IP Library Granted Patent US 10,625,820
Granted Patent B2
US 10,625,820 · App. 15/879,353 · Granted Apr 21, 2020

Bicycle rear sprocket assembly

Inventors: Atsuhiro Emura (Sakai, JP); Hiroshi Fujita (Sakai, JP); Fumiaki Yoshida (Sakai, JP)
Assignee: SHIMANO INC.
B62M9/12B62M9/10F16H55/06F16H55/12F16H55/30
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,625,820
App. No.
15/879,353
Granted
Apr 21, 2020
Kind
B2
Abstract

A bicycle rear sprocket assembly comprises a plurality of sprockets and a sprocket carrier. The plurality of sprockets includes a first sprocket and a second sprocket. The first sprocket has at least one circumferential coupling point. The first sprocket is coupled to a radially extending surface of at least one of a plurality of sprocket mounting portions at the at least one circumferential coupling point. The second sprocket has at least one additional circumferential coupling point. The second sprocket is coupled, at the at least one additional circumferential coupling point, to at least one of the sprocket carrier and one of the plurality of sprockets. A total number of the at least one circumferential coupling point is different from a total number of the at least one additional circumferential coupling point.

Claims (92)

1. A bicycle rear sprocket assembly comprising:

a plurality of sprockets including a first sprocket and a second sprocket; and

a sprocket carrier including a plurality of sprocket mounting portions, at least one of the plurality of sprocket mounting portions having

a radially extending surface extending radially with respect to a rotational center axis of the bicycle rear sprocket assembly, and

an axially extending surface extending axially from the radially extending surface with respect to the rotational center axis,

the first sprocket having at least one circumferential coupling point, the first sprocket being coupled to the radially extending surface of at least one of the plurality of sprocket mounting portions at the at least one circumferential coupling point,

the second sprocket having at least one additional circumferential coupling point, the second sprocket being coupled, at the at least one additional circumferential coupling point, to at least one of the sprocket carrier and one of the plurality of sprockets, and

a total number of the at least one circumferential coupling point being different from a total number of the at least one additional circumferential coupling point.

2. The bicycle rear sprocket assembly according to claim 1 , wherein

the total number of the at least one additional circumferential coupling point is larger than the total number of the at least one circumferential coupling point.

3. The bicycle rear sprocket assembly according to claim 2 , wherein

the first sprocket has a maximum tooth bottom diameter, and

the second sprocket has an additional maximum tooth bottom diameter that is larger than the maximum tooth bottom diameter of the first sprocket.

4. The bicycle rear sprocket assembly according to claim 1 , wherein

the plurality of sprocket mounting portions each has

the radially extending surface extending radially with respect to the rotational center axis, and

the axially extending surface extending axially from the radially extending surface with respect to the rotational center axis.

5. The bicycle rear sprocket assembly according to claim 1 , further comprising

at least one fastening member, wherein

the first sprocket is coupled to the radially extending surface of the at least one of the plurality of sprocket mounting portions at the at least one circumferential coupling point with the at least one fastening member.

6. The bicycle rear sprocket assembly according to claim 1 , further comprising

a plurality of fastening members, wherein

the at least one circumferential coupling point includes a plurality of circumferential coupling points, and

the first sprocket is coupled to the radially extending surface of the at least one of the plurality of sprocket mounting portions at the plurality of circumferential coupling points with the plurality of fastening members.

7. The bicycle rear sprocket assembly according to claim 1 , wherein

the second sprocket is coupled to the one of the plurality of sprockets at the at least one additional circumferential coupling point.

8. The bicycle rear sprocket assembly according to claim 7 , further comprising

at least one fastening member, wherein

the second sprocket is coupled to the one of the plurality of sprockets at the at least one additional circumferential coupling point with the at least one fastening member.

9. The bicycle rear sprocket assembly according to claim 7 , further comprising

a plurality of fastening members, wherein

the at least one additional circumferential coupling point includes a plurality of additional circumferential coupling points, and

the second sprocket is coupled to the one of the plurality of sprockets at the plurality of additional circumferential coupling points with the plurality of fastening members.

10. The bicycle rear sprocket assembly according to claim 1 , wherein

the second sprocket is coupled to the sprocket carrier at the at least one additional circumferential coupling point.

11. The bicycle rear sprocket assembly according to claim 10 , further comprising

at least one fastening member, wherein

the second sprocket is coupled to the sprocket carrier at the at least one additional circumferential coupling point with the at least one fastening member.

12. The bicycle rear sprocket assembly according to claim 10 , further comprising

a plurality of fastening members, wherein

the at least one additional circumferential coupling point includes a plurality of additional circumferential coupling points, and

the second sprocket is coupled to the sprocket carrier at the plurality of additional circumferential coupling points with the plurality of fastening members.

