Hydraulic System
20190353289 ยท 2019-11-21
Inventors
- Andreas Guender (Ramsthal, DE)
- Jan Lukas Bierod (Bad Camberg, DE)
- Marco Scholz (Burgsinn, DE)
- Ralf Maier (Neuendorf, DE)
- Rene Huettl (Chemnitz, DE)
Cpc classification
F16L39/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L33/2071
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L33/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L41/03
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L37/56
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A hydraulic system has a fluid path which connects two system components fluidically to one another and which comprises a hydraulic hose. It is known to form a fluid path between two components of a hydraulic system, for example between a pump and a control block, by a single hydraulic hose which is designed in accordance with the maximum volume flow and the maximum pressure. A hydraulic hose for large volume flows and high pressures is disproportionately expensive relative to a hydraulic hose for smaller volume flows and, on account of its larger internal and external diameters, has a larger minimum bending radius than a hydraulic hose for smaller volume flows. In order to provide a cost-effective and compact structure, a hydraulic system according to the disclosure has the fluid path formed by at least two hydraulic hoses arranged fluidically parallel to one another.
Claims
1. A hydraulic system, comprising: two system components; and a fluid path which connects the two system components fluidically to one another, the fluid path comprising a hose line, wherein: the fluid path is formed by at least two hose lines arranged fluidically parallel to one another.
2. The hydraulic system according to claim 1, wherein: a throughflow cross section of a first hose line of the at least two hose lines arranged fluidically parallel to one another is identical to a throughflow cross section of a second hose line of the at least two hose lines arranged fluidically parallel to one another.
3. The hydraulic system according to claim 2, wherein the throughflow cross section for all the hose lines arranged fluidically parallel to one another is the same.
4. The hydraulic system according to claim 1, wherein two hose lines arranged fluidically parallel to one another are of different lengths.
5. The hydraulic system according to claim 1, further comprising: an adapter, having: a first connection, on which a first hose line of the at least two hose lines arranged fluidically parallel to one another is fastened; a second connection, on which a second hose line of the at least two hose lines arranged fluidically parallel to one another is fastened; and a third connection, which is connected to a connection of a system component, wherein the first connection, the second connection, and the third connection of the adapter are connected to one another via channels within the adapter.
6. The hydraulic system according to claim 5, wherein the adapter comprises an SAE flange for at least one of its connections.
7. The hydraulic system according to claim 5, wherein: the adapter is an adapter block, and the first connection and the second connection are located in the same connection surface of the adapter.
8. The hydraulic system according to claim 1, wherein: one of the system components has a first connection, on which a first hose line of the at least two hose lines arranged fluidically parallel to one another is fastened, and a second connection, on which a second hose line of the at least two hose lines arranged fluidically parallel to one another is fastened.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The basic design of a hydraulic fluid path between two components of a hydraulic system according to the disclosure and also an adapter for different numbers of hose lines arranged fluidically parallel to one another are illustrated in the drawing. The disclosure will now be explained in more detail with reference to the figures of said drawing, in which:
[0018]
[0019]
[0020]
DETAILED DESCRIPTION
[0021] According to
[0022] The two hose lines 12 and 13 are each connected directly to the system components 10 and 11. For this purpose, an internal channel 14 in a system component 10 or 11 divided up into two branches, which open out, in the form of threaded connections 15, in a connection surface 16 of each system component 10, 11. At their ends, the hose lines 12 and 13 bear threaded fittings 17, which are screwed into the threaded connections 15.
[0023] In the embodiment according to
[0024] A connection surface 24 of the adapter block 20, said connection surface extending between the SAE connection surface and the screw-mounting surface 23, contains a plurality of threaded connections 25, which open out into the central bore of the adapter block 20 and to which the hose lines are connected by way of threaded fittings 17.
[0025] In the embodiment according to
[0026] In the embodiment according to
[0027] In particular high-pressure regions of the system components are connected to one another by the hose lines arranged fluidically parallel to one another, since it is particularly advantageous to replace a thick high-pressure hose with a large throughflow cross section by a plurality of thinner high-pressure hoses with smaller throughflow cross sections, which add up to equal the large throughflow cross section.
LIST OF REFERENCE SIGNS
[0028] 10 first system component
[0029] 11 second system component
[0030] 12 hose line
[0031] 13 hose line
[0032] 14 internal channel in 10 or 11
[0033] 15 threaded connections in 10 and 11
[0034] 16 connection surface on 10 or 11
[0035] 17 threaded fittings
[0036] 20 adapter
[0037] 21 system component
[0038] 22 threaded bores
[0039] 23 screw-mounting surface
[0040] 24 connection surface of 20
[0041] 25 threaded connections on 20
[0042] 26 hose line