Hydraulic drive system
This hydraulic drive system includes: a hydraulic pump that supplies a working fluid to a hydraulic actuator; a meter-in control valve that controls a flow rate of the working fluid flowing from the hydraulic pump to the hydraulic actuator; a meter-out control valve that controls a flow rate of the working fluid being drained from the hydraulic actuator into a tank; and a regeneration valve that supplies, to the hydraulic actuator, the working fluid drained from the hydraulic actuator. The meter-out control valve is connected to the hydraulic actuator in parallel with the regeneration valve.
1 . A hydraulic drive system comprising:
a hydraulic pump that supplies a working fluid to a hydraulic actuator including two ports;
a first control valve that is a spool valve connected to one of the two ports, and controls a meter-in flow rate of the working fluid being supplied from the hydraulic pump to the one of the two ports and a meter-out flow rate of the working fluid being drained from the one of the two ports into a tank;
a regeneration valve that supplies, to the hydraulic actuator, the working fluid drained from the hydraulic actuator;
a second control valve that is a spool valve connected to the hydraulic actuator in parallel with the regeneration valve and connected to the other of the two ports, and controls a meter-in flow rate of the working fluid being supplied from the hydraulic pump to the other of the two ports and a meter-out flow rate of the working fluid being drained from the other of the two ports into the tank;
an operation device that outputs an operation signal corresponding to an amount of operation of an operation tool; and
a control device that controls an opening of each of the regeneration valve and the second control valve to drain the working fluid from the hydraulic actuator at a flow rate corresponding to the operation signal from the operation device, wherein:
the control device estimates a regeneration flow rate on the basis of an opening degree of the regeneration valve and controls the opening of the second control valve to cause the working fluid to flow into the tank at a meter-out flow rate which is a difference between a drainage flow rate of the working fluid being drained from the hydraulic actuator according to the operation signal from the operation device and the estimated regeneration flow rate.
2 . The hydraulic drive system according to claim 1 , further comprising:
a first pressure sensor that measures a drainage pressure which is a pressure of the working fluid being drained from the hydraulic actuator, wherein:
the control device estimates a regeneration flow rate on the basis of a downstream pressure of the regeneration valve and the drainage pressure measured by the first pressure sensor; and
the downstream pressure of the regeneration valve is estimated on the basis of the drainage pressure measured by the first pressure sensor and the opening degree of the regeneration valve.
3 . The hydraulic drive system according to claim 2 , further comprising:
a second pressure sensor that measures a supply pressure which is a pressure of the working fluid being supplied to the hydraulic actuator, wherein:
the control device estimates the downstream pressure of the regeneration valve on the basis of the drainage pressure measured by the first pressure sensor, the supply pressure measured by the second pressure sensor, and the opening degree of the regeneration valve.
4 . The hydraulic drive system according to claim 1 ,
wherein:
the control device sets, according to a load state of the hydraulic actuator, a regeneration ratio which is a ratio of the regeneration flow rate to the drainage flow rate of the working fluid being drained from the hydraulic actuator, and controls the opening of the regeneration valve according to the regeneration ratio.
5 . A hydraulic drive system comprising:
a hydraulic pump that supplies a working fluid to a hydraulic actuator including two ports;
a first control valve that is a spool valve connected to one of the two ports, and controls a meter-in flow rate of the working fluid being supplied from the hydraulic pump to the one of the two ports and a meter-out flow rate of the working fluid being drained from the one of the two ports into a tank;
a regeneration valve that supplies, to the hydraulic actuator, the working fluid drained from the hydraulic actuator;
a second control valve that is a spool valve connected to the hydraulic actuator in parallel with the regeneration valve and connected to the other of the two ports, and controls a meter-in flow rate of the working fluid being supplied from the hydraulic pump to the other of the two ports and a meter-out flow rate of the working fluid being drained from the other of the two ports into the tank;
a first pressure sensor that measures a drainage pressure which is a pressure of the working fluid being drained from the hydraulic actuator;
an operation device that outputs an operation signal corresponding to an amount of operation of an operation tool; and
a control device that controls an opening of each of the regeneration valve and the second control valve to drain the working fluid from the hydraulic actuator at a flow rate corresponding to the operation signal from the operation device, wherein:
the control device estimates a regeneration flow rate on the basis of a downstream pressure of the regeneration valve and the drainage pressure measured by the first pressure sensor; and
the downstream pressure of the regeneration valve is estimated on the basis of the drainage pressure measured by the first pressure sensor and an opening degree of the regeneration valve.
6 . A hydraulic drive system comprising:
a hydraulic pump that supplies a working fluid to a hydraulic actuator including two ports;
a first control valve that is a spool valve connected to one of the two ports, and controls a meter-in flow rate of the working fluid being supplied from the hydraulic pump to the one of the two ports and a meter-out flow rate of the working fluid being drained from the one of the two ports into a tank;
a regeneration valve that supplies, to the hydraulic actuator, the working fluid drained from the hydraulic actuator;
a second control valve that is a spool valve connected to the hydraulic actuator in parallel with the regeneration valve and connected to the other of the two ports, and controls a meter-in flow rate of the working fluid being supplied from the hydraulic pump to the other of the two ports and a meter-out flow rate of the working fluid being drained from the other of the two ports into the tank;
an operation device that outputs an operation signal corresponding to an amount of operation of an operation tool; and
a control device that controls an opening of each of the regeneration valve and the second control valve to drain the working fluid from the hydraulic actuator at a flow rate corresponding to the operation signal from the operation device, wherein:
the control device sets, according to a load state of the hydraulic actuator, a regeneration ratio which is a ratio of a regeneration flow rate to a drainage flow rate of the working fluid being drained from the hydraulic actuator, and controls the opening of the regeneration valve according to the regeneration ratio.