Construction machine
US-2016032947-A1 · Feb 4, 2016 · US
US9874232B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9874232-B2 |
| Application number | US-201414909753-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 26, 2014 |
| Priority date | Sep 13, 2013 |
| Publication date | Jan 23, 2018 |
| Grant date | Jan 23, 2018 |
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A fluid pressure control apparatus includes a pilot control valve configured to control a pilot pressure guided from a pilot pump to the control valve and a load retaining mechanism installed in the main passage. The load retaining mechanism includes an operated check valve configured to permit a flow of the working fluid from the load-side pressure chamber to the control valve in accordance with a back pressure and a switch valve configured to switch an action of the operated check valve. The switch valve has a discharge position configured to discharge the working fluid in a back pressure chamber when the pilot pressure has been guided from the pilot control valve. When the switch valve is set to the discharge position, the working fluid in the back pressure chamber is discharged to a tank via a drain port of the pilot control valve.
Opening claim text (preview).
The invention claimed is: 1. A fluid pressure control apparatus configured to control extension and retraction operations of a load-driving cylinder, the fluid pressure control apparatus comprising: a pump configured to supply a working fluid to the cylinder; a control valve configured to control the extension and retraction operations of the cylinder by switching between supply and discharge of the working fluid supplied from the pump to the cylinder; a pilot control valve configured to control a pilot pressure guided from a pilot pump to the control valve; a main passage that connects the control valve and a load-side pressure chamber of the cylinder, the load-side pressure chamber being configured to be subjected to a load pressure attributed to a load when the control valve is maintained in a neutral position; and a load retaining mechanism installed in the main passage, the load retaining mechanism comprising: an operated check valve configured to permit a flow of the working fluid from the control valve to the load-side pressure chamber, and to permit a flow of the working fluid from the load-side pressure chamber to the control valve in accordance with a back pressure; and a switch valve configured to operate in coordination with the control valve due to the pilot pressure guided via the pilot control valve, so as to switch an action of the operated check valve, wherein the switch valve has a discharge position configured to discharge the working fluid in a back pressure chamber of the operated check valve when the pilot pressure has been guided from the pilot control valve, and when the switch valve is set to the discharge position, the working fluid in the back pressure chamber is discharged to a tank via a drain port of the pilot control valve. 2. The fluid pressure control apparatus according to claim 1 , wherein the control valve includes: a first pilot chamber configured to take in the pilot pressure guided thereto via the pilot control valve, the first pilot chamber being configured to cause a spool to move so that the working fluid is supplied to the load-side pressure chamber of the cylinder; and a second pilot chamber configured to take in the pilot pressure guided thereto via the pilot control valve, the second pilot chamber being configured to cause the spool to move so that the working fluid is discharged from the load-side pressure chamber of the cylinder, the pilot control valve has a first pilot port, a second pilot port, a pump port, and the drain port communicating respectively with the first pilot chamber, the second pilot chamber, the pilot pump, and the tank, and when the pilot control valve has been switched to bring the second pilot port and the pump port into communication with each other and to bring the first pilot port and the drain port into communication with each other, the working fluid in the back pressure chamber is discharged to the tank via the drain port of the pilot control valve. 3. The fluid pressure control apparatus according to claim 2 , further comprising: a first pilot passage connecting the first pilot chamber and the first pilot port of the pilot control valve; a discharge passage connected to the switch valve, the discharge passage being configured to guide the working fluid discharged from the back pressure chamber to the first pilot chamber or the first pilot passage; and a check valve provided in the discharge passage, the check valve being configured to permit only a flow of the working fluid from the back pressure chamber to the first pilot port. 4. The fluid pressure control apparatus according to claim 3 , wherein the discharge passage is formed inside a body housing the load retaining mechanism and the control valve. 5. The fluid pressure control apparatus according to claim 4 , further comprising: a drain pipe connection port communicating with the discharge passage, the drain pipe connection port opening into the body, wherein the check valve is provided in the discharge passage such that the check valve is positioned downstream relative to the drain pipe connection port.
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operated by fluid pressure {(F15B13/0401, F15B13/0416 take precedence)} · CPC title
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Locking-valves or other detent {i.e. load-holding} devices · CPC title
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