Hydraulic Machine, Hydraulic Assembly having the Hydraulic Machine, and Hydraulic Axle having the Hydraulic Machine
20200340460 ยท 2020-10-29
Inventors
- Andreas Guender (Ramsthal, DE)
- Jan Lukas Bierod (Bad Camberg, DE)
- Johannes Schwacke (Bad Orb, DE)
- Saskia Ryznar (Marktheidenfeld, DE)
- Oleg Stefanjuk (Partenstein, DE)
- Marco Scholz (Burgsinn, DE)
- Emil Hanauer (Abtswind, DE)
- Rene Huettl (Chemnitz, DE)
Cpc classification
F04B1/2014
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B53/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B1/324
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B1/2042
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03C1/0636
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B1/2021
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04B1/2021
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A hydraulic machine includes a housing interior space and a group of hydrostatic working chambers which are mounted in said housing interior space so as to be rotatable about an axis of rotation and which, as the group rotates, are connectable alternately to a high pressure and to a low pressure of the hydraulic machine and exhibit leakage into the housing interior space. A heat exchanger device is accommodated in the housing interior space. The hydraulic machine may be associated with a hydraulic assembly and a hydraulic axle.
Claims
1. A hydraulic machine comprising: a housing interior; a group of hydrostatic working chambers mounted in the housing interior so as to be rotatable about an axis of rotation, said working chambers configured such that, upon rotation of the group, said working chambers are connectable in an alternating manner to a high pressure and to a low pressure of the hydraulic machine, the working chambers having a leakage into the housing interior; and a heat exchanger device is accommodated in the housing interior.
2. The hydraulic machine as claimed in claim 1, wherein the heat exchanger device, at least in sections, occupies an annular chamber defined between a housing inner wall and hydrostatic cylinder/piston units bounding the working chambers.
3. The hydraulic machine as claimed in claim 2, wherein the annular chamber extends in a direction of an axis of rotation and around the axis of rotation.
4. The hydraulic machine as claimed in claim 1, wherein an axis of rotation is engaged around by the heat exchanger device in one of an annular and a polygonal manner.
5. The hydraulic machine as claimed in claim 1, wherein a wall of the heat exchanger device is formed by a tube.
6. The hydraulic machine as claimed in claim 1, wherein a fluid is arranged in a single phase or in two phases in the heat exchanger device.
7. The hydraulic machine as claimed in claim 1, wherein the heat exchanger device extends, at least in sections, helically or spirally around an axis of rotation and in a direction of the axis of rotation.
8. The hydraulic machine as claimed in claim 1, wherein the heat exchanger device extends, at least in sections, in an undulating manner around an axis of rotation and in a direction of the axis of rotation.
9. The hydraulic machine as claimed in claim 1, wherein the heat exchanger device extends with at least two windings or layers in a direction radially with respect to an axis of rotation.
10. The hydraulic machine as claimed in claim 1, further comprising: a housing which defines the housing interior, the housing having a first side configured such that: a drive shaft which is rotatable about an axis of rotation and to which cylinder/piston units are connected for rotation therewith, and a feed and a return of the heat exchanger device pass through the first side; or connections of the high pressure and of the low pressure and the feed and the return of the heat exchanger device pass through the first side.
11. A hydraulic assembly comprising: a hydraulic machine comprising: a housing interior; a group of hydrostatic working chambers mounted in the housing interior so as to be rotatable about an axis of rotation, said working chambers configured such that, upon rotation of the group, being said working chambers are connectable in an alternating manner to a high pressure and to a low pressure of the hydraulic machine, the working chambers having a leakage into the housing interior; and a heat exchanger device accommodated in the housing interior; a drive machine fixedly connected to the hydraulic machine and configured to transmit, a torque to the hydraulic machine; and a pressure medium container fixedly connected to the hydraulic machine and configured to be connected to at least one of the low pressure the high pressure of the hydraulic machine.
12. A hydraulic axle comprising: a hydraulic machine comprising: a housing interior; a group of hydrostatic working chambers mounted in the housing interior so as to be rotatable about an axis of rotation, said working chambers configured such that, upon rotation of the group, said working chambers are connectable in an alternating manner to a high pressure and to a low pressure of the hydraulic machine, the working chambers having a leakage into the housing interior; and a heat exchanger device accommodated in the housing interior; a drive machine fixedly connected to the hydraulic machine and configured to transmit a torque to the hydraulic machine, a hydraulic cylinder fixedly connected to the hydraulic machine, the hydraulic machine configured to supply pressure medium to the hydraulic cylinder; and a control block fixedly connected to the hydraulic machine and configured to control the supply of the pressure medium.
