Configurable cycle vehicle and method of conversion of a cycle vehicle between first and second riding conditions
10513304 ยท 2019-12-24
Assignee
Inventors
Cpc classification
B62M5/00
PERFORMING OPERATIONS; TRANSPORTING
B62M1/36
PERFORMING OPERATIONS; TRANSPORTING
B62M17/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B62M1/36
PERFORMING OPERATIONS; TRANSPORTING
B62M5/00
PERFORMING OPERATIONS; TRANSPORTING
B62M17/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A configurable cycle vehicle (10) has an adjustable frame (12) which is formed from a plurality of relatively configurable frame members (26, 28, 30, 32, 34), and which can be separately arranged in a first, upright riding condition, or alternatively in a second, recumbent riding condition. A method of conversion of a cycle vehicle between first and second riding conditions is also provided.
Claims
1. A configurable cycle vehicle comprising: an adjustable frame; at least two wheels engaged with the frame; a seat element engaged with the frame; handlebars engaged with the frame; a propulsion mechanism for providing motive force to the wheels, the propulsion mechanism having pedals configured to provide drive to at least one of the wheels; a drive shaft which couples the pedals to the wheels; and an electric motor; wherein the adjustable frame includes at least a supporting frame member and a crossbar which are adapted to adjustably reposition to one another to provide first and second different riding conditions, the second riding condition being recumbent relative to the first riding condition, and the drive shaft is adapted to engage in the first riding condition and disengage in the second riding condition, the electric motor providing the motive force in the second riding condition.
2. A configurable cycle vehicle as claimed in claim 1, further comprising a regenerative energy generator to recharge a battery of the electric motor as the pedals are rotated.
3. A configurable cycle vehicle as claimed in claim 1, wherein the crossbar is adapted to pivotably engage with the supporting frame member.
4. A configurable cycle vehicle as claimed in claim 3, further comprising a pivotable connection frame member between the supporting frame member and the crossbar to effect pivotable engagement therebetween.
5. A configurable cycle vehicle as claimed in claim 3, further comprising a guiding linkage connected to the supporting frame member and crossbar to guide the pivoting engagement of the connection frame member.
6. A configurable cycle vehicle as claimed in claim 1, wherein all relative movements of the adjustable frame when converting between the first and second conditions occur synchronously.
7. A configurable cycle vehicle as claimed in claim 1, wherein the adjustable frame includes at least one moveable frame member which is adapted to move relative to at least one of the supporting frame member and the crossbar.
8. A configurable cycle vehicle as claimed in claim 7, wherein one said moveable frame member is provided as a handlebar frame member, the handlebar frame member being engaged with the handlebars and one of the wheels, the handlebar frame member being adapted to pivot at or adjacent to the said wheel relative to the supporting frame member, wherein, in the second riding condition, the handlebar frame member is pivoted to a greater angle from the vertical than in the first riding condition and/or the seat element is lower than in the first riding condition.
9. A configurable cycle vehicle as claimed in claim 1, wherein the seat element is engaged with the crossbar to move relative to the supporting frame member.
10. A configurable cycle vehicle as claimed in claim 1, wherein the adjustable frame is at least in part adapted to telescopically extend or retract.
11. A configurable cycle vehicle as claimed in claim 10, wherein extension or retraction of the adjustable frame effects the conversion between the first and second riding conditions.
12. A configurable cycle vehicle as claimed in claim 1, further comprising a locking member to lock the configuration of the configurable cycle vehicle into one or other of the first or second riding conditions.
13. A configurable cycle vehicle as claimed in claim 1, wherein a horizontal position of the seat element relative to the handlebars can be adjusted.
14. A configurable cycle vehicle as claimed in claim 1, further comprising a slotted runner at or adjacent to the seat element to prevent collision of the seat element with the adjustable frame during conversion of the configurable cycle vehicle between the first and second riding conditions.
15. A configurable cycle vehicle as claimed in claim 1, wherein the configurable cycle vehicle is a tricycle or a bicycle.
16. A method of conversion of a cycle vehicle between first and second riding conditions, the method comprising the steps of providing a configurable cycle vehicle as claimed in claim 1 in one of the said first or second riding condition; and configuring the adjustable frame such that at least the seat element and handlebars are positioned in a more or less recumbent position in the other of the said first or second riding condition.
17. A method as claimed in claim 16, wherein at least part of the adjustable frame is adapted to telescopically extend and/or retract between the first and second riding conditions.
18. A method as claimed in claim 16, wherein the adjustable frame includes a handlebar frame member, and wherein an angle of the handlebar frame member relative to at least one of the wheels is different between the first and second riding conditions.
