MOBILE WORK MACHINE
20220251804 · 2022-08-11
Inventors
- Hans KNAPP (Bischofshofen, AT)
- Josef STOCK (Bischofshofen, AT)
- Rupert GAPPMAIER (Altenmarkt, AT)
- Christoph KIEGERL (Werfenweng, AT)
- Reinhard WINDHOFER (Muhlbach am Hochkonig, AT)
- Florian ALTENBERGER (Taxenbach, AT)
Cpc classification
F15B2211/761
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2013/008
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E02F3/431
FIXED CONSTRUCTIONS
F15B11/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/455
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E02F3/422
FIXED CONSTRUCTIONS
F15B2211/20546
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/327
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B11/044
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/6654
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/6336
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B13/0402
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/30585
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/31541
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E02F9/2203
FIXED CONSTRUCTIONS
F15B2211/426
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/6652
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B21/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/31588
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E02F9/2271
FIXED CONSTRUCTIONS
International classification
Abstract
The present invention relates to a mobile work machine, in particular to a wheeled loader, having a hydraulic circuit, having a pump for conveying a hydraulic medium through the hydraulic circuit, and having at least one control block having an inflow control edge and an outflow control edge for controlling the flow of the hydraulic medium, wherein the work machine has a working tool and a cylinder for actuating the working tool and wherein the cylinder has an outflow and in inflow for the hydraulic medium, and wherein the outflow is in fluid communication with the outflow control edge and the inflow is in fluid communication with the inflow control edge, and wherein the inflow control edge does not have any or has fewer fine control notches than the outflow control edge and thus works in a largely unrestricted manner, while the outflow control edge is equipped with one or more fine control notches so that with a pulling load at the working tool, the outflow control edge restricts the outflow amount through the outflow of the cylinder.
Claims
1. A mobile work machine, comprising a hydraulic circuit, having a pump for conveying a hydraulic medium through the hydraulic circuit, and having at least one control block having an inflow control edge and an outflow control edge for controlling the flow of the hydraulic medium, wherein the work machine has a working tool and a cylinder for actuating the working tool and wherein the cylinder has an outflow and in inflow for the hydraulic medium, and wherein the outflow is in fluid communication with the outflow control edge and the inflow is in fluid communication with the inflow control edge, wherein the inflow control edge does not have any or has fewer fine control notches than the outflow control edge and thus works in a largely unrestricted manner, while the outflow control edge is equipped with one or more fine control notches so that with a pulling load at the working tool, the outflow control edge restricts the outflow amount through the outflow of the cylinder.
2. The mobile work machine in accordance with claim 1, wherein a control is provided that is configured to control the movement of the control block or blocks.
3. The mobile work machine in accordance with claim 1, wherein a pump control is provided that is configured to control the conveying amount through the pump.
4. The mobile work machine in accordance with claim 1, wherein a pressure regulator is provided that cooperates with the pump such that a minimum pressure is maintained on the cylinder side on which a volume increase is produced by the pulling load.
5. The mobile work machine in accordance with claim 4, wherein the pressure regulator is an electrically adjustable pressure regulator of the pump.
6. The mobile work machine in accordance with claim 1, wherein the outflow control edge and the inflow control edge are combined in a control block or are arranged in a distributed construction or in separate control blocks.
7. The mobile work machine in accordance with claim 1, wherein the work machine has a main consumer and a secondary consumer; and in that a control is present that is configured so that on a smaller pulling load of the secondary consumer than of the main consumer, the outflow control edge of the main consumer closes so much that pressure is backed up that is sufficient to actuate the secondary consumer.
Description
[0029] Further details and advantages of the invention will be explained in more detail with reference to an embodiment described in the following. There are shown:
[0030]
[0031]
[0032]
[0033] If the tipping point of the bucket is exceeded with a wheeled loader, the bucket pulls the tilt cylinder, i.e. the tilt cylinder is moved by the bucket.
[0034] The quantity control is now taken over by the control block that partly closes, i.e. restricts, the cylinder outflow control edge in accordance with the desired movement speed so that the outflow amount and thus the movement speed of the bucket and of the cylinder can be set.
[0035] On the other side, i.e. on the side of the increasing cylinder space, an electrically adjustable pressure regulator of the pump provides that a minimum pressure is maintained so that the volume produced by the pulling out of the cylinder is filled. This is done with a completely opened inflow edge of the control block.
