Adjusting device for a hydraulic machine, and hydraulic axial piston machine
10570878 ยท 2020-02-25
Assignee
Inventors
Cpc classification
F04B1/2078
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B1/324
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03C1/0686
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T137/8593
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
F04B1/29
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B1/2078
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B1/324
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An adjusting device for an axial piston machine includes an actuating piston that delimits an actuating space configured to be connected to a control oil source or a control oil drain via a control valve. A control piston of the control valve is loaded firstly by a control spring and secondly by a spring arrangement that is also in active engagement with the actuating piston.
Claims
1. An adjusting device for a hydraulic machine, comprising: a control valve having a control piston configured to be adjusted out of a basic position counter to the force of at least one control spring; an actuating piston delimiting an actuating space configured to be connected to a control oil source or a control oil drain via the control valve, the control piston of the control valve being configured with a differential face acted on directly by a system pressure of the control oil source and being arranged approximately coaxially with respect to the actuating piston; and a spring arrangement having at least one spring, the spring arrangement being configured to load the control piston in the opposite direction to the control spring, and to feed back a position of the actuating piston to the control piston as a feedback force, wherein the action of the system pressure on the differential face of the control piston generates a resultant pressure force on the control piston in the same direction as the load from the spring arrangement.
2. The adjusting device according to claim 1, wherein the control spring has a higher spring rate or higher prestress than the spring arrangement.
3. The adjusting device according to claim 1, wherein: the spring arrangement includes at least two springs; and the at least two springs are arranged coaxially and supported on a head of the actuating piston of cup-shaped configuration.
4. The adjusting device according to claim 1, wherein the control spring is supported on a spring collar.
5. The adjusting device according to claim 1, wherein the prestress of the control spring is adjustable.
6. The adjusting device according to claim 1, wherein the control spring is assigned an actuating spring having an adjustable prestress, the actuating spring being arranged coaxially with respect to the control spring.
7. The adjusting device according to claim 6, wherein the actuating spring has a substantially lower spring rate or prestress than the control spring.
8. The adjusting device according to claim 6, wherein the adjustment of the prestress of the actuating spring takes place hydraulically or via a magnet.
9. The adjusting device according to claim 8, further comprising an actuating element (i) which is configured to be adjusted by a magnet or hydraulically, (ii) which penetrates a spring collar supporting the control spring, and (iii) on which the actuating spring is supported.
10. The adjusting device according to claim 1, further comprising: a valve bushing that defines an interior and a fluidic connection between the interior and each of the control oil source, the control oil drain, and the actuating space; and a sleeve that is disposed in the interior of the valve bushing so as to be axially adjustable, the sleeve defining an axial bore and a respective radial bore assigned to each fluidic connection of the valve bushing that is fluidically connected with the axial bore; wherein: the control piston is disposed in the axial bore so as to be axially displaceable; the spring arrangement is engaged with the control piston such that an axial position of the control piston sets a point of engagement for the spring arrangement; and axial adjustment of the sleeve displaces the control piston to adjust a point of engagement for a second spring of the spring arrangement.
11. An axial piston machine, comprising: a pivot cradle prestressed into a basic position; and an adjusting device configured to adjust the pivot cradle, the adjusting device including: a control valve having a control piston configured to be adjusted out of the basic position counter to the force of at least one control spring; an actuating piston delimiting an actuating space configured to be connected to a control oil source or a control oil drain via the control valve, the control piston of the control valve being configured with a differential face acted on directly by a system pressure of the control oil source and being arranged approximately coaxially with respect to the actuating piston; and a spring arrangement having at least one spring, the spring arrangement being configured to load the control piston in the opposite direction to the control spring, and to feed back a position of the actuating piston to the control piston as a feedback force, wherein the action of the system pressure on the differential face of the control piston generates a resultant pressure force on the control piston in the same direction as the load from the spring arrangement.
12. The adjusting device according to claim 1, wherein: the basic position corresponds to a maximum swept angle of the hydraulic machine; connecting the actuating space to the control oil source causes the actuating piston to undergo a stroke out from the basic position; the spring arrangement includes at least two springs; and the spring arrangement is supported on the actuating piston and is configured such that after a portion of the stroke of the actuating piston, one of the at least two springs of the spring arrangement passes out of active engagement with one or more of the control piston and the actuating piston.