13. The hydraulic machine as claimed in claim 3, wherein the annular chamber extends around the axis of rotation predominantly in one of a cylindrical, a conical, and an oval manner.
14. The hydraulic machine as claimed in claim 4, wherein the axis of rotation is engaged around by the heat exchanger device in one of a circular, a square, a hexagonal, and an octagonal manner.
15. The hydraulic assembly as claimed in claim 11, wherein the drive machine is an electric machine.
16. The hydraulic axle as claimed in claim 12, wherein the drive machine is an electric machine and the control block is a valve control block.
Description
[0033] In the drawings:
[0034]
[0035]
[0036]
[0037]
[0038]
[0039]
[0040]
[0041]
[0042]
[0043]
[0044] According to
[0045] When the drive shaft 14, and therefore the cylinder drum 16, are rotated, the hydrostatic working chambers are connected via their openings facing the connections 26, 28 to the high pressure and low pressure in an alternating manner.
[0046] A housing interior 30 is formed in the housing 2. An annular chamber 34 is formed radially between the cylinder drum 16 and a housing inner wall 32. A spiral heat exchanger device 36 for dissipating thermal energy from the housing 2 extends in said annular chamber and around the axis of rotation 18. As previously described, the point which is hottest and is most affected by losses is located in a hydraulic circuit in the hydrostatic axial piston pump 1. The heat exchanger device 36 arranged in the annular chamber 34 transmits the thermal energy precisely to said point using coolant, for example water, flowing in the spiral coil. As a result, a T at this point is very high as is the heat transfer coefficient . A large amount of heat can therefore be transmitted on a small heat exchange surface. As a result, a significantly larger heat exchanger which would have to be provided externally is dispensed with. A saving can thereby be obtained both on investment costs and operating costs. In addition, directly temperature-induced wear phenomena at the hydrostatic axial piston pump can be minimized since the latter can always be operated in the optimum temperature range.
[0047] Since the heat is thereby transmitted to the hottest location of a hydrostatic circuit, the thermal energy which is dissipated by means of the cooling water can be readily used further since the temperature level of said thermal energy is particularly far above the ambient temperature. As a secondary measure, for example, a hot water supply can thereby be supplied with heat. This can be realized, for example, by a 3 way circuit in which the cooling water circulates in the heat exchanger device 36 until a sufficient T is reached.
[0048] The possible dispensing with the external heat exchanger also dispenses with the error source which has already been discussed further above and is based on the relatively vulnerable technology of the tubular heat exchanger or plate heat exchanger.
[0049] A more detailed explanation of the basic construction and of the basic manner of operation of the hydrostatic axial piston machine 1 according to
[0050]
[0051] As in all of the exemplary embodiments, the turbulence generated in the oil bath of the housing interior 30 by the cylinder drum 16 proves advantageous for the heat transfer coefficient of the heat exchanger device 136. The closer arrangement of the spiral coils of the heat exchanger device 136 increases a heat flow density in comparison to the first exemplary embodiment according to
[0052]
[0053]
[0054]
[0055]
[0056] A very similarly constructed exemplary embodiment of a heat exchanger device 436 is shown in
[0057] A final exemplary embodiment of a heat exchanger device 536 is shown in
[0058] A hydraulic machine having a housing interior in which an engine is arranged via which mechanical energy can be converted into hydraulic energy, and/or vice versa, in a leakage-affected manner is disclosed. A heat exchanger device for removing a heat flow of the leakage is arranged at least in sections in the housing interior.
[0059] Furthermore, a hydraulic assembly and a hydraulic axle which each have the hydraulic machine are disclosed.
LIST OF REFERENCE SIGNS
[0060] 1; 101; 201; 301 Hydrostatic axial piston pump [0061] 2 Housing [0062] 4 Housing jacket [0063] 6 Housing cover
8 Connection cover [0064] 10, 12 Rolling bearings [0065] 14 Drive shaft [0066] 16 Cylinder drum [0067] 18 Axis of rotation [0068] 20 Working piston [0069] 22 Swash plate [0070] 24 Control disk [0071] 26 High pressure connection [0072] 28 Low pressure connection [0073] 30 Housing interior [0074] 32 Housing inner wall [0075] 34; 134; 234; 334 Annular chamber [0076] 36; 136; 236; 336; 436; 536 Heat exchanger device