1. Field of the Invention
This invention generally relates to a bicycle component positioning device. More specifically, the present invention relates to a bicycle component positioning device for a bicycle component such as a derailleur or shifter, which has the same relatively easy action when moved in two opposite directions, yet is reliably retained.
2. Background Information
Bicycling is becoming an increasingly more popular form of recreation as well as a means of transportation. Moreover, bicycling has become a very popular competitive sport for both amateurs and professionals. Whether the bicycle is used for recreation, transportation or competition, the bicycle industry is constantly improving the various components of the bicycle such as derailleurs and shifters.
A bicycle derailleur basically includes a base, a chain guide and a linkage coupled between the base and the chain guide to move the chain guide between various shift positions. The base is fixed to the bicycle frame. A spring is arranged to bias the chain guide in one lateral direction relative to the base. A control cable is used to move the chain guide against the biasing force of the spring when pulled, and to allow the bias force of the spring to move the chain guide in an opposite direction when the cable is released. A shifter is attached to the cable to selectively pull/release the cable to move the chain guide laterally back and forth respectively. With these conventional derailleurs, shifting is not always as smooth and reliable as desired by some riders. Moreover, the control cable is always held in tension by the spring, which leads to continued cable stretching. Continued cable stretching leads to frequent adjustment of the derailleur and/or shifter or minor misalignment of the derailleur. Furthermore, conventional derailleurs can be relatively complicated and expensive to manufacture, assemble, to mount to the bicycle and/or adjust.
The shifter for controlling conventional derailleurs typically utilize one or more levers coupled to a winding member to selectively pull/release the cable. The winding member is retained in various shift positions by a retaining structure, friction or the like. Optionally, some shifters further include an indexing mechanism with a plurality of positions corresponding to the number of shift positions. In any case, a sufficient retaining force must be applied to the winding member to prevent undesired movement of the chain guide of the derailleur due to the biasing force of the derailleur spring. Thus, a relatively strong retaining force must be provided, which can be relatively difficult to overcome when moving the lever(s). Additionally, when the shifting device is actuated to wind the cable, an even stronger force is often required than during an unwinding operating due to the derailleur biasing member. In either case, the shifting action(s) may feel awkward to some individuals. Also, with these conventional shifters, shifting is not always as smooth and reliable as desired by some riders. Moreover, conventional shifters can be relatively complicated and expensive to manufacture, assemble, to mount to the bicycle and/or adjust.
In view of the above, it will be apparent to those skilled in the art from this disclosure that there exists a need for an improved bicycle component positioning device. This invention addresses this need in the art as well as other needs, which will become apparent to those skilled in the art from this disclosure.
One object of the present invention is to provide a bicycle component positioning device, which moves smoothly and reliably, yet is reliably retained in different positions.
Another object of the present invention is to provide a bicycle component positioning device, which has a similar relatively light action when moved in opposite directions.
Another object of the present invention is to provide a bicycle component positioning device, which is relatively simple and inexpensive to manufacture and/or assemble.
The foregoing objects can basically be attained by providing a bicycle component positioning device, which comprises a fixed member, an operating member and a positioning mechanism. The operating member is movably coupled to the fixed member to move between at least two operating positions. The operating member has an input portion and an output portion. The positioning mechanism is operatively disposed between the operating member and the fixed member. The positioning mechanism includes a positioning member that is movable between a first position in which the positioning member is engaged with the fixed member and a second position in which the positioning member is disengaged from the fixed member. The positioning member is held in engagement with the fixed member in the first position by the input portion when the input portion is in at least one of the operating positions. The positioning member is movable from the first position to the second position upon movement of the input portion from at least one of the operating positions.
These and other objects, features, aspects and advantages of the present invention will become apparent to those skilled in the art from the following detailed description, which, taken in conjunction with the annexed drawings, discloses preferred embodiments of the present invention.
Referring now to the attached drawings which form a part of this original disclosure:
Selected embodiments of the present invention will now be explained with reference to the drawings. It will be apparent to those skilled in the art from this disclosure that the following descriptions of the embodiments of the present invention are provided for illustration only and not for the purpose of limiting the invention as defined by the appended claims and their equivalents.
