BICYCLE SEAT SUSPENSION ASSEMBLY AND CORRESPONDING BICYCLE SEAT
20210031852 ยท 2021-02-04
Assignee
Inventors
Cpc classification
F16F9/0236
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F9/3405
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B62J1/06
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A bicycle seat suspension assembly includes a gas spring, a seat holder and a device for attachment to seat post. The gas spring is a compression gas spring with dampening, which has a working cylinder with a working cylinder bottom and a working cylinder lid, and a piston arranged in it for sliding. A piston rod sealingly goes through the working cylinder lid. A transfer hole for transfer of working gas between the working cylinder and reservoir created inside the piston rod is arranged in the piston. The transfer hole is provided with a throttle element, which is axially movably placed on a control rod, going sealingly through the lid of the reservoir. The seat holder is attached to the gas spring, not rotably in relation to the working cylinder, and it is fixedly connected with an end of the piston rod, which extends into the working cylinder with its other end bearing the piston. The device for attachment to the seat post is arranged at the closed end forming the working cylinder bottom.
Claims
1. A bicycle seat suspension assembly, comprising a gas spring, a seat holder and a device for attachment to a seat post, wherein the gas spring is a compression gas spring with dampening, the gas spring having a working cylinder with a working cylinder bottom and a working cylinder lid, and a piston arranged therein for sliding, wherein a piston rod sealingly goes through the working cylinder lid, wherein a transfer hole for transfer of working gas between the working cylinder and a reservoir created inside the piston rod is arranged in the piston, wherein the transfer hole is provided with a throttle element, the throttle element being axially movably placed on a control rod, going sealingly through the lid of the reservoir, wherein the seat holder is attached to the gas spring, not rotably in relation to the working cylinder, and the seat holder is fixedly connected with an end of the piston rod, the piston rod extending into the working cylinder with another end of the piston rod bearing the piston, and wherein the device for attachment to the seat post is arranged at a closed end forming the working cylinder bottom.
2. The bicycle seat suspension assembly according to claim 1, wherein the seat holder is fixedly connected to a shack, which is fixedly connected with the lid of the reservoir of the piston rod, wherein the shack is put on the working cylinder and fits into an outer profile of the working cylinder for allowing linear axial movement with the piston rod relative to the working cylinder and at the same time preventing any rotational movement of the shack relative to the working cylinder.
3. The bicycle seat suspension assembly according to claim 1, wherein the throttle element is placed on the control rod axially movably between an upper backstop and lower backstop.
4. The bicycle seat suspension assembly according to claim 1, wherein the device for attachment to the seat post is formed as a convex shape corresponding to the seat post cradle shape, in which there is at least one threaded bore for fixing to the seat post cradle.
5. The bicycle seat suspension assembly according to claim 1, wherein a valve for refilling the working gas pressure is arranged at the closed end forming the working cylinder bottom.
6. The bicycle seat suspension assembly according to claim 5, wherein the working gas is air.
7. The bicycle seat suspension assembly according to claim 1, wherein an adjustment lever is arranged at the end of the control rod protruding out of the lid of the reservoir.
8. A bicycle seat with suspension for shock absorbing, comprising the bicycle seat suspension assembly according to claim 3, wherein runners of the seat are fastened to the seat holder using feet drawn tight by screws, and a convex shape corresponding to the seat post cradle shape is attached to the seat post cradle using a screw screwed into at least one threaded bore.
9. The bicycle seat according to claim 8, wherein the adjustment lever of the bicycle seat suspension assembly is manually accessible and adjustable using fingers, and the valve is configured and placed for filling using an inflation pump.
10. The bicycle seat according to claim 8, wherein at least one third of the length of the seat suspension assembly is hidden from the side view in the space between the seat runners and the seat.
11. The bicycle seat according to claim 8, wherein the extension of the gas spring is at least 25 mm.
12. The bicycle seat suspension assembly according to claim 2, wherein the throttle element is placed on the control rod axially movably between an upper backstop and lower backstop.
