IP Library › Granted Patent US 10,179,987
Granted Patent B2
US 10,179,987 · App. 14/917,723 · Granted Jan 15, 2019

Control system for hybrid construction machine

Inventors: Haruhiko Kawasaki (Kanagawa, JP); Masahiro Egawa (Saitama, JP)
Assignee: KYB Corporation
E02F9/2217E02F9/2075E02F9/2203E02F9/2282E02F9/2285E02F9/2292E02F9/2296F15B20/004F15B21/14H02K7/1823F15B2211/20515F15B2211/20523F15B2211/20546F15B2211/20576F15B2211/3058F15B2211/30595F15B2211/329F15B2211/355F15B2211/45F15B2211/67F15B2211/7053F15B2211/7142F15B2211/761F15B2211/8752F15B2211/88
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Quick Facts
Patent No.
US 10,179,987
App. No.
14/917,723
Granted
Jan 15, 2019
Kind
B2
Abstract

A control system for a hybrid construction machine includes first and second main pumps for supplying working oil, a boom cylinder extending by supply of the working oil to a piston-side chamber and raising a boom and contracting by discharge of the working oil from the piston-side chamber and lowering the boom, a regenerative spool valve controlled by a pressure of pilot pressure oil and adjusting a flow rate of the working oil discharged from the piston-side chamber, a regenerative motor for regeneration rotating by the working oil discharged from the piston-side chamber, a rotary electric machine connected to the regenerative motor, and a failsafe switching valve switching with a pressure of a regenerative passage between the regenerative control spool valve and the regenerative motor as a pilot pressure and lowering the pressure of the pilot pressure oil to the regenerative control spool valve so that a flow rate of the working oil discharged from the piston-side chamber is narrowed if the pressure of the regenerative passage is less than a set pressure.

Claims (22)

1. A control system for a hybrid construction machine, comprising:

a fluid pressure pump configured to supply a working fluid;

a fluid pressure cylinder configured to extend by supply of the working fluid to a load-side pressure chamber and raise the load, the fluid pressure cylinder being configured to contract by discharge of the working fluid from the load-side pressure chamber and lower the load;

a regenerative motor for regeneration configured to be rotated by the working fluid discharged from the load-side pressure chamber;

a regenerative passage, extending between the load-side pressure chamber and the regenerative motor, in which the working fluid from the load-side pressure chamber passes to the regenerative motor;

a regenerative flow-rate control valve provided between the load-side pressure chamber and the regenerative motor, and being controlled by a first pressure of a pilot fluid, the regenerative flow-rate control valve being configured to adjust a flow rate of the working fluid in a portion of the regenerative passage between the regenerative flow-rate control valve and the regenerative motor;

a rotary electric machine connected to the regenerative motor; and

a failsafe switching valve configured to adjust the first pressure for the regenerative flow-rate control valve and being controlled by a second pressure, the second pressure being a pressure of the working fluid flowing through the portion of the regenerative passage between the regenerative flow-rate control valve and the regenerative motor, when the second pressure is less than a set pressure, the failsafe switching valve decreasing the first pressure so that the flow rate of the working fluid in the regenerative passage is decreased.

2. The control system for a hybrid construction machine according to claim 1 , wherein

the failsafe switching valve is configured to discharge a part of the pilot fluid to a tank when the second pressure is less than the set pressure, thereby decreasing the first pressure.

3. The control system for a hybrid construction machine according to claim 1 , wherein

the pilot fluid is supplied to the failsafe switching valve for controlling the regenerative flow-rate control valve,

the failsafe switching valve is switched to a bleed orifice position at which the failsafe switching valve decreases the first pressure when the second pressure is less than the set pressure, and

the failsafe switching valve is switched to a communication position at which the failsafe switching valve passes through the pilot fluid without changing the first pressure when the second pressure is at the set pressure or more.

4. The control system for a hybrid construction machine according to claim 2 , further comprising:

an orifice-through which the pilot fluid to be supplied to the regenerative flow-rate control valve passes, wherein

the failsafe switching valve is provided in a passage branching from a downstream side of the orifice and communicating with the tank.

5. The control system for a hybrid construction machine according to claim 2 , further comprising:

a regeneration flow-rate control valve controlled by the first pressure, and being configured to lead a part of the working fluid led from the load-side pressure chamber to the tank as a regeneration fluid to an anti-load side pressure chamber of the fluid pressure cylinder when the load lowers.

6. The control system for a hybrid construction machine according to claim 3 , further comprising:

a regeneration flow-rate control valve controlled by the first pressure, and being configured to lead a part of the working fluid led from the load-side pressure chamber to the tank as a regeneration fluid to an anti-load side pressure chamber of the fluid pressure cylinder when the load lowers.

7. The control system for a hybrid construction machine according to claim 1 , wherein the pilot fluid for controlling the regenerative flow-rate control valve is supplied during an operation of the load being lowered.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 9, 2016
From: KAWASAKI, HARUHIKO; EGAWA, MASAHIRO
To: KYB CORPORATION
Reel/Frame 037933/0069 →
Priority Claims (1)
JP 2013-213961 · Oct 11, 2013 · national
Continuity (1)
Related Publication 20160215481A1 · Jul 28, 2016