Description
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(9) Referring firstly to
(10) The tricycle 10 shown comprises an adjustable frame 12 which is formed from a plurality of relatively moveable frame members, a seat element 14 attached to the frame 12, handlebars 16 also attached to the frame 12, one front wheel 18 and two rear wheels 20, and a propulsion means or mechanism, which here includes a set of pedals 22 and an electric motor 24, respectively positioned at the centre and rear of the tricycle 10 in the present embodiment, though one or other of these could be dispensed with. For the avoidance of doubt, the adjustability of the frame 12 refers to adjustment beyond the standard vertical adjustability normally associated with seat or handlebar height of a bicycle.
(11) The frame members include a supporting frame member 26, which might be considered to be the equivalent of the down tube of a traditional bicycle frame, a crossbar 28 which is in pivotable engagement with the supporting frame member 26 via a connection frame member 30 which respectively correspond to the top tube and seat tube of a traditional bicycle frame. Also connecting the supporting frame member 26 and crossbar 28, adjacent to the connection frame member 30, is provided a guiding linkage 32. There is also provided a handlebar frame member 34 which is engaged with both the supporting frame member 26 and the crossbar 28 spaced apart from the connection frame member 30.
(12) The supporting frame member 26 is preferably formed as an elongate tube, as illustrated, which is bent at a central point. The pedals 22 are then preferably mounted to the supporting frame member 26. An elongate slot 36 is formed in the tube extending in a forwards direction from the central point, with a rear wheel axle mount 38 extending rearwardly therefrom.
(13) The guiding linkage 32 is pivotably connected to the supporting frame member 26 at or adjacent to the pedals 22, whilst the connection frame member 30 is connected adjacent to the rear wheel axle mount 38, thereby forming a parallelogram or parallelogram-like linkage. Between these points of connection, there is a telescopically extendible and retractable portion 40 of the supporting frame member 26, as seen in
(14) To continue the analogy with a standard bicycle, the forward end of the supporting frame member 26, crossbar 28 and guiding linkage 32 here form what might be considered to be the front triangle of the tricycle 10, even though the actual shape is not triangular. The guiding linkage 32, connection frame member 30 and rearward end of the supporting frame member 26 can be considered to form what would otherwise be the rear triangle.
(15) The crossbar 28 is also preferably formed as an elongate tube, also preferably including a bend or kink towards its middle. In this embodiment, the guiding linkage 32 and connection frame member 30 are pivotably connected to the crossbar 28 at a single pivot point 42 so as to pivot in tandem; other linkage arrangements could feasibly be considered.
(16) The connection frame member 30 is preferably provided as a straight tube interconnecting the supporting frame member 26 and the crossbar 28, whereas the guiding linkage 32 is preferably kinked. This arrangement allows for the necessary range of motion to effect the change between the first and second conditions of the cycle vehicle 10; however, it will be appreciated that this is only one solution to arrive at the desired mechanism, and other shapes of connection frame member 30 and guiding linkage 32 are equally plausible.
(17) At a rearmost end of the crossbar 28 is provided a bracket 44, via which can be attached the seat element 14, preferably via an adjustable seat tube 46 attached to the bottom of a squab 48 or saddle of the seat element 14. At the opposing forwardmost end of the crossbar 28 is provided a fork 50 having two tines 52, each having a groove 54 running along an inwardly-facing surface thereof; this fork 50 enables coupling to the handlebar frame member 34.
(18) The handlebar frame member 34 is formed preferably as an elongate tube which at an uppermost end extends into the handlebars 16 and at the opposing lowermost end extends into a wheel fork 56 to which the front wheel 18 is attachable. This permits a user to steer the tricycle 10 via the handlebar frame member 34.
(19) At or adjacent to a mid-point of the tube of the handlebar frame member 34 is provided two opposed spigots 58, seen best in
(20) The handlebars 16 as shown are formed as traditional cowhorn-style bars, and include the brakes 60 for the tricycle 10. Many different varieties of handlebars are available, however. Additional functionality may be included associated with the handlebars 16, for instance, a control mechanism 62 for the electric motor 24.
(21) At the rear of the tricycle 10, mounted to the rear wheel axle mount 38 of the supporting frame member 26 is provided an axle 64 which couples together the two rear wheels 20. As illustrated, there may also be provided a luggage rack 66 which spans the rear wheel axle mount 38, to thereby allow a rider to stow their possessions whilst in transit.