13. The axial piston machine of claim 11, wherein: the basic position corresponds to a maximum swept angle of the axial piston machine; connecting the actuating space to the control oil source causes the actuating piston to undergo a stroke out from the basic position; the spring arrangement includes at least two springs; and the spring arrangement is supported on the actuating piston and is configured such that after a portion of the stroke of the actuating piston, one of the at least two springs of the spring arrangement passes out of active engagement with one or more of the control piston and the actuating piston.
14. An adjusting device for a hydraulic machine, comprising: a control valve having a control piston configured to be adjusted out of a basic position counter to the force of at least one control spring; an actuating piston delimiting an actuating space configured to be connected to a control oil source or a control oil drain via the control valve, the control piston of the control valve being configured with a differential face acted on directly by a system pressure of the control oil source and being arranged approximately coaxially with respect to the actuating piston; and a spring arrangement having at least two springs, the spring arrangement being configured to load the control piston in the opposite direction to the control spring, wherein the spring arrangement is supported on the actuating piston and is configured in such a way that, in the case of a control oil connection of the actuating space to the control oil source, one of the springs of the spring arrangement passes out of active engagement with one or more of the control piston and the actuating piston after a part stroke of the actuating piston, and wherein the control spring is assigned an actuating spring having an adjustable prestress, the actuating spring being arranged coaxially with respect to the control spring.
15. The adjusting device according to claim 14, wherein the control spring has a higher spring rate or higher prestress than the spring arrangement.
16. The adjusting device according to claim 14, wherein: the at least two springs are arranged coaxially and supported on a head of the actuating piston of cup-shaped configuration.
17. The adjusting device according to claim 14, wherein the control spring is supported on a spring collar.
18. The adjusting device according to claim 14, wherein the actuating spring has a substantially lower spring rate or prestress than the control spring.
19. The adjusting device according to claim 14, wherein the adjustment of the prestress of the actuating spring takes place hydraulically or via a magnet.
20. The adjusting device according to claim 14, further comprising: a valve bushing that defines an interior and a fluidic connection between the interior and each of the control oil source, the control oil drain, and the actuating space; and a sleeve that is disposed in the interior of the valve bushing so as to be axially adjustable, the sleeve defining an axial bore and a respective radial bore assigned to each fluidic connection of the valve bushing that is fluidically connected with the axial bore; wherein: the control piston is disposed in the axial bore so as to be axially displaceable; the spring arrangement is engaged with the control piston such that an axial position of the control piston sets a point of engagement for one of the at least two springs of the spring engagement; and axial adjustment of the sleeve displaces the control piston to adjust a point of engagement for another of the at least two springs of the spring arrangement.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Preferred exemplary embodiments of the disclosure will be explained in greater detail in the following text using diagrammatic drawings, in which:
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION
(6) In the exemplary embodiments which are described in the following text, the axial piston machine is configured as an axial piston pump 1, the basic construction of which is shown in the section according to
(7) Those end sections of the axial pistons 8 which are remote from the working spaces 10 are supported via sliding pads 16 on a pivot cradle 18, the pivoting angle of which can be adjusted in order to change the delivery volume by means of an adjusting device 20 which is indicated using dash-dotted lines. In the exemplary embodiment which is shown, the pivot cradle 18 is prestressed via a spring (not shown) into a basic position, in which the pivoting angle and therefore the delivery volume are at their maximum. By way of extension of an actuating piston (which will be explained in greater detail in the following text) of the adjusting device 20, the pivot cradle can be pivoted back counter to the force of said spring and the driving mechanism forces in order to reduce the pivoting angle and therefore the delivery volumetric flow. The attachment of the adjusting device 20 to the pivot cradle 18 takes place as shown, for example, via a type of ball and slip joint device 22.
(8)
(9) A sleeve 34 is screwed into the valve bushing 28, which sleeve 34 is provided with radial bores 36, 38, 40 which are firstly in control oil connection with the abovementioned connectors P, A and T and secondly open into a valve bore 42, in which a control piston 44 of the control valve 24 is guided. The valve bore 42 is configured with a radial step 46, with the result that the control piston 44 is correspondingly also configured as a stepped piston and therefore has a differential face which is provided with the reference numeral 48 in the illustration according to
(10) The left-hand end section in
(11) That end section of the control piston 44 which is remote from the control spring 58 dips into the actuating space 32. A stepped spring collar 66 is placed onto said end section, on which spring collar 66 a return spring arrangement 68 is supported with an outer spring 70 and an inner spring 72 which are arranged coaxially with respect to one another and act on a head of the cup-shaped actuating piston 26. Said actuating piston 26 is prestressed in end-side contact against the valve bushing 28 by way of the spring which is mentioned at the outset and prestresses the pivot cradle 18 into the basic position, the grooves for the control oil connection of the actuating space 32 to the control oil flow path 30 running along said end-side bearing region. By way of the return spring arrangement, the position of the pivot cradle is fed back to the control piston 44 as a force.
