HYDRAULIC CONTROLLER FOR A HYDRAULICALLY ACTUATED LIFTABLE AND LOWERABLE HOOK OF A CRANE
20180257915 ยท 2018-09-13
Inventors
- Torsten Verkoyen (Brueggen, DE)
- Heinz Henning Hoppmann (Krefeld, DE)
- Christian Stammen (Korschenbroich, DE)
Cpc classification
B66C23/54
PERFORMING OPERATIONS; TRANSPORTING
F15B11/044
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F15B11/044
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B66C23/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A hydraulically actuated liftable and lowerable hook of a crane has a hydraulic system comprises at least one working machine with a hydraulic motor driving a winch. At least one drive machine comprising a pump is connected directly or indirectly to at least one of the working machines by means of two connections via corresponding working lines, which serve as a feed or return depending on the operating state of the working machine. A lowering brake valve is provided in one working line and is connected to the other working line via a control line such that the lowering brake valve is displaceable against a restoring force by pressure, which prevails in the other working line and is forwarded via the control line, from the blocking position of said valve into a through-flow position for lowering the hook by means of a primary winch.
Claims
1. A hydraulic controller (1) of a hydraulic system for a hydraulically actuated liftable and lowerable hook of a crane, wherein the hydraulic system comprises at least one working machine (15), which is designed as a hydraulic motor, and at least one drive machine, which is designed, in particular, as a pump, wherein the working machine (15) is connected directly or indirectly to at least one of the drive machines by means of two connections via corresponding working lines (2), which connections serve as a feed or return depending on the operating state of the working machine (15), and wherein a lowering brake valve (3) is provided in one working line (2) and is connected to the other working line (2) via a control line (4) in such a way that the lowering brake valve (3) is displaceable against a restoring force by the control pressure, which is present in this other working line (2) and forwarded via the control line (4), from the blocking position of said valve into a through-flow position for lowering the hook by means of a winch (16), preferably a primary winch, wherein an outflow line (6) leading back to a tank branches off from the control line (4), wherein, for an adjustment of the control pressure acting on the lowering brake valve (3) to different values, the outflow line (6) is provided with a switching possibility (7), by means of which the effective hydraulic resistance in the outflow line (6) can be changed to at least two different values by open-loop or closed-loop control.
2. The hydraulic controller (1) as claimed in claim 1, wherein the working line (2) which serves as a feed during the prevailing operating state of the working machine (15) is loaded with a volumetric flow which controls the working speed and which can be changed at least in certain operating states via a gas pedal.
3. The hydraulic controller (1) as claimed in claim 1, wherein the working line (2) which serves as a feed during the prevailing operating state of the working machine (15) is loaded with a volumetric flow which controls the working speed and which can be changed at least in certain operating states via a joystick.
4. The hydraulic controller (1) as claimed in claim 1, wherein there are provided two hydraulic resistors, preferably orifice plates (8, 9) of different diameters, which are provided, in particular in parallel to one another, in the outflow line (6), wherein one hydraulic resistor is always active and the other hydraulic resistor is assigned a further switching possibility (7), by means of which it is possible to switch between an activated state and deactivated state of the other hydraulic resistor, in particular for a switch between stable operation and slower lowering in the activated state of the other hydraulic resistor and quicker lowering in the deactivated state of the other hydraulic resistor.
5. The hydraulic controller (1) as claimed in claim 4, wherein the switching possibility (7) is configured as a combined component and comprises a switchable hydraulic resistor, in particular an orifice plate (9).
6. The hydraulic controller (1) as claimed in claim 4, wherein the switching possibility (7) is coupled to the valve path of the lowering brake valve (3).
7. The hydraulic controller (1) as claimed in claim 1, wherein a control line (17) connects the working line (2) which serves as a return during the prevailing operating state of the working machine (15) to the switching possibility (7) for loading the switching possibility (7) by the back pressure which, on account of the line resistance, results in the working line (2) which serves as a return during the prevailing operating state of the working machine (15).
8. The hydraulic controller (1) as claimed in claim 1, wherein the value of the smaller hydraulic resistance is 0.66 times or 0.85 times the value of the larger hydraulic resistance or the diameter of the smaller orifice plate (9) is 0.66 times or 0.85 times the diameter of the larger orifice plate (8).
9. The hydraulic controller (1) as claimed in claim 1, wherein, for the switch between the internal and external control of the control pressure acting on the lowering brake valve (3) through the control line (4), there are provided two hydraulic resistors, preferably orifice plates (10, 11) of different diameter, which are provided in parallel to one another, of which the larger hydraulic resistor or the orifice plate (10) with the smaller diameter can be switched between an activated state and deactivated state via a switching possibility (5), wherein these two hydraulic resistors or orifice plates (10, 11) open into the control line (4) via a change-over valve.
