Carbon fiber rim, bicycle including the same and manufacture method thereof
09688338 ยท 2017-06-27
Assignee
Inventors
Cpc classification
B60B21/08
PERFORMING OPERATIONS; TRANSPORTING
B60B21/025
PERFORMING OPERATIONS; TRANSPORTING
B60B1/003
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60B21/02
PERFORMING OPERATIONS; TRANSPORTING
B60B21/06
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A carbon fiber rim comprises a circular rim and a heat conduction layer. The circular rim comprises carbon fiber composites, and has two opposite side surfaces facing two brake pads and two opposite hooks extending outward radially to hold tires. The heat conduction layer is arranged on the side surface of the circular rim for forming a braking region facing the brake pad. The heat conduction layer comprises a porous or mesh heat conduction material. A bicycle including the aforementioned carbon fiber rim and the manufacturing method of the carbon fiber rim are also disclosed here. The carbon fiber rim can prevent distortion due to frictional heat when braking.
Claims
1. A carbon fiber rim applied to a bicycle, comprising: a circular rim which comprises carbon fiber composites, wherein the circular rim comprises two opposite side surfaces facing two brake pads of the bicycle, and the circular rim comprises two opposite hooks extending outward radially to hold a tire of the bicycle; and two heat conduction layers respectively arranged on the two side surfaces for forming two braking regions facing the brake pads of the bicycle, wherein each of the heat conduction layers comprises a metal grid and meshes of the metal grid are filled with resin of the carbon fiber composites.
2. The carbon fiber rim according to claim 1, wherein each of the heat conduction layers extends inwards radially along an outside surface of the circular rim or covers an outside surface of the circular rim.
3. The carbon fiber rim according to claim 1, further comprising: a heat insulation layer arranged on an outside surface of each of the heat conduction layers and facing the brake pad of the bicycle, or arranged between one of the side surface of the circular rim and the heat conduction layer, wherein the heat insulation layer comprises a heat insulation material.
4. The carbon fiber rim according to claim 3, wherein the heat insulation material comprises inorganic fiber composites.
5. The carbon fiber rim according to claim 1, further comprising: a protective layer arranged on an outside surface of the carbon fiber rim.
6. The carbon fiber rim according to claim 1, wherein a thickness of the metal grid is between 0.01 mm and 1 mm.
7. A bicycle, comprising: a bicycle frame; a front wheel arranged on a front end of the bicycle frame; a rear wheel arranged on a rear end of the bicycle frame, wherein at least one of the front wheel and the rear wheel comprises a carbon fiber rim, and the carbon fiber rim comprises: a circular rim, which comprises carbon fiber composites, wherein the circular rim comprises two opposite side surfaces facing two brake pads of the bicycle, and the circular rim comprises two opposite hooks extending outward radially to hold a tire of the bicycle; and two heat conduction layers respectively arranged on the two side surfaces for forming two braking regions facing the brake pads of the bicycle, wherein each of the heat conduction layers comprises a metal grid and meshes of the metal grid are filled with resin of the carbon fiber composites; and a steering component connected to the front wheel for controlling moving direction of the front wheel; and a transmission component connected to the rear wheel for transmitting pedal power caused by a user to drive the rear wheel.
8. The bicycle according to claim 7, wherein each of the heat conduction layers extends inwards radially along an outside surface of the circular rim or covers an outside surface of the circular rim.
9. The bicycle according to claim 7, wherein the carbon fiber rim further comprises: a heat insulation layer arranged on an outside surface of each of the heat conduction layers and facing the brake pad of the bicycle, or arranged between one of the side surface of the circular rim and the heat conduction layer, wherein the heat insulation layer comprises a heat insulation material.
10. The bicycle according to claim 9, wherein the heat insulation material comprises inorganic fiber composites.
11. The bicycle according to claim 7, wherein the carbon fiber rim further comprises a protective layer arranged on an outside surface of the carbon fiber rim.
12. The bicycle according to claim 7, wherein a thickness of the metal grid is between 0.01 mm and 1 mm.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The foregoing conceptions and their accompanying advantages of this invention will become more readily appreciated after being better understood by referring to the following detailed description, in conjunction with the accompanying drawings, wherein:
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DESCRIPTION OF THE PREFERRED EMBODIMENT
(12) The detailed explanation of the present invention is described as follows. The described preferred embodiments are presented for purposes of illustrations and description, and they are not intended to limit the scope of the present invention.
(13) According to an embodiment of the present invention and referring to
(14) It should be noticed that although the carbon fiber rim 10a shown in
(15) In the embodiment shown in
(16) Referring to
(17) Similarly, the heat insulation layer 13 also can be applied to the embodiments shown in
(18) Referring to
(19) Referring to
(20) Referring to
(21) In one embodiment, the heat conduction material can be porous or has mesh structure. For example, it is a metal grid. When thermally molding, resin in the carbon fiber composites of the circular rim 11 is melting with fluidity when heating. Thus, meshes of the metal grid are filled with fluid resin to combine the circular rim 11 and the heat conduction layers 12 together. According to the manufacturing method described above, it not only simplifies the manufacturing process but also obtain greater combination strength of the circular rim 11 and the heat conduction layers 12. Similarly, the heat insulation layer 13 can be integrated together by thermally molding. Resin in the carbon fiber composites of the inorganic fiber composites of the heat insulation layer 13 is melting with fluidity when heating. Thus, meshes of the metal grid are filled with fluid resin to combine the circular rim 11, the heat conduction layers 12 and the heat insulation layer 13 together.
(22) In one embodiment, the manufacturing method of the carbon fiber rim according to the present invention further comprises forming a protective layer on the outside, surface of the carbon fiber rim. The step of forming the protective layer can be accomplished by conventional processes. For example, the protective layer can be simultaneously formed when thermal molding or formed on the outside surface of the carbon fiber rim after the carbon fiber rim is formed by thermal molding.
(23) Referring to
(24) In conclusion, a conduction layer is arranged on the region where the brake pads contact the rim to disperse frictional heat when braking. Besides, a heat insulation layer can be arranged to prevent frictional heat being conducted to the circular rim so as to prevent distortion of the carbon fiber rim.
(25) While the invention is susceptible to various modifications and alternative forms, a specific example thereof has been shown in the drawings and is herein described in detail. It should be understood, however, that the invention is not to be limited to the particular form disclosed, but to the contrary, the invention is to cover all modifications, equivalents, and alternatives falling within the spirit and scope of the appended claims.