IP Library Granted Patent US 9,221,518
Granted Patent B2
US 9,221,518 · App. 13/847,922 · Granted Dec 29, 2015

Universal skip-free derailleur

Inventor: Tzvetan Nedialkov Tzvetkov (New York, NY)
B62M9/12B62M9/134
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Quick Facts
Patent No.
US 9,221,518
App. No.
13/847,922
Granted
Dec 29, 2015
Kind
B2
Abstract

A front derailleur with controllable full rotational movement with two operator selectable radial arms—one for pole-vaulting the chain to larger sprockets, the other for sliding the chain to smaller sprockets.

Claims (27)

1. A front derailleur for a chain driven bicycle transmission with multiple sprockets comprising

a rotatable ring having at least one chain engaging arm;

an actuator having an extractable cam surface;

a base mountable on the bicycle frame having races for mounting said rotatable ring and slide guides for mounting said actuator.

2. A derailleur as in claim 1 , wherein said rotatable ring has a substantially flat surface and has a first chain engaging arm substantially superposed over a second chain engaging arm.

3. A derailleur as in claim 2 , wherein said rotatable ring has two resilient lamellae formed in the inner circumference of the ring opposite to said chain engaging arms allowing tool-free mounting of the ring on the race.

4. A derailleur as in claim 3 , wherein said first chain engaging arm has at least one chain engaging means distal to said first resilient member and a cam follower proximal to said first resilient member.

5. A derailleur as in claim 3 , wherein said second chain engaging arm has a sprocket engaging means formed distally to said second resilient member and a chain restraining flange formed proximally to said second resilient member.

6. A derailleur as in claim 5 , wherein said first resilient member and said second resilient member are rendered substantially flexible by means of cutouts in said resilient sheet metal.

7. A derailleur as in claim 5 , wherein said rotatable ring, said first chain engaging arm and said second chain engaging arm are rendered substantially rigid by forming flanges along the edges of said elements.

8. A derailleur as in claim 7 , wherein said linkage means consist of two pivoted levers converting the pull of the cable to push on said shoulders.

9. A derailleur as in claim 7 , wherein said actuator is made as a unitary flat form of resilient sheet metal and said hinges are formed by cutouts at the corners.

10. A derailleur as in claim 7 , wherein said actuator is made as a unitary flat form of resilient sheet metal and said hinges are formed by connecting flanges at the corners.

11. A derailleur as in claim 7 , wherein said shoulders are rigidly connected by a bar connected to a solenoid push piston, electronically activated by a controller on the bicycle handlebar.

12. A derailleur as in claim 3 , wherein said rotatable ring, said first chain engaging arm, said second chain engaging arm, said first resilient member and said second resilient member are made as a unitary flat form of resilient sheet metal, further shaped by means of bending.

13. A derailleur as in claim 2 , wherein said first chain engaging arm is substantially elongated, rigid, flat and coplanar to said rotatable ring and is cantilevered by a first resilient member substantially flat and coplanar to said rotatable ring and said second chain engaging arm is substantially elongated, rigid, flat and is cantilevered at a substantial angle to said first chain engaging arm by a second resilient member.

14. A derailleur as in claim 1 , wherein said actuator includes a flat arch forming two perpendicular straight shoulders from the concave side of the arch, the convex edge of the arch forming a cam and said shoulders being resiliently hinged to linkage means connecting one end of a cable to an operator controlled lever.

15. A derailleur as in claim 1 , wherein said base is a flat disc and includes

a central, circular orifice in the base for mounting the derailleur on the bicycle frame;

a substantially circular edge forming a stationary cam surface;

a recess in the edge accepting a cam follower;

on the sprocket side of the base—at least three races with ring retaining ridges;

on the bicycle frame side of the base—at least two collinear slide guides with shoulder retaining ridges on each side of the circular orifice;

two collinear fulcrums, orthogonal to the slide guides, pivotal to the levers;

an attachment point for the housing of the control cable.

16. A derailleur as in claim 1 , wherein said base is a unitary flat form shaped from sheet metal.

17. A derailleur as in claim 1 , wherein said base is a unitary plastic molding.

Continuity (2)
Continuation In Part 12533634 · Jul 31, 2009
Related Publication 20130225340A1 · Aug 29, 2013