Referring initially to
The front and rear derailleurs 12 and 18 are attached to the frame 11 of the bicycle 10, while the front and rear shifters 14F and 14R are attached to the handlebar 13. The handlebar 13 is fixedly coupled to the front fork, which is pivotally attached to the frame 11 to steer the bicycle 10 in a conventional manner. The front and rear shift control cables 16F and 16R are routed along the frame 11 between the front and rear shifters 14F and 14R, and the front and rear derailleurs 12 and 18, respectively. The pair of front shift cables 16F are conventional Bowden-type cables with each having an outer casing 16a and an inner wire 16b. Similarly, the pair of rear shift control cables 16R are conventional Bowden-type cables with each having an outer casing 16a and an inner wire 16b.
The bicycle 10 is conventional, except for the front and rear shifting systems. Accordingly, the bicycle 10 and its various components will not be discussed and/or illustrated in detail herein, except as related to the front and rear shifting systems of the present invention. Moreover, it will be apparent to those skilled in the bicycle art from this disclosure that various modifications can be made to the bicycle 10 and its components without departing from the present invention.
Referring initially to
The front derailleur 12 is relatively conventional, except for the positioning device 22. Accordingly, the front derailleur 12 will not be explained and/or illustrated in detail herein, except as related to the positioning device 22 of the present invention. Portions of the fixing body 20, the positioning device 22, the support link 24 and the chain guide 26 constitute parts of a four bar linkage assembly that is relatively wide. The four bar linkage assembly is preferably defined by four pivot axes A, B, C and D as best seen in
Referring to
The fixing body 20 is preferably located beneath the chain guide 26 (at least below the top portion of the chain guide 26 that is coupled to the positioning device 22 and the support link 24) in this embodiment. The fixing body 20 basically includes a first clamping portion 30, a second clamping portion 32, a pivot pin 34 and a fastener 36, as best seen in
The first clamping portion 30 supports the chain guide 26 via the positioning device 22 and the support link 24. Specifically, the first clamping portion 30 has first and second threaded bores 30a and 30b which are configured to attach parts of the positioning device 22 therein, as explained below. The support link 24 is pivotally coupled to the first clamping portion 30 and the chain guide 26 using conventional pivot pins or the like in a conventional manner.
Referring now to
The main mounting axle 40 is fixed to the first clamping portion 30. Specifically, the main mounting axle 40 is threadedly attached in the mounting hole 30a of the first clamping portion 30. The housing member 42 is supported on the main mounting axle 40 and attached to the first clamping portion 30 via at least one additional fastener 41 such as a bolt attached in the hole 30b so that the housing member 42 is non-movably fixed to the first clamping portion 30 of the fixing body 20. Thus, the housing member 42, the main mounting axle 40 and the at least one additional fastener 41 constitute parts of a fixed member that is non-movably fixed to the fixing body 20 in accordance with the present invention, as best understood from
The wire winding member 44, the retaining part 46 and the linkage part 48 are all pivotally supported on the main mounting axle 40 for movement about the pivot axis A. The wire winding member 44, the retaining part 46 and the linkage part 48 are connected together to selectively move the chain guide 26 between the at least two (three illustrated herein) shift positions in response to movement of the front shift control cables 16F due to actuation of the front shifter 14F. The wire winding member 44, the retaining part 46 and the linkage part 48 are not rotationally biased relative to the fixed parts of the front derailleur 12 about the pivot axis A by a biasing member. Thus, the wire winding member 44, the retaining part 46 and the linkage part 48 constitute parts of an operating member that is movably coupled to the main mounting axle 40 and the housing member 42 to move between at least two operating positions (three illustrated herein) in accordance with the present invention, as explained below.
The positioning mechanism 50 is operatively disposed between the housing member 42, the wire operating member 44 and the retaining part 46 to hold these parts in a number of operating positions (at least two) corresponding to the number of shift positions of the chain guide 26, as best understood from
Referring to
The threaded section 40a is received in the threaded bore 30a of the first clamping portion. The tool engagement section 40b is used to rotate the main mounting axle during attachment to the first clamping portion 30, and also spaces the housing member 42 from the first clamping portion 30. The support section 40c pivotally supports the housing member 42, the wire operating member 44, the retaining part 46 and the linkage part 48. However, the housing member 42 is non-movable relative to the first clamping portion 30 due to the at least one fastener 41. Preferably, an additional spacing washer is disposed on the at least one fastener 41 between the first clamping portion 30 and the housing member 42. The retaining section 40d has an annular groove, which receives a retaining clip or the like to retain the wire operating member 44, the retaining part 46 and the linkage part 48 on the support section 40c.
