REAR WHEEL AXLE, AS WELL AS BICYCLE FRAME AND REAR WHEEL FOR A BICYCLE
20250353576 · 2025-11-20
Inventors
Cpc classification
B62M25/08
PERFORMING OPERATIONS; TRANSPORTING
B62M9/10
PERFORMING OPERATIONS; TRANSPORTING
B62M1/36
PERFORMING OPERATIONS; TRANSPORTING
B62M11/16
PERFORMING OPERATIONS; TRANSPORTING
B62M9/122
PERFORMING OPERATIONS; TRANSPORTING
International classification
B62M9/122
PERFORMING OPERATIONS; TRANSPORTING
B62J45/00
PERFORMING OPERATIONS; TRANSPORTING
B62M1/36
PERFORMING OPERATIONS; TRANSPORTING
B62M9/10
PERFORMING OPERATIONS; TRANSPORTING
B62M11/16
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A bicycle includes a transmission having two switchable drives between a driver body on which rear sprockets are positioned and a wheel hub of a rear wheel. The bicycle has actuation elements for switching between drives and operating elements for operating the actuation elements. The bicycle includes only a single front sprocket. The actuation elements are embodied in an electrical version and the operating elements are electrically coupled to the actuation elements. By advantageously selecting the drives of the driver between the cassette housing and wheel hub, a front derailleur may be omitted. The driver allows operation with only little energy, since the chain need not be shifted. consequently, the actuation elements require little energy for changing the drive between the crank axle and the wheel hub of the bicycle, so that it is pre-eminently suitable for these actuation elements and their operation to be executed as an electrical version.
Claims
1. An axle shaft comprising: an elongate body configured for insertion into a hollow bicycle wheel axle of a bicycle; for releasably connecting the wheel axle to a fork of the bicycle, and a storage element for storing electrical energy provided within the elongate body.
2. The axle shaft of claim 1, wherein the storage element is rechargeable.
3. The axle shaft of claim 1, further comprising a charger connected to the storage element for charging the storage element.
4. The axle shaft of claim 1, wherein the storage element comprises a battery.
5. The axle shaft of claim 1, further comprising electrical conductors having contact point at their ends, said contact point being accessible from outside the axle shaft.
6. A bicycle rear axle assembly, including: a hollow wheel axle; an axle shaft inserted in the hollow wheel axle for releasably connecting the wheel axle to a fork of the bicycle; wherein the axle shaft includes a storage element for storing electrical energy.
7. The bicycle rear axle assembly of claim 6, wherein the axle shaft comprises an elongate body inserted into the hollow wheel axle, wherein the storage element is included in the elongate body.
8. The bicycle rear axle assembly of claim 6, further comprising a generator or current generating means, configured for converting motion energy to electrical current, connected to the storage element for charging the storage element.
9. The bicycle rear axle assembly of claim 8, further comprising a charger connected to the generator or current generating means and to the storage element for charging the storage element.
10. The bicycle rear axle assembly of claim 6, further comprising electrical conductors having contact point at their ends, said contact point being accessible from outside the axle shaft.
11. The bicycle rear axle assembly of claim 6, further comprising: a wheel hub; a driver body; a transmission including at least two drives between the driver body and the wheel hub, said transmission provided with an electric actuator of the transmission for switching between the at least two drives, the wheel hub and the transmission being positioned on the hollow wheel axle.
12. A bicycle comprising: a hollow wheel axle; an axle shaft inserted in the hollow wheel axle for releasably connecting the wheel axle to a fork of the bicycle; wherein the axle shaft includes a storage element for storing electrical energy.
13. The bicycle of claim 12, wherein the axle shaft comprises an elongate body inserted into the hollow wheel axle, wherein the storage element is included in the elongate body.
14. The bicycle of claim 12, further comprising a generator or current generating means, configured for converting motion energy to electrical current, connected to the storage element for charging the storage element.
15. The bicycle of claim 14, further comprising a charger connected to the generator or current generating means and to the storage element for charging the storage element.
16. The bicycle of claim 12, further comprising: a frame with a rear fork, wherein the axle shaft is inserted in the hollow bicycle wheel axle and releasably connects the wheel axle to the rear fork; a wheel hub; a rear sprocket for driving a driver body in rotation; the driver body being connected to the wheel hub via a transmission, for driving the wheel hub in rotation; the transmission including at least two drives between the driver body and the wheel hub, said transmission provided with an electric actuator of the transmission for switching between the at least two drives, the wheel hub and the transmission being positioned on the hollow wheel axle.
17. The bicycle of claim 16, further comprising operating means wiredly or wirelessly connected to the actuator of the transmission, for operating the actuator.
18. The bicycle claim 16, wherein the hollow wheel axle or axle shaft further comprises electrical conductors having contact point at their ends, said contact point being accessible from outside the axle shaft.
19. The bicycle of claim 16, further comprising an electrically actuatable rear derailleur.
20. The bicycle of claim 19, comprising a control unit connected to the operating means and the actuator, configured for controlling rear derailleur and/or the transmission based on an entered desired drive between a crank axle and the wheel hub.
