COUPLING HAVING A SHAFT AT LEAST PARTIALLY INSERTED INTO A HOLLOW SHAFT AND A RING PART SLIPPED ONTO THE HOLLOW SHAFT, AND PLANETARY TRANSMISSION
20210108682 · 2021-04-15
Assignee
Inventors
Cpc classification
F16D1/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D1/0847
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A coupling includes a shaft at least partially inserted into a hollow shaft and a ring part, in particular of a clamping ring, slipped onto the hollow shaft. The ring part is axially restricted by a collar provided on the shaft, in particular a radially projecting collar, and/or the ring part is resting against a collar, or the collar, of the shaft, in particular against a collar provided on the shaft, in particular a radially projecting collar. The hollow shaft has slots, in particular axial slots, which are set apart from the collar. The ring part has a chamfer, in particular on its inner side and/or at its ring opening and/or in particular in its axial end region facing the collar, so that the inner diameter of the ring part in the axial region covered by the chamfer is greater than the inner diameter in the particular axial region in which the ring part is in contact with the hollow shaft. The ring part has a radially uninterrupted threaded bore into which a screw part, in particular a set screw and/or a threaded pin, is screwed, which exerts pressure on the hollow shaft.
Claims
1-15. (canceled)
16. A coupling, comprising: a hollow shaft having a radially-projecting collar and slots set apart from the collar; a shaft at least partially extending into the hollow shaft; and a ring part provided on the hollow shaft and including a chamfer; wherein the ring part is axially restricted by and/or rests against the collar; wherein an inner diameter of the ring part in an axial region covered by the chamfer is greater than an inner diameter in an axial region in which the ring part is in contact with the hollow shaft; and wherein the ring part includes a radially uninterrupted threaded bore into which a screw part is screwed and exerts pressure on the hollow shaft.
17. The coupling according to claim 16, wherein the ring part is arranged as a clamping ring.
18. The coupling according to claim 16, wherein the slots are arranged as axial slots.
19. The coupling according to claim 16, wherein the chamfer is arranged on an inner side of the ring part, at a ring opening of the ring part, and/or at an axial end region facing the collar.
20. The coupling according to claim 16, wherein a radial width of the ring part is independent of a circumferential angle.
21. The coupling according to claim 16, wherein the screw part exerts pressure on a flattened region of the hollow shaft and/or a planar region on an outer side of the hollow shaft.
22. The coupling according to claim 16, wherein an axial region of the shaft that is inserted into the hollow shaft at least overlaps with the axial region covered by the ring part.
23. The coupling according to claim 16, wherein the hollow shaft has a slotted region that includes the slots.
24. The coupling according to claim 16, wherein the slots of the hollow shaft are set apart from one another at regular intervals circumferentially.
25. The coupling according to claim 16, wherein the slots extend radially through the hollow shaft, extend radially through a wall of the hollow shaft, and/or have an axial alignment.
26. The coupling according to claim 16, wherein the hollow shaft includes at least three slots.
27. The coupling according to claim 21, wherein the flattened region is arranged diametrically opposed to one of the slots and/or a center point of a circumferential angular range covered by the flattened region is arranged at a distance of 180° in a circumferential direction from a center point of a circumferential angular range covered by one of the slots.
28. The coupling according to claim 16, wherein the hollow shaft has a constant outer diameter in the axial region covered by the ring part.
29. The coupling according to claim 16, wherein the axial region covered by the chamfer touches and/or adjoins the axial region covered by the collar.
30. The coupling according to claim 16, wherein a wall thickness and/or a cross-section of the ring part is independent of circumferential angle.
31. The coupling according to claim 16, wherein the chamfer is arranged as a conical chamfer, an arched conical chamfer, and/or a stepped chamfer.
32. The coupling according to claim 16, wherein the ring part is set apart from the hollow shaft in the axial region covered by the chamfer and/or the axial region covered by the chamfer adjoins the slotted region of the hollow shaft so that a compression force of the ring part is imparted on the slotted region of the hollow shaft but not on the axial region covered by the chamfer.
