The present invention refers to an apparatus for the control of brakes, in bicycles and the like, to be used, in particular, for disc brakes mounted on bicycles
It is known that the action exerted upon the brake's lever is transmitted to a calliper acting on the disc through a hydraulic connection associated with a pump to urge the same calliper acting on the disc.
A drawback of the brake-controlling devices is due the fact that the brake pump, with relevant accessories, is applied to the handlebar, thereby constituting a separate element. This characteristic may result unsuitable owing to the fact that the handlebar has larger dimensions, the brake pump can be damaged by possible strokes, and may hurt the user in case of falls.
The object of the present invention is to overcome the above drawbacks.
This result has been achieved, according to the invention, by adopting the idea of making an apparatus having the characteristics disclosed in the claim 1. Further characteristics being set forth in the dependent claims.
The advantages of the present invention are that the apparatus has extremely limited overall dimensions and, therefore, gives the handlebar a greater compactness; that the presence of a hydraulic brake makes it possible to use the levers originally present on the bicycle, that is, those for brakes operated only by a cable; that there are no protruding parts likely to be damaged or providing a danger for the cyclist; that a more attractive appearance is conferred to the handlebar; that the braking maintains optimal performance; that the apparatus keeps its characteristics unchanged also after a prolonged use.
These and other advantages and characteristics of the invention will be best understood by anyone skilled in the art from a reading of the following description in conjunction with the attached drawings given as a practical exemplification of the invention, but not to be considered in a limitative sense, wherein:
In its general form, the basic characteristic of an apparatus for the control of brakes according to the invention, is that the said apparatus is held within a portion of the handlebar, or a part associated therewith such as, for example, a connecting lug or other similar elements.
Referring in particular to
In particular, the lug 3 has first clamping means 30, 31 which allow fixing the apparatus 1 to the body of the handlebar 2, and second clamping means 32, 33 to be fixed to the steering stem 99 to be inserted into the sleeve. The clamping means consists of clamps 30 and 32 made up of two bodies joined by respective screws 31 and 33 in a manner known per se.
Provided inside the body of the lug 3 is a reservoir 8 for the oil of the hydraulic circuit operating the brake. In particular, the reservoir 8 is covered by a membrane 80 which is, in turn, covered by a lid 82 fixed by a relevant frame 81 to the body of the lug 3. The reservoir 8, via a conduit 88, is connected to the a chamber wherein there is a piston 6 for which a stop element 76 is provided. The sealing of the piston 6 is also ensured by O-ring gaskets having, respectively, oil-sealing 71, oil-stuffing 72, and counteracting 73 functions, the latter gasket being in contact with a spring 66.
The operation of the apparatus 1 is accomplished by actuating a lever 44 (shown schematically only) provided on the handlebar and connected to the apparatus by a sheath 4 which houses the relevant cable 5. One end of the cable 5 is attached to the lever 44, while the other end is fixed to the apparatus 1 in correspondence of two screw elements 50 being accessible via the passage 55, as more clearly shown in
As the cable is fixed in correspondence of the apparatus 1, the actuation of the lever 44 causes the displacement of the sheath 4 in the direction of arrow F; in this way, the bush 40, formed in the end of the sheath on the side of the apparatus 1, goes into abutment against the piston 6 causing the latter to be displaced in the same direction in order to push the oil through the outlet 9 connected to the hydraulic tube which leads to the brake's calliper. The presence of the spring 66, which is loaded by the action of the piston 6, allows the latter to return to the original position, that is, in the stand-by condition in which the brake's calliper is inoperative.
Shown more clearly in
In the example illustrated in
In
Again in this embodiment, the actuation of the lever 44 causes the displacement F of the sheath 4 and the consequent movement of the piston 6 connected with the bush 40 of the sheath 4, a snap ring 74 for the piston 6 being provided in correspondence of said bush. The piston 6, likewise in the previous example, pushes the oil of the braking circuit, via a conduit not shown, towards the brake's calliper. The spring 66 brings the apparatus back to the initial position when stopping the action exerted on the lever 44.
In the example of
Also in this example, the oil reservoir (which will likewise be integrated in the handlebar) and the connecting conduit with the calliper have not been shown; besides, the drawing relates to one of the two brakes only, but is applicable to both.
Practically, all the construction details may vary in any equivalent way as far as the shape, dimensions, elements disposition, nature of the used materials are concerned, without nevertheless departing from the scope of the adopted solution idea and, thereby, remaining within the limits of the protection granted to the present patent.
Number | Date | Country | Kind |
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FI2003A0044 | Feb 2003 | IT | national |
Number | Name | Date | Kind |
---|---|---|---|
3554334 | Shimano et al. | Jan 1971 | A |
3729070 | Le Marchand | Apr 1973 | A |
4032200 | Farr | Jun 1977 | A |
4391353 | Mathauser | Jul 1983 | A |
4501340 | Yoshida | Feb 1985 | A |
4771649 | Modolo | Sep 1988 | A |
4896753 | Sule | Jan 1990 | A |
5099958 | D'Aluisio | Mar 1992 | A |
5372408 | Tsuchida et al. | Dec 1994 | A |
5632362 | Leitner | May 1997 | A |
6502675 | Andrus | Jan 2003 | B1 |
6805372 | Gueugneaud | Oct 2004 | B2 |
Number | Date | Country | |
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20040163897 A1 | Aug 2004 | US |