Referring to
The base plate 42a has holes formed therein for receiving the main mounting axle 40 and the at least one fastener 41. The generally semi-annular wall 42b extends in a direction parallel to the pivot axis A from the base plate 42a. The arc shaped recess 42c receives an arc-shaped engagement member 43 (
Referring to
The actuating projections 44b and the hold release part 44d extend from one axial side of the body portion 44a, while the cable attachment projection 44c extends from the opposite axial side of the body portion 44. The cable attachment projection 44c has a threaded hole that receives a fastener 45a such as a bolt in order to attach an L-shaped cable attachment plate 45b to the cable attachment projection 44c. The L-shaped cable attachment plate 45b holds the inner wires 16b of the front shift cables 16F in the wire winding grooves 44e as best understood from
The inner wires 16b extend in opposite circumferential directions from the L-shaped cable attachment plate 45b in the wire winding grooves 44e around the main body portion 44a and upwardly along the seat tube 11a, as seen in
The actuating projections 44b are circumferentially spaced from each other about the pivot axis A. The actuating projections 44b are arranged and configured to contact the retaining part 46 after the wire operating member 44 moves a predetermined amount about the pivot axis A from the operating positions. The retaining part 46 rotates with the wire operating member 44 after the wire operating member 44 moves the predetermined amount about the pivot axis A from the operating positions. The wire operating member 44 is preferably movable back and forth in opposite rotational directions. The actuating projections 44b constitute parts of an actuating portion of the input portion of the positioning device 22 in accordance with the present invention.
The hold/release part 44d of the wire operating member 44 disengages the positioning mechanism 50 when the wire operating member 44 is moved the predetermined amount about the pivot axis A from the operating positions, as explained below. The hold/release part 44d is preferably circumferentially equally spaced from the actuating projections 44b such that predetermined amount about the pivot axis A from the operating positions is the same in both rotational directions. The hold/release part 44d has an arc-shaped configuration with a pair of end projections 44f extending radially outwardly therefrom, and a blind bore 44g extending radially inwardly from an outer surface of the hold/release part 44d. The hold/release part is configured and arranged to selectively maintain/release the positioning mechanism 50 to prevent/allow rotation of the retaining part 46, as explained below.
Referring now to
The actuating projections 44b of the wire operating member 44 selectively contact the abutment surfaces 46a such that the wire operating member 44 moves the retaining part 46 after a predetermined amount of relative rotation therebetween (i.e. in each rotational direction). The adjustment protrusion 46b contacts a pair of screws 53 that are attached to the linkage part 48. Thus, the relative rotational positions of the retaining part 46 and the linkage part 48 can be adjusted by rotating the screws 53. The adjustment protrusion 46b and the screws 53 constitute parts of the adjustment mechanism 52. Normally, the screws 53 are tightened so that the retaining part 46 and the linkage part 48 are not rotationally movable relative to each other. However, when the relative positions of the retaining part 46 and the linkage part 48 need to be adjusted, one of the screws 53 is loosened, and the other screw 53 is tightened a corresponding amount.
The positioning recess 46d receives the hold/release part 44d therein with a pair of biasing elements (springs) 47 disposed on opposite circumferential sides of the hold/release 44d to normally maintain the retaining part 46 in a stationary intermediate position between two end positions of the limited rotational movement relative to the wire operating member 44, as seen in
Referring now to
The adjustment protrusion 46b is disposed between the adjustment flanges 48c such that the screws 53 can be threadedly attached to the adjustment flanges 48c and contact the adjustment protrusion 46b. Thus, when the retaining part 46 rotates about the pivot axis A, the linkage part 48 rotates about the pivot axis A to move the chain guide 26. The retaining part 46 and the linkage part 48 constitute two parts of an output portion of the operating member. The retaining part 46 and the linkage part 48 have respective portions disposed on the main pivot axle 40 (the pivot structure) which define openings and together constitute an output mounting part. The adjustment flanges 48c together with the adjustment protrusion 46b and the screws 53 constitute parts of the adjustment mechanism 52 between the retaining part 46 and the linkage part 48.
