Bicycle crankset with eccentric chainring
10053185 ยท 2018-08-21
Assignee
Inventors
Cpc classification
B62M2009/002
PERFORMING OPERATIONS; TRANSPORTING
B62M3/06
PERFORMING OPERATIONS; TRANSPORTING
B62M1/36
PERFORMING OPERATIONS; TRANSPORTING
B62M9/085
PERFORMING OPERATIONS; TRANSPORTING
International classification
B62M9/08
PERFORMING OPERATIONS; TRANSPORTING
B62M3/06
PERFORMING OPERATIONS; TRANSPORTING
B62M1/36
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A bicycle crankset, which is adapted to connect to a chain, includes a chainring and a crankarm. The chainring has a plurality of teeth, a plurality of connecting bores of first noncircular motion path, and a plurality of connecting bores of circular motion path. The crankarm has a plurality of connecting arms to be selected to secured to the connecting bores of first noncircular motion path or the connecting bores of circular motion path. The chainring provides a first noncircular path of motion when the connecting arms of the crankarm are secured to the connecting bores of first noncircular motion path, and chainring provides a circular path of motion when the connecting arms of the crankarm are secured to the connecting bores of circular motion path.
Claims
1. A bicycle crankset, which is adapted to connect to a chain, comprises: a chainring having a round circumference and a plurality of teeth on the circumference to engage the chain, wherein the chainring has a chainring center, which is a center of the circumference, and a connecting portion; the chainring having a plurality of connecting bores of first noncircular motion path on the connecting portion, wherein the connecting bores of first noncircular motion path have a center of rotation, and the center of rotation of the connecting bores of first noncircular motion path is kept a distance from the chainring center; the chainring having a plurality of connecting bores of circular motion path on the connecting portion, wherein the connecting bores of circular motion path have a center of rotation, and a location of the center of rotation of the connecting bores of circular motion path is the same as the chairing center; and a crankarm having a plurality of connecting arms at an end thereof, and an axial bore at the end having the connecting arms, wherein the crankarm has a center of rotation at a center of the axial bore, each of the connecting arms has a bore, and distances between center of the bores and the center of rotation of the crankarm are the same; wherein the connecting arms of the crankarm are selected to be secured to the connecting bores of first noncircular motion path or the connecting bores of circular motion path of the chainring; the chainring provides a first noncircular path of motion when the connecting arms of the crankarm are secured to the connecting bores of first noncircular motion path, and chainring provides a circular path of motion when the connecting arms of the crankarm are secured to the connecting bores of circular motion path.
2. The bicycle crankset of claim 1, wherein the chainring having a plurality of connecting bores of second noncircular motion path on the connecting portion, wherein the connecting bores of second noncircular motion path have a center of rotation, and the center of rotation of the connecting bores of second noncircular motion path is kept a distance from the chainring center, and also kept a distance from the center of rotation of the connecting bores of first noncircular motion path; the chainring provides a second noncircular path of motion when the connecting arms of the crankarm are selected to be secured to the connecting bores of second noncircular motion path.
3. The bicycle crankset of claim 1, wherein a path of the first noncircular path of motion has a semi-major axis and a semi-minor axis, and a ratio of a length of the semi-major axis and a length of the semi-minor axis is in a range 1.1 and 1.3.
4. The bicycle crankset of claim 1, wherein an included angle between the crankarm and a semi-major axis of the first noncircular path of motion is in a range between 75 degrees and 120 degrees.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
(1) The present invention will be best understood by referring to the following detailed description of some illustrative embodiments in conjunction with the accompanying drawings, in which
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
DETAILED DESCRIPTION OF THE INVENTION
(11)
(12) The chainring 10 is provided with a plurality of connecting bores 20 of first noncircular motion path on the connecting portion 18. In order to provide a noncircular path of motion, distances between centers of the connecting bores 20 of first noncircular motion path and the chainring center 16 are different. In other words, the connecting bores 20 of first noncircular motion path has a center of rotation, and the center of rotation of the connecting bores 20 of first noncircular motion path is kept a distance from the chainring center 16.
(13) The chainring 10 is provided with a plurality of connecting bores 22 of second noncircular motion path on the connecting portion 18. In order to provide another noncircular path of motion, distances between centers of the connecting bores 22 of second noncircular motion path and the chainring center 16 are different. In other words, the connecting bores 22 of second noncircular motion path has a center of rotation, and the center of rotation of the connecting bores 22 of second noncircular motion path is kept a distance from the chainring center 16, and also kept a distance from the center of rotation of the connecting bores 20 of first noncircular motion path.
(14) The chainring 10 is provided with a plurality of connecting bores 24 of circular motion path on the connecting portion 18. The connecting bores 24 are on a circumference, and a center of the circumference is the same as the chainring center 16.
(15) As shown in
(16) As shown in
(17) The connecting arms 34 of the crankarm 30 are selected to be secured to the connecting bores 20 of first noncircular motion path, the connecting bores 22 of second noncircular motion path, or the connecting bores 24 of circular motion path. A chain 40 engages the teeth 14 of the chainring 10. A bracket axle has an end connected to the axial bore 38 of the crankarm 30, and an opposite end is connected to another crankarm (not shown). A rider steps the crankarm 30 to rotate the chainring 10.
(18) As shown in
(19) As shown in
(20) In comparison of
(21) As shown in
(22) In conclusion, a rider may change the path of motion of the chainring 10 to change the torque output of the crankset according to different requirements by changing the connecting arms 34 of the crankarm 30 to be secured to different sets of connecting bores 20, 22, 24.
(23)
(24) In conclusion, the present invention provides the eccentric distance 56 to change the circular path of motion 20 into the eccentric path of motion 52, and uses the eccentric path of motion 52 to simulate the elliptical path of motion 54. Therefore, we may define that the eccentric path of motion 52 has a semi-major axis and a semi-minor axis like the elliptical path of motion 54. A length 58 of the semi-major axis is the longest distance between the center of rotation and the eccentric path of motion 52, and a length 60 of the semi-minor axis is the shortest distance between the center of rotation and the eccentric path of motion 52. A ratio of the length 58 of the semi-major axis and the length 60 of the semi-minor axis is in a range 1.1 and 1.3, and a preferred ratio is 1.215.
(25) Changing a location of the crankarm 30 secured on the chainring 10 may change a path of moth of the chainring 10, and furthermore, it will change an included angle between the crankarm 30 and the semi-major axis of the path of motion as well.
(26) The present invention set that a ratio of the length 58 of the semi-major axis and the length 60 of the semi-minor axis of the noncircular path of motion is in a range 1.1 and 1.3, and the included angle between the crankarm 30 and the semi-major axis of the noncircular path of motion is in a range between 75 degrees and 120 degrees. It may reduce the loading of the rider's knees. Besides, the eccentric path of motion 52 has a smooth change of radius of curvature to reduce the unbalance condition when the rider is stepping the pedals. Therefore, the present invention may provide various path of motion of the chainring 10 to provide the rider a balance, stable, and efficient cycling.
(27) It must be pointed out that the embodiments described above are only some preferred embodiments of the present invention. All equivalent structures which employ the concepts disclosed in this specification and the appended claims should fall within the scope of the present invention.