Claims
- 1. A injection control method of a boost-type die-casting machine including an injection plunger for injecting molten material into a casting die, an injection cylinder device having an injection piston for driving the injection plunger, and a boost cylinder device for boosting hydraulic oil supplied to the injection cylinder device, comprising:providing a flow-rate control valve capable of continuously regulating flow-rate of a hydraulic oil discharging channel of the injection cylinder device and a boost cylinder discharging channel of the boost cylinder device; and synchronously controlling back-pressure of the injection cylinder device and back-pressure of the boost cylinder device during a boosting process by the boost cylinder device.
- 2. The injection control method according to claim 1, wherein the flow-rate control valve is controlled by comparing a difference between a detected pressure value detected by the injection cylinder device and the boost cylinder device and a command pressure value and open-degree of the flow-rate control valve so that the open-degree corresponds to the difference.
- 3. The injection control method according to claim 2, wherein the detected pressure value and the command pressure value are compared for every elapsed time given in accordance with a predetermined program to eliminate difference between the detected pressure value and the command pressure value.
- 4. The injection control method according to claim 1, wherein the flow-rate control valve is controlled so that a relationship between casting pressure and boost time in the casting die changes in accordance with a selective curve along a predetermined critical boost curve for avoiding burr occurrence to the casting die during the synchronous controlling process.
- 5. An injection control device of a boost-type die-casting machine including an injection plunger for injecting molten material into a casting die, an injection cylinder device having an injection piston for driving the injection plunger and a boost cylinder device having a boost cylinder for boosting hydraulic oil supplied to the injection cylinder device, the injection control device comprising:a flow-rate control valve configured to continuously control a flow-rate in a hydraulic discharging channel of the injection cylinder device and a boost cylinder discharging channel of the boost cylinder device; and a synchronous controller configured to synchronously control a back pressure of the injection cylinder device and a back-pressure of the boost cylinder device during a boosting process by the boost cylinder device.
- 6. The injection control device according to claim 5, wherein the synchronous controller comprises:a detecting means for detecting a pressure value in the injection cylinder, a detecting means for detecting a pressure value in the boost cylinder, and a comparing means for comparing the detected pressure in the injection cylinder and boost cylinder with the predetermined command pressure.
- 7. The injection control device according to claim 5, wherein the flow-rate control valve is a high-responsive electrohydraulic servovalve.
- 8. The injection control device according to claim 5, wherein the hydraulic discharging channel of the injection cylinder device and a hydraulic discharging channel from the boost cylinder device are connected.
- 9. The injection control device according to claim 5, the synchronous controller further comprising a pressure detector for detecting a casting pressure of the injection cylinder device, a pressure processor for processing an output from the pressure detecting means, a boost controller for outputting a command pressure value for every elapsed time according to a predetermined program, and a comparator for calculating a difference between a pressure outputted by the pressure processing means and a command pressure value outputted by the boost controller.
- 10. The injection control device according to claim 9, the synchronous controller further comprising a servo amplifier for controlling the flow-rate control valve so that a relationship between a casting pressure and boost time of the casting die changes in accordance with a selective curve along a predetermined critical boost curve for avoiding burr occurrence in die-casting products during the casting die during the boosting process by the boost cylinder device based on a difference outputted by the comparator.
- 11. The injection control device according to claim 5, further comprising a boost control valve for controlling boosting time on a hydraulic oil supply side of the boost cylinder.
- 12. The injection control device according to claim 11, the boost control valve further comprising a spool movable by operating a switching valve and an adjusting stopper for adjusting a moving amount of the spool, a distal end portion of the hydraulic oil supply side of the spool being tapered for narrowing the flow-rate of the hydraulic oil to regulate pressure and flow-rate of pressurizing portion of the boost piston.
- 13. The injection control device according to claim 5, wherein the synchronous controller controls the flow-rate control valve so that a relationship between a casting pressure and boost time of the casting die changes in accordance with along a selective curve along a predetermined critical boost curve for avoiding burr occurrences to the casting die during the synchronous controlling process.
- 14. The injection control device according to claim 13, the synchronous controller compares a detected pressure value detected by the injection cylinder device and the boost cylinder device and a command pressure value for every elapsed time given in accordance with a predetermined program and controls the flow-rate control valve to eliminate difference between the pressure values.
- 15. The injection control device according to claim 14, wherein the synchronous controller compares difference between the detected pressure value and the command pressure value and open-degree of the flow-rate control valve and controls the flow-rate control valve so that the open-degree corresponds to the difference.
- 16. The injection control device according to claim 5, wherein the flow control valve has a main spool to be opened and shut by a pilot servovalve.
- 17. The injection control device according to claim 16, further comprising a position sensor for detecting open-degree of the main spool.
- 18. The injection control device according to claim 17, wherein a command signal outputted by the position sensor and a difference between a command pressure value outputted by a boost controller and a detected pressure value detected by the injection cylinder device and the boost cylinder device are fed back to an input of the pilot servovalve.
Priority Claims (1)
Number |
Date |
Country |
Kind |
10-311949 |
Nov 1998 |
JP |
|
Parent Case Info
This is a Continuation application of U.S. patent application Ser. No.: 09/432,256, filed Nov. 2, 1999 now U.S. Pat. No. 6,241,003.
US Referenced Citations (8)
Foreign Referenced Citations (4)
Number |
Date |
Country |
04172165 |
Nov 1990 |
JP |
9-239515 |
Mar 1996 |
JP |
9-323150 |
Jun 1996 |
JP |
2001205418 |
Jul 2001 |
JP |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09/432256 |
Nov 1999 |
US |
Child |
09/837220 |
|
US |