US2012061941A1PendingUtilityA1
Bicycle frames and bicycles
Est. expirySep 13, 2030(~4.1 yrs left)· nominal 20-yr term from priority
B62K 3/02B62K 19/00B62K 3/04B62K 19/16B62K 19/18B62K 19/02
42
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Claims
Abstract
Bicycle frames having rear stays that extend past the seat region and connect directly to the top region without being rigidly connected to the seat region. Some bicycle frames according to the present disclosure have a greater vertical compliance than comparably sized standard diamond frames having seat stays that are connected directly and rigidly to a seat tube.
Claims
exact text as granted — not AI-modified1 . A bicycle frame, comprising:
a top region; a seat region extending downward from the top region and configured to receive a seat post; a pair of rear stays extending past the seat region and connected to the top region, wherein the rear stays are not connected directly to and do not engage the seat region, wherein the rear stays have perpendicular cross-sectional profiles that vary along a length of the rear stays, wherein the perpendicular cross-sectional profiles of the rear stays have widths and heights that are generally constant for a substantial length of the rear stays distal the top region, wherein the widths decrease and the heights increase from the substantial length to proximal the top region, wherein the substantial length is within the range of 40-80% of an overall length of the rear stays; a down region; a head region interconnecting the top region and the down region; a pair of chain stays; a bottom bracket interconnecting the seat region, the down region, and the chain stays; and a pair of rear drop-outs interconnecting the rear stays and the chain stays.
2 . A bicycle frame, comprising:
a top region; a seat region extending downward from the top region and configured to receive a seat post; a pair of rear stays extending past the seat region and connected to the top region; a down region; a head region interconnecting the top region and the down region; a pair of chain stays; a bottom bracket interconnecting the seat region, the down region, and the chain stays; a pair of rear drop-outs interconnecting the rear stays and the chain stays; and means for having a vertical compliance of the frame of 2-10 mm/1 kN.
3 . A bicycle frame, comprising:
a top region; a seat region extending downward from the top region and configured to receive a seat post; a pair of rear stays extending past the seat region and connected to the top region, wherein the rear stays are not connected directly and rigidly to the seat region, and wherein the rear stays have perpendicular cross-sectional profiles that vary along a length of the rear stays; a down region; a head region interconnecting the top region and the down region; a pair of chain stays; a bottom bracket interconnecting the seat region, the down region, and the chain stays; and a pair of rear drop-outs interconnecting the rear stays and the chain stays.
4 . The bicycle frame of claim 3 , wherein the bicycle frame has a vertical compliance of 2-10 mm/1 kN.
5 . The bicycle frame of claim 3 , wherein the bicycle frame has a vertical stiffness of 1-50% of a vertical stiffness of a comparably sized standard diamond frame having seat stays that are connected directly and rigidly to a seat tube.
6 . The bicycle frame of claim 3 , wherein the bicycle frame has a vertical compliance that is 1.1-2 times greater than a vertical compliance of a comparably sized standard diamond frame having seat stays that are connected directly and rigidly to a seat tube.
7 . The bicycle frame of claim 3 , wherein the perpendicular cross-sectional profiles of the rear stays are narrower proximal the top region than distal the top region.
8 . The bicycle frame of claim 3 , wherein the perpendicular cross-sectional profiles of the rear stays are narrower adjacent to the seat region than distal the top region.
9 . The bicycle frame of claim 3 , wherein the perpendicular cross-sectional profiles of the rear stays have widths that decrease from distal the top region to proximal the top region.
10 . The bicycle frame of claim 9 , wherein the perpendicular cross-sectional profiles of the rear stays have heights that increase from distal the top region to proximal the top region.
11 . The bicycle frame of claim 3 , wherein the perpendicular cross-sectional profiles of the rear stays have widths that are generally constant for a substantial length of the rear stays distal the top region, and wherein the widths decrease from the substantial length to proximal the top region.
12 . The bicycle frame of claim 11 , wherein the substantial length is within the range of 40-80% of an overall length of the rear stays.
13 . The bicycle frame of claim 3 , wherein the perpendicular cross-sectional profiles of the rear stays have heights that increase from distal the top region to proximal the top region.
14 . The bicycle frame of claim 3 , wherein the perpendicular cross-sectional profiles of the rear stays have heights that are generally constant for a substantial length of the rear stays distal the top region, and wherein the heights increase from the substantial length toward the top region.
15 . The bicycle frame of claim 14 , wherein the substantial length is within the range of 40-80% of an overall length of the rear stays.
16 . The bicycle frame of claim 3 , wherein the rear stays are connected to the top region in a generally asymptotic manner.
17 . The bicycle frame of claim 3 , wherein the rear stays are connected to the top region at 2-20% of an overall length of the top region forward of the seat region.
18 . The bicycle frame of claim 3 , wherein the rear stays are connected to the top region at 1-30° relative to a longitudinal axis of the top region.
19 . The bicycle frame of claim 18 , wherein the 1-30° corresponds to a distance away from an apex defined between the rear stays and the top region in the range of 5-80 mm.
20 . The bicycle frame of claim 18 , wherein the 1-30° corresponds to a distance away from an apex defined between the rear stays and the top region in the range of 2-20% of an overall length of the rear stays away from the apex.
21 . The bicycle frame of claim 3 , wherein a substantial portion of the rear stays have a radii of curvature of at least 600 mm as viewed from a side of the frame.
22 . The bicycle frame of claim 21 , wherein the substantial portion is within the range of 40-100% of an overall length of the rear stays.
23 . The bicycle frame of claim 3 , wherein the bicycle frame is constructed predominantly of a carbon fiber composite material.
24 . The bicycle frame of claim 3 , wherein the rear stays are constructed predominantly of a carbon fiber composite material.
25 . The bicycle frame of claim 24 , wherein the top region and the seat region are not constructed predominantly of a carbon fiber composite material.
26 . The bicycle frame of claim 3 , wherein the rear stays do not engage the seat region.
27 . The bicycle frame of claim 3 , further comprising:
one or more elastomeric connecting members interconnecting the rear stays and the seat region.
28 . A bicycle, comprising:
the bicycle frame of claim 3 ; a front fork; a drive train; a front wheel; and a rear wheel.
29 . The bicycle of claim 28 , further comprising:
disc brakes.Join the waitlist — get patent alerts
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