10. The hydraulic controller (1) as claimed in claim 1, wherein for the switch between internal and external control of the control pressure acting on the lowering brake valve (3) through the control line (4), there is provided a change-over between two hydraulic resistors or orifice plates (10, 11) of different diameter which are arranged on a 3/2-way valve and provided in parallel to one another.
11. The hydraulic controller (1) as claimed in claim 9, wherein the value of the smaller hydraulic resistance is 0.6 times the value of the larger hydraulic resistance or the diameter of the smaller orifice plate (10) is 0.6 times the diameter of the larger orifice plate (11).
12. The hydraulic controller (1) as claimed in claim 9, wherein there is further provided a nonreturn valve (12) in the line portion (13) with the smaller hydraulic resistance, in particular with the larger orifice plate (11), through which nonreturn valve flow can pass only in the direction from the smaller hydraulic resistance, in particular the larger orifice plate (11), to the 3/2-way valve.
13. The hydraulic controller (1) as claimed in claim 1, wherein the external control is assigned a dedicated pump from which it is supplied.
14. The hydraulic controller (1) as claimed in claim 1, wherein the external control is connected to the drive machine designed as a pump.
15. The hydraulic controller (1) as claimed in claim 2, wherein there are provided two hydraulic resistors, preferably orifice plates (8, 9) of different diameters, which are provided, in particular in parallel to one another, in the outflow line (6), wherein one hydraulic resistor is always active and the other hydraulic resistor is assigned a further switching possibility (7), by means of which it is possible to switch between an activated state and deactivated state of the other hydraulic resistor, in particular for a switch between stable operation and slower lowering in the activated state of the other hydraulic resistor and quicker lowering in the deactivated state of the other hydraulic resistor.
16. The hydraulic controller (1) as claimed in claim 3, wherein there are provided two hydraulic resistors, preferably orifice plates (8, 9) of different diameters, which are provided, in particular in parallel to one another, in the outflow line (6), wherein one hydraulic resistor is always active and the other hydraulic resistor is assigned a further switching possibility (7), by means of which it is possible to switch between an activated state and deactivated state of the other hydraulic resistor, in particular for a switch between stable operation and slower lowering in the activated state of the other hydraulic resistor and quicker lowering in the deactivated state of the other hydraulic resistor.
17. The hydraulic controller (1) as claimed in claim 5, wherein the switching possibility (7) is coupled to the valve path of the lowering brake valve (3).
Description
[0018] Exemplary embodiments of the invention which are illustrated in the drawings are explained hereinbelow. In the drawings:
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026] Corresponding reference signs are used for like or identical components in all the figures.
[0027]
[0028] In the working line 2, which serves as a return during lowering, there is providedas illustrated in
[0029] For an adjustment of the control pressure acting on the lowering brake valve 3 to different values, the control line 4 is provided with a switch 5 for switching between internal and external control. For this purpose, an outflow line 6 leading back to the tank (not illustrated in the drawing) branches off from the control line 4 between the switch 5 and the lowering brake valve 3, in which outflow line there is provided a further switching possibility 7 pertaining to two orifice plates 8, 9 of different diameters that are provided in parallel to one another.
[0030] Here, it is possible to switch between the orifice plate 8 and the orifice plate 9 via the switching possibility 7, which is formed by a 3/2-way valve, wherein quicker lowering occurs with the smaller orifice plate 9 and more stable operation with slower lowering occurs with the larger orifice plate 8 and wherein, furthermore, the signal of the external control is limited in such a way that complete opening of the lowering brake valve 3 is not possible. Here, the diameter of the smaller orifice plate 9 is about 0.66 times the diameter of the larger orifice plate 8.
[0031] A fraction of the pressure is channeled away through the outflow line 6 leading back to the tank, with the result that the pressure acting on the lowering brake valve 3 is reduced by this fraction. If the larger orifice plate 8 is operated in the outflow line 6 leading back to the tank, a greater feed-through results, with the result that the control pressure acting on the lowering brake valve 3 is reduced and lowering takes place more slowly.
[0032] The switch 5 for switching between internal and external control is formed by a 3/2-way valve. A nonreturn valve 12 is further provided in a line section 13 with the larger orifice plate 11, through which nonreturn valve flow can pass only in the direction from the larger orifice plate 11 to the 3/2-way valve.
[0033] A control line 17 connects the working line 2 which serves as a return during the prevailing operating state of the working machine 15 to the switching possibility 7 for loading the switching possibility 7 by the back pressure which, on account of the line resistance, results in the working line 2 which serves as a return during the prevailing operating state of the working machine 15.
[0034] In the further exemplary embodiment illustrated in
[0035] The change-over valve 14 is actuated by the switch 5 and the pressure which acts depending on the switching state of the switch 5.
[0036] The third exemplary embodiment shown in
[0037] The fourth exemplary embodiment shown in
[0038] In the variant shown in
[0039] The variant shown in
[0040]