IP Library › Granted Patent US 12,296,618
Granted Patent B2
US 12,296,618 · App. 18/172,334 · Granted May 13, 2025

Aerodynamic bicycle rim and wheel

Inventors: Steven Arthur Hed (North Oaks, MN); Christopher Andrew Edin (Mahtomedi, MN)
Assignee: HED CYCLING PRODUCTS, INC.
B60B21/025B60B21/02B60B21/10B60B21/104B60B1/003B60B3/00B60B2900/1216B60B2900/50B60Y2200/13B60Y2200/134Y02T10/88
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Quick Facts
Patent No.
US 12,296,618
App. No.
18/172,334
Granted
May 13, 2025
Kind
B2
Abstract

An aerodynamic bicycle rim comprising: a circumferential outer portion comprising a circumferential outer surface, the circumferential outer portion adapted to seat a bicycle tire; a nose; and a set of sidewalls, each sidewall extending radially from the nose of the aerodynamic bicycle rim to a corresponding transition to the circumferential outer surface to form a rim body having a maximum rim body width that is greater than a maximum width of the bicycle tire. The aerodynamic bicycle rim is operable to seat the bicycle tire so that the aerodynamic bicycle rim and the bicycle tire form an asymmetrical cross-sectional shape.

Claims (24)

1. An aerodynamic bicycle rim comprising:

a radially outer portion comprising a circumferential tire bed and tire bead hooks, the radially outer portion defining a radially outermost edge having a radially outermost width; and

sidewalls extending from the radially outermost edge of the aerodynamic bicycle rim to a radially innermost edge of the aerodynamic bicycle rim to form a rim body, wherein:

a widest portion of the rim body is radially inward of the circumferential tire bed and radially outward of a centerline of the rim body,

a maximum width of the rim body at the widest portion of the rim body is greater than the radially outermost width,

the rim body continuously increases in width from the radially outermost edge, through the tire bead hooks, and to the widest portion of the rim body and continuously decreases in width from the widest portion of the rim body to the radially innermost edge;

the radially outer portion of the aerodynamic bicycle rim is adapted to seat a bicycle tire such that there is a tangent line tangent to the bicycle tire and tangent to one of the sidewalls of the aerodynamic bicycle rim at an outer third of the rim body and radially inward from the tire bead hooks and to form a cross-sectional shape having a cross-sectional shape centerline spaced radially outward from the widest portion of the rim body, and

a radial distance from the circumferential tire bed of the aerodynamic bicycle rim to the radially innermost edge of the aerodynamic bicycle rim is greater than the maximum width of the rim body.

2. The aerodynamic bicycle rim of claim 1 , wherein the tangent line has a tangent angle between 7 and 17 degrees.

3. The aerodynamic bicycle rim of claim 1 , wherein the aerodynamic bicycle rim is configured such that a wheel formed from the bicycle tire and the aerodynamic bicycle rim has a stall angle of 8-20 degrees.

4. The aerodynamic bicycle rim of claim 1 , wherein the radial distance from the circumferential tire bed to the radially innermost edge of the aerodynamic bicycle rim is at least two times greater than the maximum width of the rim body.

5. The aerodynamic bicycle rim of claim 1 , wherein each of the sidewalls has an outward curved shape that curves from a respective tire bead hook to the widest portion of the rim body and from the widest portion of the rim body to the radially innermost edge of the aerodynamic bicycle rim.

6. An aerodynamic bicycle wheel comprising:

an aerodynamic bicycle rim, further comprising:

a radially outer portion comprising a circumferential tire bed and tire bead hooks, the radially outer portion defining a radially outermost edge having a radially outermost width; and

sidewalls extending from the radially outermost edge of the aerodynamic bicycle rim to a radially innermost edge of the aerodynamic bicycle rim to form a rim body, wherein:

the rim body has a width that continuously increases from the radially outermost edge, through the tire bead hooks, and to a widest portion of the rim body and continuously decreases in width from the widest portion of the rim body to the radially innermost edge of the aerodynamic bicycle rim,

the widest portion of the rim body is radially inward of the circumferential tire bed and radially outward of a centerline of the rim body,

a maximum width of the rim body at the widest portion of the rim body is greater than the radially outermost width, and

a radial distance from the circumferential tire bed of the aerodynamic bicycle rim to the radially innermost edge of the aerodynamic bicycle rim is greater than the maximum width of the rim body; and

a bicycle tire mounted to the aerodynamic bicycle rim such that there is a tangent line tangent to the bicycle tire and tangent to one of the sidewalls of the aerodynamic bicycle rim at an outer third of the rim body and radially inward from the tire bead hooks and to form a cross-sectional shape having a cross-sectional shape centerline spaced radially outward from the widest portion of the rim body.

7. The aerodynamic bicycle wheel of claim 6 , wherein the tangent line has a tangent angle between 7 and 17 degrees.

8. The aerodynamic bicycle wheel of claim 6 , wherein the aerodynamic bicycle wheel has a stall angle of 8-20 degrees.

9. The aerodynamic bicycle wheel of claim 6 , wherein the radial distance from the circumferential tire bed to the radially innermost edge of the aerodynamic bicycle rim is at least two times greater than the maximum width of the rim body.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2023
From: HED, STEVEN ARTHUR; EDIN, CHRISTOPHER ANDREW
To: HED CYCLING PRODUCTS, INC.
Reel/Frame 063263/0913 →
Continuity (7)
Continuation 17133287 · Dec 23, 2020
Continuation 16184712 · Nov 8, 2018
Continuation 15276199 · Sep 26, 2016
Continuation 14520207 · Oct 21, 2014
Continuation 12553026 · Sep 2, 2009
Provisional Application 61185489 · Jun 9, 2009
Related Publication 20230202229A1 · Jun 29, 2023
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Cited By (2)
US 12,330,449 US 12,605,960