33. A planetary transmission motor, comprising: a hollow input shaft having a radially-projecting collar and slots set apart from the collar; an electric motor having a rotor shaft at least partially extending into the hollow input shaft; a coupling, the hollow input shaft and the rotor shaft being connected by the coupling, the coupling including a ring part provided on the hollow input shaft, the ring part including a chamfer; wherein the ring part is axially restricted by and/or rests against the collar; wherein an inner diameter of the ring part in an axial region covered by the chamfer is greater than an inner diameter in an axial region in which the ring part is in contact with the hollow input shaft; and wherein the ring part includes a radially uninterrupted threaded bore into which a screw part is screwed and exerts pressure on the hollow input shaft.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
DETAILED DESCRIPTION
[0032] As illustrated in
[0033] A screw part 2 is screwed into a radially uninterrupted threaded bore of ring part 1 and exerts pressure on a flattened region 42 provided on hollow shaft 40. Flattened region 42 has a tangential orientation in this example.
[0034] Thus, hollow shaft 40 is pushed away from the threaded bore when screw part 2 is screwed into the threaded bore. In other words, hollow shaft 40 is pressed against ring part 1 in regions that are set apart from flattened region 42 in the circumferential direction. This makes it possible to shrink hollow shaft 40 onto the shaft inserted into hollow shaft 40.
[0035] At the outer circumference of hollow shaft 40, a collar 41 is premolded on hollow shaft 40 in an axial region. As a result, this collar 41, in particular a flange collar, is a radially projecting collar.
[0036] Ring part 1 rests against collar 41 and thus is axially restricted with respect to collar 41.
[0037] Ring part 1 is slipped onto hollow shaft 40 in the particular axial region that extends from collar 41 to the first axial end region.
[0038] Hollow shaft 40 has axially oriented slots that radially extend through the wall. The slots are set apart from one another at regular intervals in the circumferential direction. In
[0039] The slots extend from the first axial end region of hollow shaft 40 to an axial position that has a non-vanishing distance from collar 41.
[0040] When screw part 2 is screwed into the threaded bore, then hollow shaft 40 is pushed away from the threaded bore of ring part 1, as described above. In other words, hollow shaft 40 is pressed against the inner wall of the ring part in the circumferential angular regions that are set apart in the circumferential direction. As a result, the three regions situated between the slots of hollow shaft 40 in the circumferential direction are radially compressed, i.e. pressed radially inward. Stated another way, hollow shaft 40 radially contracts and thus exerts pressure on the shaft which is inserted into hollow shaft 40.
[0041] Since the axially extending slots in hollow shaft 40 are set apart from the collar, hollow shaft 40 is deformed more heavily in the axial region covered by the slots than in the axial region situated between collar 41 and the axial region covered by the slots.
[0042] Ring part 1 has a conical chamfer 3, which is situated at the inner edge of ring part 1 facing collar 41 and hollow shaft 40. As a result, the shrink-fit effect in the axial region covered by the slots of hollow shaft 40 is undisturbed. This is so because ring part 1 does not touch hollow shaft 40 in the axial region between collar 41 and the axial region covered by the slots.
[0043] A free space between hollow shaft 40 and ring part 1 is therefore created with the aid of chamfer 3. When ring part 1 is shrunk onto hollow shaft 40, the pressure is therefore applied to the slotted axial region of hollow shaft 40 but not to the region without slots that particularly adjoins collar 41.
[0044] Ring part 1 has no balance bore situated opposite screw part 2.
[0045] As illustrated in
[0046] As illustrated in
LIST OF REFERENCE NUMERALS
[0047] 1 ring part [0048] 2 screw part [0049] 3 conical chamfer [0050] 40 hollow shaft [0051] 41 collar, in particular flange collar [0052] 42 flattened region [0053] 80 arched conical chamfer [0054] 100 stepped chamfer