HYDRAULIC FITTING
20240326765 ยท 2024-10-03
Inventors
Cpc classification
B60T11/22
PERFORMING OPERATIONS; TRANSPORTING
B60T17/222
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60T11/22
PERFORMING OPERATIONS; TRANSPORTING
B60T11/30
PERFORMING OPERATIONS; TRANSPORTING
B60T17/22
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A hydraulic fitting (10) for a hydraulic transmitter system (100) having a housing (12) in which a fluid reservoir (16), a pressure chamber (20) which is fluidically connected to the fluid reservoir (16) and a venting bore (22, 22) which connects the pressure chamber (20) to a housing surroundings are configured, wherein the venting bore (22, 22) can be closed in a closed position (III) during operation and can be opened to produce a venting position (V), also having an additional fluid connection between the fluid reservoir (16) and the pressure chamber (20) which is interrupted during operation but which can be temporarily opened to permit rapid venting in a rapid venting position (IV) while the venting bore (22) remains closed.
Claims
1. A hydraulic fitting (10) for a hydraulic transmitter system (100) having a housing (12) in which a fluid reservoir (16), a pressure chamber (20) which is fluidically connected to the fluid reservoir (16) and a venting bore (22, 22) which connects the pressure chamber (20) to a housing surroundings are configured, wherein the venting bore (22, 22) can be closed in a closed position (III) during operation and can be opened to produce a venting position (V), also having an additional fluid connection between the fluid reservoir (16) and the pressure chamber (20) which is interrupted during operation, wherein the additional fluid connection between the fluid reservoir (16) and the pressure chamber (20) can be temporarily opened to permit rapid venting in a rapid venting position (IV) while the venting bore (22) remains closed.
2. The hydraulic fitting (10) of claim 1, which has a cylinder bore (18) which surrounds the pressure chamber (20) and in which a piston (32) is displaceably guided.
3. The hydraulic fitting (10) of claim 2, in comprising a supply bore (38) connecting the fluid reservoir (16) to an annular channel (39) of the cylinder bore (18).
4. The hydraulic fitting (10) of claim 2, in which one or more bores (36) are provided in the piston (32), the bores being distributed over a circumference of the piston (32) and feeding into a piston cavity (34) which is open on the pressure chamber (20) side.
5. The hydraulic fitting (10) of claim 1, comprising a closure member (24, 24) to be inserted into the venting bore (22, 22) closes the venting bore (22, 22) in the closed position (III) during operation and can be removed or opened to produce the venting position (V), wherein the closure member (24, 24) is, for example, a screw plug.
6. The hydraulic fitting (10) of claim 1, in which the additional fluid connection comprises a connecting passage (26) between the fluid reservoir (16) and the pressure chamber (20).
7. The hydraulic fitting (10) claim of 6, comprising a closure element (46) which can be actuated from outside is provided, the closure element interrupting the connecting passage (26) during operation and temporarily opening up the connecting passage to produce the rapid venting position (IV).
8. The hydraulic fitting (10) of claim 7, wherein the connecting passage (26) thereof directly connecting the fluid reservoir (16) and the pressure chamber (20).
9. The hydraulic fitting (10) of claim 7, in which the closure element (46) is the closure member (24) of the venting bore (22).
10. The hydraulic fitting (10) of claim 6, wherein the connecting passage (26) thereof connecting the fluid reservoir (16) and the pressure chamber (20) via the venting bore (22) such that in the closed position (III) of the closure member (24) no connection is present between the connecting passage (26) and the pressure chamber (20) and in that, in an intermediate position of the closure member (24) to permit the rapid venting, the additional fluid connection between the fluid reservoir (16) and the pressure chamber (20) via the connecting passage (26) and the venting bore (22) is opened up without being connected to the housing surroundings.
11. A hydraulic transmitter system (100) comprising a hydraulic fitting (10) of claim 1 and an actuating lever (60) which is arranged so as to be operatively connected to the hydraulic fitting (10).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0009]
[0010]
[0011]
[0012]
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
DETAILED DESCRIPTION
[0019] Features which are the same and similar and which are shown in the individual figures are denoted by the same reference signs.
[0020]
[0021] The hydraulic fitting 10 comprises a main body which forms a housing 12 and in which the individual elements of the hydraulic brake system according to the disclosure are configured, as is described in more detail below with reference to
[0022] Additionally a fastening portion 70 is configured on the main body, a fastening of the hydraulic fitting 10, for example to the handlebars of a bicycle or another handlebar-steered vehicle, being possible thereby. The fastening can be carried out in a manner known per se, as shown in the illustrated exemplary embodiment, for example by means of a clamp arrangement 72.