[0036] The inflow is controlled by the conveying amount of the pump and thus does not have any fine control notch. In contrast, the outflow edge of the control block is provided with a fine control notch so that the outflow speed is settable.
[0037] It is pointed out at this point that the term “fine control notch” dies not only designate a fine control notch per se, but rather stands as representative for any desired restriction member.
[0038]
[0039] The control block CB is here connected to the pressure side of the pump P, to a tank T for hydraulic medium, and to the base side and the rod side of a cylinder. The control block CB here regulates the inflow and outflow of a hydraulic medium present in the cylinder in that the cylinder reservoir at the base side B or at the rod side A can be fluidically connected to the pressure side of the pump or to the tank via adjustable restriction units, the so-called inflow edges ZK and outflow edges AK respectively.
[0040] If now a pulling force acting on the cylinder is produced, the object arises of ensuring the continuous and unchanging cylinder movement by a targeted restriction of the outflow edge. One unwanted effect here could be the occurrence of a movement that differs greatly from the operator input.
[0041] Such an unwanted effect can be adopted for the example of a wheeled loader when a wheeled loader bucket has exceeded its tipping point during the tipping out and the previously pressing cylinder becomes a pulled cylinder due to the weight force of the bucket and of the load located thereon. In other words, the bucket that now tilts down on its own pulls the cylinder out (by the force F shown in
[0042] It is ensured by the present invention through the design of the outflow edge AK and of the inflow edge ZK in the control block CB that a sufficiently high pressure is also present on the outflow side of the consumer (cylinder) in such a state.
[0043] In
[0044] It is different with the outflow of the hydraulic medium from the reservoir A of the cylinder at the rod side since here the outflow edge AK has a restricting function that can be provided, for example, by a linear progression of the edge. The pressure, on the rod side M4, for example, can thereby be built up effectively and in an easily meterable manner by small changes in the slider position. A clean movement behavior can hereby also be ensured for conveying situations despite the loss-optimized inflow edge.
[0045] For easier understanding, the direction of flow of the hydraulic medium is represented by arrows in
[0046]
[0047] The drive of the adjustable hydraulic pump P takes place mechanically here by an engine or motor, for example an internal combustion engine or an electric motor E.
[0048] Hydraulic fluid is supplied to the hydraulic control block CB via the pump P. The position of the control piston in the control block CB (in accordance with
[0049] The control slider adjustment is taken over by the control unit VCU. For this purpose, the input values M1, M2 for the cylinder pressure of the base side and rod side of the cylinder and M5, for example the angle of rotation are read into the control unit VCU by a rotary encoder of the lifting cylinder LC that is arranged at the lifting arm, for example. It is pointed out that different position sensing systems could also be used in the kinematics of the work machine aside from a rotary encoder. For this purpose, the input values M3, M4 for the cylinder pressure of the base side and rod side of the cylinder and M6, for example the angle of rotation are read into the control unit VCU by a rotary encoder of the tilting cylinder TC, arranged at the deflection lever, for example.
[0050] The evaluation of whether a pulling or pushing load is applied takes place by the evaluation of the lifting/tilting movement via corresponding angle of rotation sensors in combination with the determined cylinder pressures. An adjustment of the control piston in accordance with a stored valve characteristic takes place. Pressing load means that the effective direction of hydraulic pressure in the cylinder (resultant from the cylinder pressure at the base and rod sides) and the direction of movement of the cylinder go in the same direction. Pulling load means that the effective direction of hydraulic pressure in the cylinder (resultant from the cylinder pressure at the base and rod sides) and the direction of movement of the cylinder go in the opposite direction.
[0051] The pump pressure regulator PCU of the pump can be both by a separate component and integrated in the VCU.
[0052]
REFERENCE NUMERAL LIST
[0053] VCU vehicle control unit [0054] PCU pump control unit [0055] CB control block [0056] E engine/motor [0057] M1 pressure sensor LC lift cylinder-base pressure [0058] M2 pressure sensor LC ram pressure [0059] M3 pressure sensor TC tilt cylinder-base pressure [0060] M4 pressure sensor TC rod pressure [0061] M5 angle sensor LC [0062] M6 angle sensor TC [0063] P pump [0064] AK outflow edge [0065] ZK inflow edge [0066] A reservoir at the rod side [0067] B reservoir at the base side [0068] T tank [0069] F pulling force on the cylinder piston