Bicycle rear suspension system
A rear suspension bicycle in which a lower linkage member between the front triangle and the rear wheel swingarm includes a flexible portion of material rather than a discrete pivot point.
1. A rear suspension bicycle, comprising:
a front triangle;
a rear wheel swingarm; a rear wheel having an axis of rotation;
an upper linkage member having a first pivotal connection with the front triangle and a second pivotal connection with the rear wheel swingarm;
a lower linkage member having a first pivotal connection with the front triangle and a second pivotal connection with the rear wheel swingarm; and
a shock absorber operatively connected to the front triangle and the rear wheel swingarm and configured to control movement of the rear wheel swingarm relative to the front triangle;
wherein the axis of rotation of the rear wheel moves along a non-arc path as the shock absorber is compressed;
wherein the second pivotal connection of the lower linkage member is formed by a flexible segment of material having a thinner cross section than an adjacent portion of the lower linkage member, and is disposed between the first pivotal connection of the lower linkage member and the axis of rotation of the rear wheel; and
wherein the lower linkage member and an adjoining chainstav of the bicycle are integrally constructed from a single continuous piece of material with varying cross section.
2. The rear suspension bicycle of claim 1 , wherein the flexible segment of material has a thinner cross section than the adjoining chainstay of the bicycle.
3. The rear suspension bicycle of claim 1 , wherein when the shock absorber is in a fully compressed state, a center of curvature of a travel path of the axis of rotation of the rear wheel and an instant center of the bicycle are equidistant from a pedaling axis of the bicycle.
4. The rear suspension bicycle of claim 1 , wherein the second pivotal connection of the lower linkage member is disposed at a horizontal position between 35% and 65% of a horizontal distance between the first pivotal connection of the lower linkage member and the axis of rotation of the rear wheel.
5. The rear suspension bicycle of claim 1 , wherein the second pivotal connection of the lower linkage member is disposed at a horizontal position between 45% and 55% of a horizontal distance between the first pivotal connection of the lower linkage member and the axis of rotation of the rear wheel.
6. The rear suspension bicycle of claim 1 , wherein the second pivotal connection of the lower linkage member is disposed at a vertical position below a line connecting the first pivotal connection of the lower linkage member and the axis of rotation of the rear wheel.
7. A rear suspension bicycle, comprising:
a front triangle;
a rear wheel swingarm;
a rear wheel having an axis of rotation;
an upper linkage member having a first pivotal connection with the front triangle and a second pivotal connection with the rear wheel swingarm;
a lower linkage member having a first pivotal connection with the front triangle and a second pivotal connection with the rear wheel swingarm; and
a shock absorber operatively connected to the front triangle and the rear wheel swingarm and configured to control movement of the rear wheel swingarm relative to the front triangle;
wherein the axis of rotation of the rear wheel moves along a non-arc path as the shock absorber is compressed; and
wherein the second pivotal connection of the lower linkage member is formed by a flexible segment of material disposed between the first pivotal connection of the lower linkage member and the axis of rotation of the rear wheel; and
wherein the lower linkage member and an adjoining chainstav of the bicycle are integrally constructed from a single continuous piece of material with varying cross section.
8. The rear suspension bicycle of claim 7 , wherein the second pivotal connection of the lower linkage member is disposed at a horizontal position between 35% and 65% of a horizontal distance between the first pivotal connection of the lower linkage member and the axis of rotation of the rear wheel.
9. The rear suspension bicycle of claim 7 , wherein the second pivotal connection of the lower linkage member is disposed at a horizontal position between 40% and 60% of a horizontal distance between the first pivotal connection of the lower linkage member and the axis of rotation of the rear wheel.
10. The rear suspension bicycle of claim 7 , wherein the second pivotal connection of the lower linkage member is disposed at a horizontal position between 45% and 55% of a horizontal distance between the first pivotal connection of the lower linkage member and the axis of rotation of the rear wheel.
11. The rear suspension bicycle of claim 7 , wherein the second pivotal connection of the lower linkage member is disposed at a vertical position below a line connecting the first pivotal connection of the lower linkage member and the axis of rotation of the rear wheel.
12. The rear suspension bicycle of claim 7 , wherein when the shock absorber is in a fully compressed state, a center of curvature of a travel path of the axis of rotation of the rear wheel and an instant center of the bicycle are equidistant from a pedaling axis of the bicycle.