam to another side of the cam.
[0040] Although the example embodiment of the synchronizing ring 11 illustrated in
[0041] For an increased circumferential length and/or radial extension of the cams 13, the need of the grooves 17 will increase. Often the total circumferential length of the cams 13 is at least equal to the total circumferential length of the recesses 14 between the cams 13 which means that the area defined by the axial surfaces 19 of the cams 13 where the cams 13 and the hub 7 overlap and form the gap 18 is not negligible.
[0042] Each cam 13 can have 2-20 grooves, preferably 3-10 grooves and more preferably 4-8 grooves. Of course, in addition to the number of grooves 17 also the size of the grooves, i.e. the cross-section dimensions, and the shape of the grooves, can be varied and adapted to the current application.
[0043] As also illustrated in the example embodiment shown in
[0044] The outside 30 of the synchronizing ring 11 is suitably provided with the teeth 16 for engagement with the sleeve 6.
[0045] It is to be understood that the present invention is not limited to the embodiments described above and illustrated in the drawings; rather, the skilled person will recognize that many changes and modifications may be made within the scope of the appended claims.