(22) Also installed at the rear of the tricycle 10, and coupled with the rear wheel axle 64 is provided the electric motor 24, if required, allowing the electric motor 24 to directly drive the rear wheels 20 via the rear wheel axle 64. The rear wheel axle 64 is also coupled, via a drive shaft 68 to the pedals 22, shown in
(23) The seat element 14 is mounted to the crossbar 28 and may be formed having a squab 48 and backrest 70 so as to provide the user with adequate back support, particularly in the recumbent position. The seat element 14 as shown has a pivotable backrest 70 which can be readily stowed into the squab 48, allowing for simple conversion of the seat element 14 into a typical saddle.
(24) The seat tube 46, which is connected to the seat element 14, can be vertically adjusted within the bracket 44. To avoid collision with the frame 12 in use, the seat tube 46 is preferably provided having a slotted runner 72 formed therein, to allow obstructive frame members to pass through the seat tube 46. Furthermore, the seat element 14 may also be horizontally adjustable relative to the handlebars 16, by providing, for instance, an actuatable mounting plate for the seat element 14.
(25) If a user wishes to ride the tricycle 10 in a standard, upright condition, hereafter referred to as the first condition, then they are able to do so by retracting the telescopic portion 40 of the supporting frame member 26 fully so that the rear wheel axle mount 38 is in as forwardmost a position as possible. This will draw the connection frame member 30 so as to be positioned in close proximity with the guiding linkage 32, such that the connection frame member 30 is vertical or substantially so, as illustrated in
(26) This motion of the crossbar 28 urges the handlebar frame member 34 into a condition which is vertical or substantially so, as can be seen in
(27) In this first configuration, the drive shaft 68 can be in engagement with the pedals 22, and therefore a rider can sit on the seat element 14 and pedal to produce the necessary motive force to ride the tricycle 10. This arrangement can be seen in
(28) However, if the rider wishes to ride in a more recumbent configuration, hereafter referred to as the second condition, then they can adjust the supporting frame member 26 such that the telescopic portion 40 is extended. As shown in
(29) The lowering of the crossbar 28 also causes the seat element 14 to be lowered, and, as can be seen in
(30) The lowering of the whole crossbar 28 also forces the handlebar frame member 34 to rotate about the wheel fork 56 at the front wheel 18, with the connection between the spigots 58 and the tines 52 of the fork 50 of the crossbar 28 forcing the upper portion of the handlebar frame member 34 downwards. This manifests as a rotation of the handlebar frame member 34 so as to be angled substantially away from the vertical, as illustrated in
(31) This second condition therefore results in a relatively low seating position for the rider, as the seat element 14 is substantially lowered, and the handlebars 16 are rotated into position, preferably in one synchronous motion, so as to be in the correct position for riding the tricycle 10. It will be appreciated that this lower seating position is more recumbent than that of the first, upright riding condition, even if this is not necessarily as reclined as in a traditional recumbent bicycle.
(32) Additionally, the extension of the telescopic portion 40 of the supporting frame member 26 can be arranged so as to cause dislocation of the drive shaft 68 of the tricycle 10, disengaging control of the tricycle 10 via the pedals 22 and ensuring that, in the second condition, the motive force of the tricycle 10 is provided solely by the electric motor 24. This can be seen in
(33) Ideally, the adjustment of the frame members of the frame 12 should be relatively adjustable to one another so as to configure synchronously, in order to make reconfiguration of the tricycle 10 straightforward for the rider. It will be appreciated, however, that the reconfiguration of the frame 12 can be performed sequentially.
(34) The pedals 22 may also be linked to a battery of the electric motor 24, such that, when the user pedals the tricycle, typically in the first condition, then the pedalling may also generate sufficient electrical power to regeneratively charge of the battery, by providing a regenerative energy generation means or mechanism. In a similar manner, regenerative braking could also be applied to recharge any onboard battery.
(35) It may be possible to provide a dedicated locking means or mechanism which locks the configurable cycle vehicle in one or other of the first or second conditions, such as a latch, ratchet, both or keyed system.
(36) It is therefore possible to provide a configurable cycle vehicle which has an adjustable frame which is formed from a plurality of relatively configurable frame members, and which can be separately arranged in a first, upright riding condition, or alternatively in a second, recumbent riding condition.
(37) The words comprises/comprising and the words having/including when used herein with reference to the present invention are used to specify the presence of stated features, integers, steps or components, but do not preclude the presence or addition of one or more other features, integers, steps, components or groups thereof.
(38) It is appreciated that certain features of the invention, which are, for clarity, described in the context of separate embodiments, may also be provided in combination in a single embodiment. Conversely, various features of the invention which are, for brevity, described in the context of a single embodiment, may also be provided separately or in any suitable sub-combination.
(39) The embodiments described above are provided by way of examples only, and various other modifications will be apparent to persons skilled in the field without departing from the scope of the invention herein described and defined.