Advanced composite rim having molded in spoke holes
Embodiments of the present invention comprise a composite rim used in spoked wheels, such as bicycle wheels, having molded-in spoke holes along with a method of fabricating the composite rim. Advantageously, the present invention dramatically improves the bearing and loading strength of prior art composite rims, which drill the spoke holes therein after fabrication of the rim hoop.
1. A rim for a wheeled vehicle, the rim being substantially comprised of a composite material including a polymer matrix with at least one layer of reinforcement fibers of a predefined orientation substantially extending from one edge of the layer to an opposing edge and having a plurality of spoke holes formed in situ during a molding operation, wherein the reinforcement fibers immediately adjacent to and surrounding the plurality of spoke holes curve around the periphery of the spoke holes to remain continuous in the circumferential direction of the rim.
2. The rim of claim 1 , wherein the rim comprises a bicycle wheel rim.
3. The rim of claim 1 , wherein the composite material includes reinforcement fibers composed primarily of carbon fibers.
4. The rim of claim 3 , wherein the polymer matrix of the composite material comprises an epoxy resin.
5. The rim of claim 1 , further comprising a raised braking surface on each of the left and right sides of the rim.
6. A bicycle wheel comprising: the rim of claim 1 ; a hub; a plurality of spokes each having at least a threaded distal end; and a plurality of threaded nipples; wherein each nipple is seated against a portion of an interior surface of the rim surrounding a spoke hole and each spoke extends from a connection with the hub at a proximate end, passes through a spoke hole opening and is threadably secured to a nipple at the distal end.
7. The rim of claim 1 further including a tire valve stem hole formed in situ during the molding operation.
8. The rim of claim 1 wherein portions of an interior surface of the rim immediately adjacent and surrounding the spoke holes are generally concave for permitting maximum contact between a nipple and the rim so that a load thereon is transferred evenly around the spoke hole to the rim.
9. A bicycle rim for use in a spoked bicycle wheel, the rim being substantially comprised of a composite material including an epoxy polymer matrix and at least one layer of reinforcement carbon fibers of a predefined orientation substantially extending from one edge of the layer to an opposing edge wherein, the rim further comprising: (i) a plurality spoke holes formed in situ during a molding operation wherein (a) the carbon fibers immediately adjacent to and surrounding each spoke hole curve around the periphery of the spoke holes to remain continuous in the circumferential direction of the rim and (b) a portion of an interior surface of the rim immediately surrounding each spoke hole are generally concave; and (ii) a raised braking surface on each of the left and right sides of the rim, the braking surfaces being parallel to each other.
10. The rim of claim 8 , wherein the generally concave shape of the interior surface of the rim immediately surrounding each spoke hole is formed in situ during the molding operation of the rim.
11. The rim of claim 9 , wherein the polymer matrix of the composite material comprises an epoxy resin.
12. A bicycle wheel comprising: the rim of claim 9 ; a hub; a plurality of spokes each having at least a threaded distal end; and a plurality of threaded nipples; wherein each nipple is seated against a portion of the interior surface of the rim surrounding a spoke hole and each spoke extends from a connection with the hub at a proximate end, passes through a spoke hole opening and is threadably secured to a nipple at the distal end.
13. The rim of claim 9 , wherein composite material defines a tire valve stem hole, wherein the reinforcement fibers immediately adjacent to and surrounding the tire valve stem hole curve around the periphery of the tire valve stem hole to remain continuous in the circumferential direction of the rim.