CONTROL APPARATUS FOR SUPPLYING AT LEAST ONE HYDRAULIC CONSUMER WITH FLUID
20200095987 ยท 2020-03-26
Inventors
Cpc classification
F15B2211/20576
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/20538
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/2654
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/20546
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/3116
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/45
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B11/165
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B49/106
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04B49/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to a control apparatus for supplying at least one hydraulic consumer with fluid having a variable displacement pump (10) which may be controlled by means of a loadsensing pressure (LS), characterized in that, for a case-by-case increase in the volume flow in the supply (22) to the hydraulic consumer, the loadsensing pressure (LS) is passed via a control line (28) to a control device (2) which ensures the increase in the supply (22) by connecting in a constant-displacement pump (16) as soon as an operator calls for the relevant function by operating the control device (2).
Claims
1. A control device for supplying at least one hydraulic consumer with fluid, having a variable displacement pump (10) controllable by means of a load-sensing pressure (LS), characterized in that for a case-by-case increase of the volume flow in the inlet (22) of the hydraulic consumer, the load-sensing pressure (LS) is transmitted to a control device (2), which performs the increase in the inlet (22) by connecting a fixed displacement pump (16) as soon as an operator activates the pertinent function by actuating the control device (2), via a control line (28).
2. The control device according to claim 1, characterized in that the control device (2) has a first (30) and a second control valve (32), of which the first control valve (30) can be actuated by the load-sensing pressure (LS) in the control line (28) and the second control valve (32) can be actuated by the operator.
3. The control device according to claim 1, characterized in that the first valve is a proportional valve, in particular a 2/2-way proportional valve (30), one control side of which is pressurized with, besides a spring pre-load (36), the load sensing pressure (LS) and the other control side of which is pressurized with the inlet pressure in the inlet (22) of the individual hydraulic consumer.
4. The control device according to claim 1, characterized in that the second valve is an electromagnetically operable switching valve, in particular a 2/2-way switching valve (32), which, in its unactuated position, opens a fluid path from the fixed displacement pump (16) to a storage tank (12, T) and in its operator-actuated activating position blocks the pertinent fluid path.
5. The control device according to claim 1, characterized in that the second valve (32) is arranged in the bypass of the first valve (30), in which the input (42) and the output (54) of the first valve (30) are connected to the input (44) and the output (52) of the second valve (32) in a fluid-conveying manner.
6. The control device according to claim 1, characterized in that the output (14) of the fixed displacement pump (16) is connected to the input (42 or 44) of the first (30) and the second valve (32) via a branching point (40).
7. The control device according to claim 1, characterized in that the output (14) of the fixed displacement pump (16) is connected to the output (8) of the variable displacement pump (10) via a connecting line (46), in which a check valve is installed, in particular in the form of a spring-loaded check valve (48), which opens in the direction of the variable displacement pump (10) and closes in the direction of the fixed displacement pump (16).
8. The control device according to claim 1, characterized in that first the connecting line (46) having the check valve (48) and subsequently a control line (38) are installed in the connection (26) between the variable displacement pump (10) and the respective hydraulic consumers, which control line pressurizes the first valve (30) with the inlet pressure.
9. The control device according to claim 1, characterized in that a pressure limiting valve (50) is installed in a bypass line in parallel to the second control valve (32); which, upon being triggered, transmits the volume flow of the fixed displacement pump (16) to the storage tank (12, T), bypassing the first (30) and second valves (32).
10. The control device according to claim 1, characterized in that it is formed as a control block (4) which includes the first (30) and the second valve (32) the check valve (48), and the pressure relief valve (50), which has ports (6, 13, 20, 24, 18) for the fluid-conveying connection of the variable displacement pump acting as a swing angle pump (10), the fixed displacement pump (16), the relevant consumer, the storage tank (12, T) and the load-sensing control line (28).
Description
[0015] Below the invention is explained in detail using an exemplary embodiment shown in the drawing.
[0016] In the drawings:
[0017]
[0018]
[0019]
[0020]
[0021] The control device according to the invention has a control unit, designated by 2 in the figures, the components of which have been combined to form a control block 4. The control block 4 has a first input port 6, which is connected to the output 8 of a variable displacement pump in the form of a swing pump 10, which is connected to a storage tank 12 on the input side. A second input port 13 of the control block 4 is connected to the output 14 of a fixed displacement pump 16, which, like the swing pump 10, can be motor-driven and is connected to the storage tank 12 on the input side. in the present example, the fixed displacement pump 16 is formed by a gear pump. A demand signal LS signal can be transmitted to a third input terminal 18 of the control block 4, more precisely, in the case of several consumers to be supplied, the highest occurring LS signal is supplied via shuttle valves. A first output port 20 on the control block 4 is routed to the consumer inlet 22, and a second outlet port 24 is routed to the storage tank 12.
[0022] The swing pump 10 is part of a closed-center system, otherwise not shown, i.e., the swing angle is adjusted via a pressure regulator DR according to the LS signal. To illustrate the course of the oil flows, resulting in the different operating conditions illustrated in
[0023] The output 14 of the fixed displacement pump 16 is also connected to the supply line 26, routed from the swing pump 10 to the inlet 22 via a connecting line 46, wherein a check valve 48 is installed in the connecting line 46, which check valve opens in the direction of the supply line 26. This connecting line 46 is connected to the supply line 26, viewed in the flow direction, upstream of the control line 38. The first valve 30 and the second valve 32 are connected to the second output port 24 of the control block 4 and thus to the storage tank 12 on the output side. The control block 4 is completed by a pressure limiting valve 50, which secures the fixed displacement pump 16 to the storage tank 12 and is inserted as a bypass to the second valve 32 between its input 44 and its outlet 52 connected to the tank.
[0024]
[0025]
[0026] In the operating state of
[0027] In the state shown in
[0028] Because the boost function can only be activated, even if the LS pressure requests an additional supply and thus the first valve 30 is blocked, as shown in