Control system for hydraulic system and method for recovering energy and leveling hydraulic system loads
US-9765501-B2 · Sep 19, 2017 · US
US10273983B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10273983-B2 |
| Application number | US-201515032908-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 27, 2015 |
| Priority date | Jan 31, 2014 |
| Publication date | Apr 30, 2019 |
| Grant date | Apr 30, 2019 |
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A working machine control system includes a split flow type fluid pressure pump configured to discharge a working fluid from a first discharge port and a second discharge port, and a lower pressure selection circuit configured to select and communicate with a working fluid of lower pressure among a working fluid on the downstream of a first operation valve of a first neutral passage in a first circuit system to which a working fluid discharged from the first discharge port is supplied, and a working fluid on the downstream of a second operation valve of a second neutral passage in a second circuit system to which a working fluid discharged from the second discharge port is supplied. The fluid pressure pump is adjusted in such a manner that the lower the pressure of the working fluid selected by the lower pressure selection circuit is, the more a discharge flow rate is increased.
Opening claim text (preview).
The invention claimed is: 1. A lower pressure selection circuit, comprising: a higher pressure selection valve configured to select a high pressure side passage from among a first fluid passage and a second fluid passage, a working fluid flowing through the high pressure side passage having a pressure higher than a pressure of the working fluid flowing through the other one of the first fluid passage and the second fluid passage; and a switching valve connected to a pilot passage, and being configured to, by the pressure of the working fluid flowing through the high pressure side passage selected by the higher pressure selection valve, block the high pressure side passage from communicating with the pilot passage, and allow the other one of the first fluid passage and the second fluid passage to communicate with the pilot passage. 2. The lower pressure selection circuit according to claim 1 , wherein the switching valve receives the working fluid having a first pressure, passing through the first fluid passage, and the working fluid having a second pressure, passing through the second fluid passage, blocks the high pressure side passage from communicating with the pilot passage, using the pressure of the working fluid flowing through the high pressure side passage, and one of the first pressure and the second pressure, and allows the other one of the first fluid passage and the second fluid passage to communicate with the pilot passage, using the pressure of the working fluid flowing through the high pressure side passage, and the other one of the first pressure and the second pressure. 3. The lower pressure selection circuit according to claim 1 , wherein the switching valve includes a first switch valve connected to the first fluid passage and a second switch valve connected the second fluid passage, when the first fluid passage is the high pressure side passage, the first switching valve blocks the first fluid passage from communicating with the pilot passage, while the second switching valve allows the second fluid passage to communicate with the pilot passage, and when the second fluid passage is the high pressure side passage, the first switching valve allows the first fluid passage to communicate with the pilot passage, while the second switching valve blocks the second fluid passage from communicating with the pilot passage. 4. The lower pressure selection circuit according to claim 1 , wherein the switching valve always blocks the high pressure side passage from communicating with the pilot passage. 5. A working machine control system comprising the lower pressure selection circuit according to claim 1 , and being configured to control a working machine having a first actuator and a second actuator, comprising: a split flow type fluid pressure pump configured to discharge the working fluid from a first discharge port and a second discharge port; a first circuit system to which the working fluid discharged from the first discharge port is supplied, the first circuit system having a first operation valve configured to control the first actuator, and a first neutral passage providing communication between the first discharge port and a tank in a state where the first operation valve is placed at a normal position; a second circuit system to which the working fluid discharged from the second discharge port is supplied, the second circuit system having a second operation valve configured to control the second actuator, and a second neutral passage providing communication between the second discharge port and the tank in a state where the second operation valve is placed at a normal position; and the lower pressure selection circuit configured to select and communicate with the working fluid of a lower pressure among the working fluid on a downstream of the first operation valve of the first neutral passage, and the working fluid on a downstream of the second operation valve of the second neutral passage, the first neutral passage being connected to the first fluid passage, the second neutral passage being connected to the second fluid passage, wherein the fluid pressure pump includes a swash plate whose inclination angle is adjusted by a single regulator to be controlled with the pressure of the working fluid selected by the lower pressure selection circuit as a pilot pressure, and the discharge flow rate is adjusted by the regulator, the fluid pressure pump being adjusted in such a manner that the lower the pressure of the working fluid selected by the lower pressure selection circuit is, the more a discharge flow rate is increased, and wherein the switching valve of the lower pressure selection circuit is configured to guide the working fluid on the low pressure side to the regulator as the pilot pressure. 6. The working machine control system according to claim 5 , wherein the switching valve includes: a first switching valve configured to block the working fluid from the first neutral passage; and a second switching valve configured to block the working fluid from the second neutral passage, wherein one of the first switching valve and the second switching valve is switched into a communication state by the pressure of the working fluid selected by the higher pressure selection valve, and a passing working fluid is guided to the regulator as the pilot pressure.
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