[0023] Moreover, the hydraulic transmitter system 100 comprises an actuating lever 60, such as for example a brake lever, which is articulated to the hydraulic fitting 10, an actuation of the system being able to be carried out thereby as described in more detail hereinafter.
[0024] In particular, a cavity forming a fluid reservoir 16 and a cylinder bore 18 are configured in the housing 12 (see
[0025] A piston 32 is axially displaceably arranged in the cylinder bore 18 and operatively connected to the actuating lever 60 in a manner known per se. The cylinder bore 18 defines a cavity 20 which is filled with hydraulic fluid, such as for example brake fluid. The piston 32 has a piston cavity 34 which is open in the direction of the cavity 20. The piston cavity 34 serves in a manner known per se for receiving a restoring spring (not shown in the figures for reasons of clarity) which is supported on a wall 19 of the cylinder bore 18 opposing the piston 32.
[0026] At one end of the cylinder bore 18 opposing the piston 32, for example as shown on the wall 19, the cylinder bore 18 feeds into a line connecting bore 28 for connecting the hydraulic fitting 10 to a fluid line (not shown), such as for example a brake line or a clutch line. To this end, as visible from the figures, a line connecting member 30 can be inserted into the line connecting bore 28. The line connecting bore 28, however, can also be configured to feed into the cylinder bore 18 at another suitable point in the housing 12.
[0027] A venting bore 22 is also configured in the main body of the housing 12, the venting bore feeding with a feed portion 23 into the pressure chamber 20 of the cylinder bore 18. The venting bore 22 produces a connection between the pressure chamber 20 and the housing surroundings, as illustrated in the open position or venting position V of
[0028] During operation, the venting bore 22 is closed by means of a closure member 24 with an O-ring/sealing ring 25 in a manner known per se, as shown in
[0029] A constituent part of the hydraulic system shown is a fluid connection, which is also known per se, between the cylinder bore 18 (and thus the pressure chamber 20) and the fluid reservoir 16. To this end, for example, a supply bore 38 is provided, the supply bore connecting the fluid reservoir 16 to an annular channel 39 which is configured in the cylinder bore 18. Thus fluid passes from the fluid reservoir 16 into the cylinder bore 18 via the supply bore 38 and the annular channel 39. In the exemplary embodiment shown, the piston 32 is located in the region of the annular channel 39 such that fluid flowing from the supply bore 38 comes into contact with an outer wall of the piston 32 and is introduced between this outer wall of the piston and an inner wall of the cylinder bore 18. Thus the fluid also forms a sliding film for the piston movement. A seal 41 can be inserted into the annular channel 39as shown.
[0030] According to the exemplary embodiment shown, fluid flowing from the fluid reservoir 16 flows via one or more bores 36 distributed over the circumference of the piston 32, so-called snifting bores, into the piston cavity 34 which is open on the pressure chamber side.
[0031] An annular groove 40 which receives a further seal 42 can be provided in the cylinder bore 18, as shown, downstream of the flow of re-suppled fluid through the supply bore 38 and the annular channel 39. A remaining cavity adjacent to the further seal 42 forms a circumferential blind hole 44. Other embodiments of the fluid connection are possible between the fluid reservoir 16 and the pressure chamber 20. Thus, for example, as an alternative to the described embodiment with a fixed seal 42 and the snifting bores 36 in the piston 32, a seal which is movable relative to the cylinder bore can be provided on the piston, during the stroke movement the seal passing over one or more supply bores which are provided in the cylinder wall and which connect the pressure chamber to the fluid reservoir (principle of kinematic reversal).
[0032] According to aspects of the disclosure, a further temporarily openable fluid connection is provided between the cylinder bore 18 and the fluid reservoir 16. In the exemplary embodiment shown, the fluid connection comprises a connecting passage 26 which connects the fluid reservoir 16 via the venting bore 22 to the pressure chamber 20. To this end, the connecting passage 26 feeds therein slightly above a feed portion 23 which connects the venting bore 22 to the pressure chamber 20 and which represents the end of the venting bore 22 on the pressure chamber side.