13. The bicycle seat suspension assembly according to claim 2, wherein the device for attachment to the seat post is formed as a convex shape corresponding to the seat post cradle shape, in which there is at least one threaded bore for fixing to the seat post cradle.
14. The bicycle seat suspension assembly according to claim 3, wherein the device for attachment to the seat post is formed as a convex shape corresponding to the seat post cradle shape, in which there is at least one threaded bore for fixing to the seat post cradle.
15. The bicycle seat suspension assembly according to claim 2, wherein a valve for refilling the working gas pressure is arranged at the closed end forming the working cylinder bottom.
16. The bicycle seat suspension assembly according to claim 3, wherein a valve for refilling the working gas pressure is arranged at the closed end forming the working cylinder bottom.
17. The bicycle seat suspension assembly according to claim 4, wherein a valve for refilling the working gas pressure is arranged at the closed end forming the working cylinder bottom.
18. The bicycle seat suspension assembly according to claim 2, wherein an adjustment lever is arranged at the end of the control rod protruding out of the lid of the reservoir.
19. The bicycle seat suspension assembly according to claim 3, wherein an adjustment lever is arranged at the end of the control rod protruding out of the lid of the reservoir.
20. The bicycle seat suspension assembly according to claim 4, wherein an adjustment lever is arranged at the end of the control rod protruding out of the lid of the reservoir.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0012] The object of the invention will be described below, based on a specific exemplary embodiment shown on the drawings, where:
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
EXAMPLE EMBODIMENT OF THE INVENTION
[0020] A specific example embodiment of this invention will be now described. But it will be obvious to any person skilled in the art, that various specific elements could be embodied differently, within the usual engineering skills of an average person skilled in the art. This specific example does not limit the scope of protection, which is delimited by the attached claims.
[0021] Specific example embodiment of the assembly according to this invention, in section in its longitudinal axis (i.e. longitudinal axis of the pneumatic spring) in a plane perpendicular to the plane, in which the direction of ride of the bicycle it is installed on lies, is illustrated on
[0022] This assembly comprises gas spring, seat holder 7 and device for attachment to the seat post.
[0023] The gas spring is a compression spring with dampening, which consists of the working cylinder 3 with a bottom 61 of the working cylinder and lid 6 of the working cylinder, wherein piston 4 is arranged for sliding in the working cylinder 3. Piston rod 5 goes sealingly through the lid 6 of the working cylinder. Transfer hole 41 for transferring working gas between the working cylinder 3 and reservoir 51 created inside the piston rod 5 is arranged in the piston 4. This transfer hole 41 is equipped with throttle element 14, which is axially movably placed on a control rod 13, going through the lid 8 of the reservoir 51 of the piston rod 5 sealingly (e.g. using an O-ring). A control lever 9 (or other control element) for adjusting the characteristics of springing and dampening, as will be described herein below in connection to
[0024] Seat holder 7 is connected to the gas spring without the possibility to rotate against the working cylinder 3, and it is fixedly connected to the end of the piston rod 5, which extends into the working cylinder 3 by its second end bearing the piston 4. In a specific example embodiment, the seat holder 7 is fixedly connected to the shack 71, i.e. it is placed on it and connected to it in such a way that it cannot move relative to it neither axially, nor rotationally, wherein this shack 71 is fixedly connected to the lid 8 of the reservoir 51 of the piston rod 5, wherein this shack 71 is placed on the working cylinder 3 and fits into its outer profile for enabling linear axial movement together with the piston rod 5 relative to the working cylinder 3, and at the same time for preventing any rotational movement of the shack 71 relative to the working cylinder 3.
[0025] A specific example embodiment of the shack 71 and working cylinder 3 is illustrated in
[0026] The holder 7 itself is then illustrated on
[0027] With such arrangement, large part of the device is nested into the space between seat runners 121 and the seat, and thus the distance between the seat and seat post is minimal, wherein at least one third of the length of the seat suspension assembly is hidden from side view in the space between seat runners 121 and seat. The whole device measures 115 mm, out of which is 40 mm hidden in the space between seat runners 121 and seat in this specific example embodiment. Extension of the suspension is 30 mm. At quite compact dimensions of the whole device, the extension of such gas spring is completely adequate and adjustment control lever 9 is at the same time well manually accessible for adjustment using fingers.