13. The bicycle rear sprocket assembly according to claim 1 , wherein

the sprocket carrier includes a central portion and a plurality of sprocket mounting arms extends radially outwardly from the central portion with respect to the rotational center axis,

the plurality of sprocket mounting portions is respectively provided to the plurality of sprocket mounting arms, and

the total number of the plurality of additional circumferential coupling points is larger than a total number of the plurality of sprocket mounting portions.

14. The bicycle rear sprocket assembly according to claim 13 , wherein

the central portion of the sprocket carrier has a hub engagement profile.

15. The bicycle rear sprocket assembly according to claim 1 , wherein

the plurality of sprockets further includes a third sprocket and a fourth sprocket.

16. The bicycle rear sprocket assembly according to claim 1 , wherein

the first sprocket is made of titanium.

17. The bicycle rear sprocket assembly according to claim 3 , wherein

the second sprocket is made of aluminum.

18. The bicycle rear sprocket assembly according to claim 1 , wherein

the plurality of sprocket mounting portions is offset from each other in a radial direction with respect to the rotational center axis.

19. The bicycle rear sprocket assembly according to claim 1 , wherein

the total number of the at least one additional circumferential coupling point is double of the total number of the at least one circumferential coupling point.

20. A bicycle rear sprocket assembly comprising:

a first sprocket wheel having a first maximum tooth bottom diameter;

a second sprocket wheel having a second maximum tooth bottom diameter that is smaller than the first maximum tooth bottom diameter of the first sprocket wheel;

a third sprocket wheel having a third maximum tooth bottom diameter that is larger than the first maximum tooth bottom diameter of the first sprocket wheel;

at least one fastener; and

a sprocket carrier including a central portion and a plurality of sprocket mounting arms extending radially outwardly from the central portion with respect to a rotational center axis of the bicycle rear sprocket assembly, the sprocket carrier including

a first circumferential sprocket-mounting portion provided to the plurality of sprocket mounting arms, and

a second circumferential sprocket-mounting portion provided to the plurality of sprocket mounting arms and disposed radially inwardly from the first circumferential sprocket-mounting portion with respect to the rotational center axis,

the first circumferential sprocket-mounting portion being configured to support the first sprocket wheel, the second circumferential sprocket-mounting portion being configured to support the second sprocket wheel, the third sprocket wheel being configured to be coupled to the first sprocket wheel with the at least one fastener, the first sprocket wheel being disposed between the second sprocket wheel and the third sprocket wheel in an axial direction with respect to the rotational center axis.

21. The bicycle rear sprocket assembly according to claim 20 , wherein

the first circumferential sprocket-mounting portion has

a first radially extending surface extending radially with respect to the rotational center axis, and

a first axially extending surface extending axially with respect to the rotational center axis, and

the second circumferential sprocket-mounting portion has

a second radially extending surface extending radially with respect to the rotational center axis, and

a second axially extending surface extending axially with respect to the rotational center axis.

22. The bicycle rear sprocket assembly according to claim 20 , further comprising:

at least one first fastener; and

at least one second fastener, wherein

the first sprocket wheel has at least one first circumferential coupling point and is coupled to the first circumferential sprocket-mounting portion at the at least one first circumferential coupling point with the at least one first fastener, and

the second sprocket wheel has at least one second circumferential coupling point and is coupled to the second circumferential sprocket-mounting portion at the at least one second circumferential coupling point with the at least one second fastener.

23. The bicycle rear sprocket assembly according to claim 20 , further comprising:

at least one additional fastener; and

a fourth sprocket wheel configured to be mounted to the third sprocket wheel with the at least one additional fastener, the third sprocket wheel being disposed between the first sprocket wheel and the fourth sprocket wheel in the axial direction.

24. The bicycle rear sprocket assembly according to claim 20 , wherein

the central portion of the sprocket carrier has a hub engagement profile.

25. The bicycle rear sprocket assembly according to claim 20 , wherein

the first sprocket wheel has at least one first circumferential coupling point and is coupled to the first circumferential sprocket-mounting portion at the at least one first circumferential coupling point,

the second sprocket wheel has at least one second circumferential coupling point and is coupled to the second circumferential sprocket-mounting portion at the at least one second circumferential coupling point,

a total number of the at least one second circumferential coupling point is equal to or larger than a total number of the at least one first circumferential coupling point,

the third sprocket wheel has at least one third circumferential coupling point and is coupled to the first sprocket wheel at the at least one third circumferential coupling point, and

a total number of the at least one third circumferential coupling point is larger than the total number of the at least one first circumferential coupling point.

26. The bicycle rear sprocket assembly according to claim 25 , wherein

the total number of the at least one third circumferential coupling point is double of the total number of the at least one first circumferential coupling point.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 24, 2018
From: EMURA, ATSUHIRO; FUJITA, HIROSHI; YOSHIDA, FUMIAKI
To: SHIMANO INC.
Reel/Frame 044721/0691 →
Continuity (1)
Related Publication 20190225302A1 · Jul 25, 2019
Cited By (3)
US 12,187,384 US 12,539,939 US 12,617,491