Referring to
Referring to
However, when the wire operating member 44 pivots a predetermined amount relative to the retaining part 46, only one of the pins 54c is held, while the other pin 54c is movable in its respective slot 46c. Thus, when this occurs, the positioning member 54 can move to a second position disengaged from the engagement member 43. In other words, the positioning member 54 selectively pivots about one of the pins 54c such that the other pin 54c slides in its respective slot 46c when the positioning member 54 moves from the first position to the second position. Such movement of the positioning member 54 from the first position to the second position is illustrated in
Referring again to
The link plates 60 and 62 are pivotally coupled to the first clamping portion 30 of the fixing body 20 via conventional pivot pins or the like in a conventional manner. The link plates 60 and 62 are also pivotally coupled to the chain guide 26 via conventional pivot pins or the like in a conventional manner, in order to pivotally support the chain guide 26. The link plate 60 is provided with a fan-shaped end that selectively engages adjustment screws 70 and 72 for limiting movement of chain guide 26 in its extended most position and its retracted most position, respectively, in a conventional manner. The adjustment screws 70 and 72 are threadedly attached to the chain guide 26. Thus, the adjustment screw 70 is a high adjustment screw that limits outward movement of the chain guide 26 in its (top) extended most position, while the adjustment screw 72 is a low adjustment screw that limits inward movement of the chain guide 26 in its (low) retracted most position.
Referring still to
Referring now to
The rear derailleur 18 is relatively conventional, except for the positioning device 122. Accordingly, the rear derailleur 18 will not be explained and/or illustrated in detail herein, except as related to the positioning device 122 of the present invention. Moreover, the positioning device 122 is identical to the positioning device 22 of the front derailleur 12, except the positioning device 122 utilizes a modified engagement member 143 in place of the engagement member 43 of the positioning device 22. Accordingly, the positioning device 122 will not be discussed and/or illustrated in detail herein. However, it will be apparent to those skilled in the art from this disclosure that the descriptions and illustrations of the positioning device 22 also apply to the positioning device 122, except as explained and/or illustrated herein. Furthermore, it will be apparent to those skilled in the art from this disclosure that parts of the positioning device 122 that are identical to the positioning mechanism 22 can be identified with identical reference numerals for the sake of convenience.
The engagement member 143 is identical to the engagement member 43 of the front derailleur 12, except for the number of operating (shift) positions has been increased to accommodate the increased number of rear sprockets RS. Thus, the engagement member 143 has more notches 143a than the engagement member 43. In any case, the rear derailleur chain guide 128 is operatively coupled to the positioning device 122 such that when parts of the positioning device 122 are moved between the various operating positions in a manner similar to the first embodiment, the linkage part 48 of the positioning device 122 will move the links 124 about their pivot axes on the base member 120 to move the chain guide 128 between an extended position and a retracted position. Movement of the chain guide 128 caused by movement of the links 124 is well known in the art, and thus, will not be explained and/or illustrated in further detail herein for the sake of brevity.
Referring now to
In view of the similarities between the positioning devices 222F and 222R and the positioning devices 22 and 122, respectively, the positioning devices 222F and 222R will not be discussed and/or illustrated in detail herein. However, it will be apparent to those skilled in the art from this disclosure that the descriptions and illustrations of the positioning devices 22 and 122 also apply to the positioning devices 222F and 222R, respectively, except as explained and/or illustrated herein. Furthermore, it will be apparent to those skilled in the art from this disclosure that parts of the positioning devices 222F and 222R that are identical to the positioning devices 22 and 122, respectively, can be identified with identical reference numerals for the sake of convenience. In any event, the shift control levers SL are operatively coupled to the wire operating members 44 in order to move the wire operating members 44 from the operating positions in response to rider actuation of the shift control levers SL.
In understanding the scope of the present invention, the term “comprising” and its derivatives, as used herein, are intended to be open ended terms that specify the presence of the stated features, elements, components, groups, integers, and/or steps, but do not exclude the presence of other unstated features, elements, components, groups, integers and/or steps. The foregoing also applies to words having similar meanings such as the terms, “including”, “having” and their derivatives. Also, the terms “part,” “section,” “portion,” “member” or “element” when used in the singular can have the dual meaning of a single part or a plurality of parts. As used herein to describe the present invention, the following directional terms “forward, rearward, above, downward, vertical, horizontal, below and transverse” as well as any other similar directional terms refer to those directions of a bicycle equipped with the present invention. Accordingly, these terms, as utilized to describe the present invention should be interpreted relative to a bicycle equipped with the present invention as used in the normal riding position. Finally, terms of degree such as “substantially”, “about” and “approximately” as used herein mean a reasonable amount of deviation of the modified term such that the end result is not significantly changed.