(12) The spring rate and prestress of the spring arrangement 68 are selected to be lower than those of the control spring 58, with the result that the control piston 44 is prestressed with its radial collar 74 in contact with the end face of the spring space 56; this basic position is not shown in
(13) In the basic position, the control groove 52 shuts off the control oil connection between the pressure connector P and the control connector A, whereas the control oil connection between the control connector A and the tank connector T is opened via the further control groove 54. Accordingly, the actuating space 32 is connected to the tank. However, the pressure at the pressure connector P acts on the differential face 48. Accordingly, the control piston 44 is loaded in the direction of the basic position (control oil connection between A and T) by the control spring 58 and in the opposed direction (opening of the connection between A and P) by the spring arrangement 68 and the pump pressure which acts on the differential face 48.
(14) The control piston 44 and also the spring collar 66 are configured with an axial bore 76, by way of which the two spaces 56 and 68 are connected to one another, with the result that the control piston 44 is loaded on the end side (apart from the differential face 48, on which the pressure at the connector P acts) with the same pressure, that is to say with the actuating pressure.
(15) During pressure medium supply of a consumer, the axial piston pump 1 is first of all pivoted out completely (see
(16) After a defined part stroke of the actuating piston 26, the spring 72 of the springs of the spring arrangement 68, for example the spring 72 which lies on the inside, is relieved completely or passes out of active engagement with the actuating piston 26 with a certain residual prestress. The force which acts counter to the control spring 58 and is composed of the force of the spring arrangement 68 and the force which results from loading the differential face 48 with pressure is then reduced correspondingly, which results in a steeper course of the characteristic curve, which steeper course is identified by the straight line 2. The two straight lines 1 and 2 therefore result in a resulting characteristic curve which corresponds approximately to the hyperbolic ideal characteristic curve which is shown in the diagram using dash-dotted lines.
(17) The position of the hyperbola or the straight lines 1 and 2 which approximate it can be changed by setting the prestress of the control spring 58.
(18)
(19) As in the above-described exemplary embodiment, the sleeve 34 is screwed into the valve bushing 28 and is locked via a lock nut 78. The control spring 58 acts on the control piston 44 and is arranged in the spring space 56, in which the actuating pressure is also active. Instead of the covering 64 in the exemplary embodiment according to
(20)
(21) The adjusting device according to the disclosure can also of course be used in hydraulic motors or other hydraulic units. The axial piston machines can be configured in a swash plate or oblique-axle design.
(22) An adjusting device and an axial piston machine which is configured with an adjusting device of this type are disclosed. The adjusting device has an actuating piston which delimits an actuating space which can be connected to a control oil source or a control oil drain via a control valve. A control piston of the control valve is loaded firstly by a control spring and secondly by a spring arrangement which is also in active engagement with the actuating piston.
LIST OF REFERENCE NUMERALS
(23) 1 Axial piston pump
(24) 2 Housing
(25) 4 Driving mechanism
(26) 6 Cylinder barrel
(27) 8 Axial piston
(28) 10 Working space
(29) 11 Drive shaft
(30) 12 Control kidney
(31) 14 Control kidney
(32) 16 Sliding pad
(33) 18 Pivot cradle
(34) 20 Adjusting device
(35) 22 Articulation device
(36) 24 Control valve
(37) 26 Actuating piston
(38) 28 Valve bushing
(39) 30 Control oil flow path
(40) 32 Actuating space
(41) 34 Sleeve
(42) 36 Radial bore
(43) 38 Radial bore
(44) 40 Radial bore
(45) 42 Valve bore
(46) 44 Control piston
(47) 46 Radial step
(48) 48 Differential face
(49) 50 Control collar
(50) 52 Control groove
(51) 54 Control groove
(52) 56 Spring space
(53) 58 Control spring
(54) 60 Threaded bolt
(55) 62 Lock nut
(56) 64 Covering
(57) 66 Spring collar
(58) 68 Spring arrangement
(59) 70 Spring
(60) 72 Spring
(61) 74 Collar
(62) 76 Axial bore
(63) 78 Lock nut
(64) 80 Adapter piece
(65) 82 Guide bore
(66) 84 Small piston
(67) 86 End section
(68) 88 Locking washer
(69) 90 Switching magnet
(70) 92 Actuating spring
(71) 94 Tappet