Description
BRIEF DESCRIPTION OF THE DRAWING FIGURE
[0040] The invention will be further described hereinbelow in more detail with reference to an example of embodiment represented in the drawings of a rear wheel axle of a bicycle comprising a wheel hub and a driver according to the invention, in which drawings:
[0041]
[0042]
[0043]
[0044]
[0045]
[0046]
[0047]
[0048]
[0049]
[0050]
DETAILED DESCRIPTION OF THE DRAWING FIGURES
[0051]
[0052] The bicycle 301 comprises no more than a single front sprocket 319 and the actuation means 81 of the driver 31 are arranged in an electrical version and the operating means 325 are electrically coupled to the actuation means. The bicycle 301 comprises an electrically actuated rear derailleur 327 and the operating means 325 are furthermore electrically coupled to the actuation means 81 of the rear derailleur.
[0053] The operating means 325 are coupled in a wireless manner to the actuation means 81 of the driver 31 and/or the rear derailleur 327. The bicycle further includes a control unit 329 for controlling the rear derailleur 327 and/or the driver 31 based on an entered desired drive between crank axle 317 and wheel hub 201. The operating means 325 comprise an operating button 331 which is fitted to the handlebars 333 of the bicycle, as well as a display 335 or indicator indicating the gear the driver is in.
[0054]
[0055] The driver 31 comprises two switchable drives between the driver body 33 and the wheel hub 201, as a result of which only a single sprocket on the crank axle will suffice, and a front derailleur of a bicycle may thus be omitted. The driver 31 is coupled via splines 41 to the wheel hub 201. These splines comprise internal splines 207 present in the wheel hub and external splines 43 on an output coupling bush 45 of the driver. The driver 31 together with the hollow wheel axle 3 to which it is attached forms a unit which can be inserted as a whole into the wheel hub 201 and together with the wheel hub (and the rest of the rear wheel the wheel hub forms part of) can be pushed in between drop outs 101 and 103 of a rear fork of a bicycle frame and also taken out.
[0056] The driver 31 comprises a planetary gear set having three rotational members, of which a first rotational member is formed by an annulus gear 47, a second rotational member is formed by a planet gear support 49 to which a plurality of planet gears 51 are bearing-mounted and which is connected to coupling means formed by the coupling bush 45 that has external splines 43, and a third rotational member is formed by a sun gear 53 which is connected to the wheel axle 3.
[0057] The first rotational member 47 is connected to the second rotational member 51 via a first switchable coupling 71 and the third rotational member 53 is connected to a second switchable coupling 75 via which the third rotational member can be connected to the wheel axle 3. The driver 31 further includes a switching mechanism for switching the switchable couplings 71 and 75. The switching mechanism is located in the space 81 within the driver body 33 and has a sliding ring 79 which by axial displacement can operate the two couplings. The switching mechanism further includes an electrical actuator for displacing the sliding ring 79. This actuator has a stator which is mounted to the wheel axle 3.
[0058] The sliding ring 79 and the actuator are present in the driver body 33 on the planetary gear set side turned away from the coupling means 41. The actuator is provided with connecting pins which protrude into the wheel axle 3 through one or more openings and are isolated from the wheel axle.
[0059] The axle shaft is provided with electrical conductors 401 which have contact points at their ends, of which the contact points 403 at an end seen in axial direction of the wheel axle are present between the drop outs 101 and 103 of the rear fork 307 and make contact with contact points of further conductors 405 connected to the actuation means and the contact points 407 are present at the other end of the electrical conductors of the axle shaft seen in axial direction of the wheel axle outside the drop outs 101 and 103 and make contact with further contact points 409 of further electrical conductors 411 connected to the bicycle frame and which are coupled to the operating means.
[0060]
[0061]
[0062] Between the coupling means (coupling bush 45) and the driver body 33 is located a first sealing which is formed by a left hand sealed driver body bearing 55 (first sealed ball bearing) whose outer peripheral side is connected to the driver body and whose inner peripheral side is connected to the coupling means (coupling bush 45). Between the coupling means (coupling bush 45) and the wheel axle 3 is located a second sealing which is formed by a support bearing 57 (scaled needle bearing). The scaling ring 59 of the support bearing is connected with its outer peripheral side to the coupling means (coupling bush 45). Between the driver body 33 and the wheel axle 3 is located a third scaling which is formed by a right-hand sealed driver body 61 (second sealed ball bearing) whose outer peripheral side is connected to the driver body. The outer peripheral side of the support bearing 57 is connected to the coupling means (coupling bush 45) and is present between the second and third sealing. The rollers 61 of the support bearing run over a roller face 63 present on the wheel axle 3.
[0063] The coupling means which are formed by the coupling bush 45 provided with external splines cooperate with further coupling means which are formed by the internal splines 207 present in the wheel hub 201. At the other end the coupling bush 45 is provided with a flange 65 which forms part of or is connected to the second rotational member. The left-hand driver body 55 is present here between the external splines 43 and the flange 65 on the coupling bush 45. The wheel hub 201 is bearing-mounted on the wheel axle 3 near a first end through a wheel hub bearing (not shown in the Figures) and at a second end is provided with the further coupling means which are formed by the internal splines 207.
[0064]
[0065] The pin 7 with the bush 11 freely rotating around it and with a further pin 9 connected to the pin 7 via a threaded connection jointly form the axle shaft 5 (see
[0066] The further pin 9 has at its threaded end 21 a central recess 23 whose inside wall is provided with two electrical contacts which are present side by side in axial direction. The right-hand drop out 103 is provided with a cap 117 (see
[0067]
[0068]
[0069] Albeit the invention has been elucidated in the foregoing with reference to the drawings, it should be set out that the invention is not by any manner or means restricted to the embodiments shown in the drawing figures. The invention also extends to any embodiments deviating from the embodiments shown in the drawing figures within the scope defined by the claims.