[0028] Instead of manually controlled lever 9, it is alternatively possible to arrange a spool for winding up a wire and to transfer the control using a Bowden cable to the bicycle frame or handlebars.
[0029] Device for attachment to the seat post is arranged at the closed end of the working cylinder 3, forming the bottom 61 of the working cylinder, which is formed as a convex shape 1 corresponding to the seat post cradle shape, with at least one threaded bore 101 for fixing to the seat post cradle using at least one screw. Some seat posts have two screws, some have one centre screw, this is why there are preferably three threaded bores 101 in the cradle. The cradle allows inclination of the seat forward/backward in the ride direction. Thanks to the fixing using a conventional seat post cradle, the assembly according to the invention could be applied to most of the present seats and seat posts, wherein the suspension, with correct installation (correct incline) is done perpendicularly to the plane of the terrain, and thus is the crossing of sliding elements prevented and suspension is made in the ergonomically correct direction.
[0030] A valve for refilling the working gas pressure is arranged in the hole 102 for valve on the closed end forming the bottom 61 of the working cylinder, see
[0031] In the example embodiment, the working gas is air, which is why it is possible to regulate the stiffness of the spring and possibly increase and decrease the working pressure e.g. based on the weight of the user using a common inflation pump. Air pressure in the cylinder will not exceed 15 bar, which is completely adequate.
[0032]
[0033] When the spring is compressed, positive pressure is created under piston 4 by reduction of the working space in working cylinder 3. The pressure, which is now higher than pressure in the space of the cavity of the piston rod 5, i.e. in the reservoir 51, raises the throttle element 14 (e.g. throttle ring), and this leads to pushing the throttle element 14 against the spring force of the silicone hose 134 (in case of sufficient intensity of compression up to the upper backstop 131 created on the control rod 13) and to the transfer of working medium from the working cylinder 3 into the reservoir 51 in piston rod 5. This position is illustrated in
[0034] At the time of highest dampening, see
[0035] If the control rod 13 is inserted even further behind the position of maximum dampening illustrated in
[0036] Seat, which consists of a soft seating part, is standardly equipped with two runners 121 from steel wire of 7 mm diameter. The gap between the runners 121 is 35 mm. The space between runners 121 and lower surface of the seating part is usually 40 mm. We succeeded in placing a significant part of the spring, including control elements, into this space. A large advantage is the fact that the springing takes place vertically, perpendicularly to the plane of the terrain, contrary to the previous known solutions, where the spring is placed askew and with crossing, or follows a radius and the position of the bicycle rider to handlebars is changed.
[0037] It is apparent to a person skilled in the art that individual specific elements could be embodied differently, within common engineering ability of a person with ordinary skill in the art. Above described examples of specific embodiments do not limit the scope of protection, which is delimited by the appended claims.
LIST OF REFERENCE NUMERALS
[0038] 1 convex shape corresponding to the seat post cradle shape
[0039] 101 bore
[0040] 102 hole for valve
[0041] 2 nut
[0042] 3 working cylinder
[0043] 32 protrusion of the working cylinder 3
[0044] 4 piston
[0045] 41 transfer hole
[0046] 5 piston rod
[0047] 51 reservoir
[0048] 6 lid of the working cylinder 3
[0049] 61 bottom of the working cylinder 3
[0050] 7 seat holder
[0051] 71 stack
[0052] 72 stack arm
[0053] 8 lid of the reservoir 51
[0054] 9 adjustment control lever
[0055] 10 tightening nut
[0056] 11 seat holder screw
[0057] 12 foot for clamping the runners 121 of the seat
[0058] 121 seat runners
[0059] 13 control rod
[0060] 131 upper backstop
[0061] 132 lower backstop
[0062] 134 silicone hose
[0063] 14 throttle element