[0033] As already described above, in the operating position III the venting bore 22 is fully closed for normal operation. As is also shown in
[0034] In the operating position III, a movement of the piston 32 is brought about by actuating the actuating lever 60, whereby a hydraulic pressure is built up, the hydraulic pressure acting in the direction of the hydraulic line (not shown) which is connected via the line connecting member 30. If required (for example with increasing brake pad wear in the case of use in a brake system) fluid can be re-supplied from the fluid reservoir 16 via the fluid connection of the supply bore 38, when the piston 32 during its stroke movement travels back into the resting position with its snifting bores 36 upstream of the further seal 41. In this position, the snifting bores 36 (and thus also the pressure chamber 20) are fluidically connected to the fluid reservoir 16 via the connecting bore 38.
[0035] If air should pass undesirably into the closed hydraulic system, the disclosed hydraulic fitting provides the user with the possibility of a simple and uncomplicated rapid venting. To this end, the closure member 24 is slightly loosened and thus moved into the intermediate position or rapid venting position IV shown in
[0036] The disclosed embodiments of a hydraulic fitting also have the advantage that air, which has collected in an undesirable manner in the above-described blind hole 44 adjacent to the further seal 42, can also be removed by the snifting bores 36 repeatedly passing over the blind hole 44 during the (repeated) reciprocal movement of the piston 32 and can be supplied to the fluid reservoir 16 via the additional fluid connection of the connecting passage 26.
[0037] The rapid venting according to aspects of the disclosure does not replace a standard full venting of the hydraulic system and the filling thereof with hydraulic fluid, since the undesired air is only temporarily stored in the fluid reservoir 16. For standard venting in a manner known per se, the closure member 24 is entirely removed (as shown in
[0038]
[0039]
[0040] To produce the intermediate position according to the disclosure, for the purposes of rapid venting the closure member is sufficiently loosened that the fluid connection is opened up between the fluid reservoir 16 and the pressure chamber 20. To produce the venting position, the closure member 24 is entirely removed and the system can be fully vented via the open connection to the pressure chamber 20 via the connecting passage 26.
[0041]
[0042] In a similar manner to the embodiment of
[0043] To produce the venting position, the closure member 24 is entirely removed and the system can then be fully vented via the open connection to the pressure chamber 20. The connecting passage 26 can be selectively closed or opened for the venting. Venting is possible via the above-described fluid connection, which is present due to the supply bore 38 and the annular channel 39, but is facilitated by an opening of the connecting passage 26 which in this regard also represents an advantage of the disclosed hydraulic fitting.
[0044]
[0045] The embodiment of
[0046] It should be emphasized once again that the venting bore does not necessarily have to provide a direct connection of the pressure chamber to the housing surroundings but a venting of the system is possible due to the conventionally existing fluid connection and is also facilitated by the additional fluid connection according to the disclosure with a venting bore implementing an indirect connection of the pressure chamber to the housing surroundings.
[0047] The disclosed hydraulic fitting can be used in all hydraulic systems in which there is a need for rapid venting according to the disclosure. In particular, the disclosed hydraulic fitting can be used for handlebar-steered vehicles, such as bicycles, motorcycles, and the like, such as for example in open or closed hydraulic brake systems or hydraulic clutch systems. Fields of use other than those described are possible. Design geometries other than those explicitly described are readily apparent to a person skilled in the art within the scope of the inventive principle defined in the claims.
LIST OF REFERENCE SIGNS
[0048] 10 Hydraulic fitting [0049] 12 Housing [0050] 14 Cover element [0051] 15 Screws [0052] 16 Fluid reservoir [0053] 17 Membrane [0054] 18 Cylinder bore [0055] 19 Wall [0056] 20 Pressure chamber [0057] 22 Venting bore to pressure chamber [0058] 22 Venting bore to fluid reservoir [0059] 23 Feed portion [0060] 24 Closure member, closure screw [0061] 24 Closure member, closure screw [0062] 25 O-ring [0063] 25 O-ring [0064] 26 Connecting passage [0065] 28 Line connecting bore [0066] 30 Line connecting member [0067] 32 Piston [0068] 34 Piston cavity [0069] 36 Bores, snifting bores [0070] 38 Supply bore [0071] 39 Annular channel [0072] 40 Annular groove [0073] 41 Seal [0074] 42 Further seal [0075] 44 Blind hole [0076] 46 Closure element [0077] 47 O-ring [0078] 48 Opening [0079] 50 Aligned bore [0080] 52 Lower region [0081] 54 Stop element [0082] 60 Actuating lever, brake lever [0083] 70 Fastening portion [0084] 72 Clamp arrangement [0085] 100 Hydraulic transmitter system [0086] P1 Arrow [0087] P2 Arrow [0088] P3 Arrow [0089] III Closed position or operating position [0090] IV Intermediate position or rapid venting position [0091] V Open position or venting position