IP Library › Granted Patent US 12,703,459
Granted Patent B2
US 12,703,459 · App. 18/748,966 · Granted Aug 11, 2026

Slidingly-engaging two-piece upper chain guide

Inventor: Sean Mailen (Grand Junction, CO)
Assignee: Eko Sport, Inc.
B62M9/105B62M2009/007
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Quick Facts
Patent No.
US 12,703,459
App. No.
18/748,966
Filed
Jun 20, 2024
Granted
Aug 11, 2026
Kind
B2
Art Unit
3654
USPC
474/140
Abstract

An assembly for minimizing the disengagement of a chain from a chain ring is disclosed. The assembly includes an inboard leg and an outboard leg. The outboard leg is configured to slide vertically relative to the inboard leg. A fastener passes through the inboard leg and outboard leg and defines the upper and lower limit of sliding of the outboard leg.

Claims (39)

1 . An assembly for minimizing the disengagement of a chain from a chain ring, comprising:

a bracket;

a shaft extending from said bracket;

an inboard leg;

an outboard leg;

a first mating portion on the inboard leg; and

a second mating portion on the outboard leg;

wherein the first mating portion and the second mating portion interfit with one another to connect the inboard leg to the outboard leg;

wherein the first mating portion and the second mating portion are configured to engage with one another by sliding the outboard leg relative to the inboard leg; and

wherein the outboard leg is configured to slide relative to the inboard leg when the inboard leg is connected to the outboard leg and the inboard leg is secured to the shaft.

2 . The assembly for minimizing the disengagement of a chain from a chain ring according to claim 1 , wherein at least one of the first mating portion and the second mating portion comprises a finger.

3 . The assembly for minimizing the disengagement of a chain from a chain ring according to claim 2 , wherein the other of the first mating portion and the second mating portion comprises a groove.

4 . The assembly for minimizing the disengagement of a chain from a chain ring according to claim 1 , wherein the outboard leg is configured to slide vertically relative to the bracket.

5 . The assembly for minimizing the disengagement of a chain from a chain ring according to claim 1 , wherein the outboard leg is configured to slide substantially perpendicular to an axis of the shaft.

6 . The assembly for minimizing the disengagement of a chain from a chain ring according to claim 1 , wherein the outboard leg is configured to slide linearly relative to the bracket.

7 . An assembly for minimizing the disengagement of a chain from a chain ring, comprising:

an inboard leg having a first inboard leg aperture;

an outboard leg; and

a shaft configured to pass at least partially through the first inboard leg aperture; and

wherein the inboard leg is substantially vertically fixed with respect to the shaft;

wherein the outboard leg and the inboard leg are connected to one another; and

wherein the outboard leg is vertically slidable relative to the inboard leg and the shaft when the outboard leg and the inboard leg are connected to one another.

8 . The assembly for minimizing the disengagement of a chain from a chain ring according to claim 7 , wherein engagement of the inboard leg and the shaft is capable of substantially restricting lateral and vertical movement of the inboard leg.

9 . The assembly for minimizing the disengagement of a chain from a chain ring according to claim 8 , wherein engagement of the inboard leg and the shaft is capable of substantially restricting lateral movement of the outboard leg.

10 . The assembly for minimizing the disengagement of a chain from a chain ring according to claim 9 , wherein the outboard leg includes a first mating portion and the inboard leg includes a second mating portion.

11 . The assembly for minimizing the disengagement of a chain from a chain ring according to claim 10 , wherein at least one of the first mating portion and the second mating portion comprises a finger.

12 . The assembly for minimizing the disengagement of a chain from a chain ring according to claim 11 , wherein the other of the first mating portion and the second mating portion comprises a groove.

13 . An assembly for minimizing the disengagement of a chain from a chain ring, comprising:

an inboard leg;

an outboard leg slidably secured to the inboard leg; and

a shaft configured to pass through at least a portion of the inboard leg;

wherein the outboard leg is configured to slide relative to the inboard leg and the shaft and remain engaged with the inboard leg after the inboard leg and the outboard leg are connected to one another.

14 . The assembly for minimizing the disengagement of a chain from a chain ring according to claim 13 , wherein the shaft defines a lateral direction and the outboard leg is configured to slide substantially vertically relative to the shaft.

15 . The assembly for minimizing the disengagement of a chain from a chain ring according to claim 13 , wherein the outboard leg includes a first mating portion and the inboard leg includes a second mating portion.

16 . The assembly for minimizing the disengagement of a chain from a chain ring according to claim 15 , wherein at least one of the first mating portion and the second mating portion comprises a finger.

17 . The assembly for minimizing the disengagement of a chain from a chain ring according to claim 16 , wherein the other of the first mating portion and the second mating portion comprises a groove.

18 . The assembly for minimizing the disengagement of a chain from a chain ring according to claim 13 , wherein engagement of the inboard leg and the shaft is capable of substantially restricting lateral and vertical movement of the inboard leg.

19 . The assembly for minimizing the disengagement of a chain from a chain ring according to claim 18 , wherein engagement of the inboard leg and the shaft is capable of substantially restricting lateral movement of the outboard leg.

20 . The assembly for minimizing the disengagement of a chain from a chain ring according to claim 13 , wherein the outboard leg is configured to slide substantially linearly relative to the shaft.

Continuity (3)
Continuation 18113854 · Feb 24, 2023
Provisional Application 63319730 · Mar 14, 2022
Related Publication 20240336329A1 · Oct 10, 2024
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