While only selected embodiments have been chosen to illustrate the present invention, it will be apparent to those skilled in the art from this disclosure that various changes and modifications can be made herein without departing from the scope of the invention as defined in the appended claims. Furthermore, the foregoing descriptions of the embodiments according to the present invention are provided for illustration only, and not for the purpose of limiting the invention as defined by the appended claims and their equivalents.
Number | Name | Date | Kind |
---|---|---|---|
2431513 | Schwinn | Nov 1947 | A |
3481217 | Maeda Tetsuo | Dec 1969 | A |
3890847 | Dian | Jun 1975 | A |
4106356 | Nagano et al. | Aug 1978 | A |
4132119 | Nagano et al. | Jan 1979 | A |
4155270 | Juy | May 1979 | A |
4185510 | Juy | Jan 1980 | A |
4232564 | Yamasaki | Nov 1980 | A |
5012692 | Nagano | May 1991 | A |
5044213 | Nagano | Sep 1991 | A |
5095768 | Nagano | Mar 1992 | A |
5102372 | Patterson et al. | Apr 1992 | A |
5222412 | Nagano | Jun 1993 | A |
5588331 | Huang et al. | Dec 1996 | A |
5666859 | Arbeiter et al. | Sep 1997 | A |
5730030 | Masui | Mar 1998 | A |
5755139 | Kojima | May 1998 | A |
5799542 | Yamane | Sep 1998 | A |
5921139 | Yamane | Jul 1999 | A |
6021688 | Chang | Feb 2000 | A |
6066057 | Nakamura et al. | May 2000 | A |
6135906 | Ichida | Oct 2000 | A |
6145407 | Rottmann | Nov 2000 | A |
6209413 | Chang | Apr 2001 | B1 |
6467368 | Feng et al. | Oct 2002 | B1 |
6553860 | Blaschke | Apr 2003 | B2 |
6644143 | Feng et al. | Nov 2003 | B2 |
6810764 | Chen | Nov 2004 | B2 |
6862948 | Calendrille, Jr. | Mar 2005 | B1 |
6877393 | Takachi | Apr 2005 | B2 |
6993995 | Fujii | Feb 2006 | B2 |
20020112559 | Liu | Aug 2002 | A1 |
20020144566 | Liu et al. | Oct 2002 | A1 |
20040005947 | Shahana et al. | Jan 2004 | A1 |
20040069089 | Chen | Apr 2004 | A1 |
20040261566 | Feng | Dec 2004 | A1 |
20050034554 | Hou | Feb 2005 | A1 |
20050193856 | Dal Pra et al. | Sep 2005 | A1 |
20060053941 | Dal Pra et al. | Mar 2006 | A1 |
20060096404 | Wessel et al. | May 2006 | A1 |
20060130602 | Kawakami | Jun 2006 | A1 |
20060207375 | Jordan et al. | Sep 2006 | A1 |
20060260427 | Tsumiyama | Nov 2006 | A1 |
20070017316 | Tsumiyama | Jan 2007 | A1 |
Number | Date | Country |
---|---|---|
196 13 575 | Oct 1997 | DE |
1 040 995 | Oct 2000 | EP |
1 095 847 | May 2001 | EP |
2 342 887 | Sep 1977 | FR |
602 711 | Jun 1948 | GB |
2 099 961 | Dec 1982 | GB |
48-37835 | Jun 1973 | JP |
51-18046 | Feb 1976 | JP |
51-28934 | Mar 1976 | JP |
51-43541 | Apr 1976 | JP |
51-50141 | May 1976 | JP |
52-15033 | Feb 1977 | JP |
53-98644 | Aug 1978 | JP |
54-15241 | Feb 1979 | JP |
55-25693 | Feb 1980 | JP |
61-103283 | Jul 1986 | JP |
96028338 | Sep 1996 | JP |
11-78577 | Mar 1999 | JP |
Entry |
---|
European Search Report of corresponding EP Application No. 07 020 887.1 dated Aug. 2, 2010. |
Number | Date | Country | |
---|---|---|---|
20080190234 A1 | Aug 2008 | US |