Hub, in particular for bicycles
A bicycle hub, including a hub axle, a hub shell, a threaded ring, a rotor, and a freewheel device, wherein the freewheel device comprises a hub-side toothed disk device and an interacting rotor-side toothed disk device, each including an end toothing for engagement with one another, and biased to an engagement position. The threaded ring includes an outer contour with an external thread, and a through hole with an inner contour, wherein the inner contour has a non-round inner contour, which couples, in a rotationally fixed driving manner, with a matching non-round outer coupling contour on the outer periphery of the hub-side toothed disk device. The threaded ring has a depression at the rotor end, so that the external thread on the threaded ring extends toward the rotor axially further than does the inner coupling contour, to widen the external thread of the threaded ring in the rotor direction.
1 . A hub for at least partially muscle-powered vehicles comprising: a hub axle; a hub shell; a threaded ring; a rotor; and a freewheel device;
wherein the freewheel device comprises a hub-side toothed disk device and a rotor-side toothed disk device interacting therewith, each comprising an end toothing for engagement with one another, and biased to an engagement position by means of at least one biasing device,
wherein the threaded ring has an outer contour with an external thread, and a central through hole with an inner contour, wherein the inner contour is configured with a non-round inner coupling contour, which couples, in a rotationally fixed manner in a driving direction, with a matching non-round outer coupling contour on the outer periphery of the hub-side toothed disk device; and
the threaded ring has a central depression at the rotor-side end, so that the external thread on the threaded ring extends in a direction to the rotor axially further outwardly than does the inner coupling contour, so as to widen the external thread of the threaded ring in the direction toward the rotor.
2 . The hub according to claim 1 , wherein the central depression has an axial depth of at least 5% of the axial width of the threaded ring.
3 . The hub according to claim 1 , wherein the axial depth of the central depression is between 5% and 25% of the axial width of the threaded ring.
4 . The hub according to claim 1 , wherein the axial depth of the central depression is between 0.5 mm and 3 mm.
5 . The hub according to claim 1 , wherein the central depression is at least one of a stepped configuration and a conical configuration.
6 . The hub according to claim 5 , wherein a cone angle of the conical depression to a plane transverse to the axis of symmetry of the hub is between 5° and 30°.
7 . The hub according to claim 1 , wherein the inner coupling contour comprises an inner radial toothing on the threaded ring, and wherein the outer coupling contour on the hub-side toothed disk device comprises an outer radial toothing.
8 . The hub according to claim 1 , wherein the hub shell is supported for rotation with at least two axially spaced apart hub bearings;
wherein at least one rotor-side hub bearing is disposed closer to the rotor and at least one outer hub bearing is further distant from the rotor;
and wherein the rotor is supported for rotation with at least two axially spaced apart rotor bearings, namely, one hub-side rotor bearing disposed closer to the hub shell and at least one outer rotor bearing further distant from the hub shell.
9 . The hub according to claim 1 , wherein the end toothing of the hub-side toothed disk device is axially oriented to the rotor,
and wherein the rotor-side toothed disk device is accommodated radially inwardly of the rotor, and by way of an outer radial toothing is coupled with the rotor with an inner radial toothing in the rotor, in a rotationally fixed manner in the driving direction, and wherein the end toothing of the rotor-side toothed disk device is axially oriented to the hub shell.
10 . The hub according to claim 9 , wherein at least the end toothing of the rotor-side toothed disk device is received radially inwardly of the hub shell.
11 . The hub according to claim 10 , wherein both the hub-side toothed disk device and the rotor-side toothed disk device can be transferred from an engagement position to a freewheel position, each against a biasing force of the at least one biasing device.
12 . The hub according to claim 1 , wherein a conical portion configured on the end face of the rotor, plunges contactless into the central depression on the threaded ring.
13 . The hub according to claim 12 , wherein the threaded ring has a support portion on an axially inner surface facing away from the rotor, in which the support portion bears against a correspondingly configured accommodation in the hub shell.
14 . The hub according to claim 1 , wherein the threaded ring is wider in an axial direction on a radially outer surface than on a radially inner surface.
15 . The hub according to claim 1 , wherein the external thread of the threaded ring extends axially outwardly beyond the hub-side toothed disk device and up to radially beyond the rotor-side toothed disk device, which it partially overlaps.
16 . The hub according to claim 1 , wherein the external thread of the threaded ring comprises at least two separately configured and continuous thread grooves, and wherein the internal thread in the hub shell comprises at least two separately configured and continuous thread grooves.
17 . The hub according to claim 1 , wherein the hub-side toothed disk device and the rotor-side toothed disk device comprise an engagement body, on which the end toothing is configured over a radial height and a radial toothing is configured over an axial length, wherein the axial length is larger than the radial height.
18 . The hub according to claim 1 , wherein the hub-side toothed disk device and the rotor-side toothed disk device are configured substantially the same, and wherein the at least one biasing device is assigned to each of the two toothed disk devices, which floatingly urge the toothed disk devices to one another.
19 . The hub according to claim 18 , wherein both of the biasing devices are configured substantially the same.
20 . A threaded ring for a hub for at least partially muscle-powered vehicles comprising a threaded ring body:
wherein the hub comprises a rotor;
wherein the threaded ring body is configured to be screwed to a rotor-side end of a hub shell of the hub, to receive in an interior of the threaded ring body a hub-side toothed disk device of a freewheel device;
wherein the threaded ring has an outer contour with an external thread, and comprises a central through hole with an inner contour, wherein the inner contour comprises a non-round inner coupling contour, which is configured to couple, in a rotationally fixed manner in a driving direction, with a matching non-round outer coupling contour on the outer periphery of the hub-side toothed disk device; and
the threaded ring body has a central depression at the rotor-side end, so that the external thread on the threaded ring body extends axially further outwardly in a direction toward the rotor than does the inner coupling contour, so as to widen the external thread of the threaded ring in the direction toward the rotor.