Claims
- 1. A control system of an industrial truck comprising:
a first switch which is provided for a body, wherein said first switch detects whether or not an operator sits down on a seat, and carries out a first operation based on said detecting result by said first switch; a second switch which is provided for said body, wherein said second switch detects whether or not a device for operating an actuator is operated, and carries out a second operation based on said detecting result by said second switch; and a hydraulic circuit which is used for operating of said actuator and contains hydraulic fluid, wherein said hydraulic circuit includes: a control valve which includes a spool (22D, 22N, 22U) that position is changed by said device, a first circulating line which includes said control valve, wherein said hydraulic fluid circulates through said first circulating line, a hydraulic line which connects said spool (22D, 22N, 22U) with said actuator, wherein said hydraulic fluid passes through said hydraulic line, and a drive lock valve which is provided for said hydraulic line, said drive lock valve blocks said hydraulic line, based on one of said first operation and said first and second operations.
- 2. The control system of an industrial truck according to claim 1, wherein said drive lock valve blocks said hydraulic line by closing said drive lock valve under a condition that said first switch does not carries out said first operation.
- 3. The control system of an industrial truck according to claim 1, wherein said first operation is to output a first signal indicating that said operator sits down on the seat, and
said second operation is to output a second signal indicating that said device for operating an actuator is operated.
- 4. The control system of an industrial truck according to claim 1, wherein said first operation is carried out when a predetermined time period passes since just after a first status changes to a second status,
said first status indicates that said first switch is detecting that said operator sits down on the seat, and said second status indicates that said first switch is detecting that said operator does not sit down on the seat.
- 5. The control system of an industrial truck according to claim 1, wherein said hydraulic circuit further includes:
a second circulating line which is connected in parallel with said first circulating line, and does not include said control valve, wherein said hydraulic fluid bypasses said control valve through second circulating line, and an unloading valve which operates in response to said first operation, and is included in said second circulating line, said unloading valve is opened to connect an upstream of said unloading valve with an hydraulic fluid tank directly, based on one of said first operation and said first and second operations.
- 6. The control system of an industrial truck according to 5, wherein said unloading valve is opened to connect an upstream of said unloading valve with said hydraulic fluid tank directly, under a condition that said first switch does not carries out said first operation.
- 7. The control system of an industrial truck according to claim 5, further comprising:
a controller which controls said drive lock valve and said unloading valve based on said one of said first operation and said first and second operations.
- 8. The control system of an industrial truck according to claim 1, wherein said second switch outputs electric signal corresponding to operational positions of said device.
- 9. The control system of an industrial truck according to claim 1, wherein said actuator is operated by using the gravitation against a machine element.
- 10. The control system of an industrial truck according to claim 9, wherein said machine element is one of a crane arm of a truck crane, a shovel of a shovel type excavator, a fork of a forklift truck, a ladder of a fire-fighting vehicle, a hatch of a refuse collector and a ramp of a car carrier.
- 11. A controlling method of an industrial truck, wherein said industrial truck including:
a first switch which is provided for a body; a second switch which is provided for said body; and a hydraulic circuit which is used for operating of said actuator and includes hydraulic fluid, said hydraulic circuit includes: a control valve which includes a spool (22D, 22N, 22U) that position is changed by said operating device, a first circulating line which includes said control valve, wherein said hydraulic fluid circulates through said first circulating line, a hydraulic line which connects said spool (22D, 22N, 22U) with said actuator, wherein said hydraulic fluid passes through said hydraulic line, and a drive lock valve which is provided for said hydraulic line, said controlling method comprising: (a) detecting whether or not an operator sits down on a seat, and carrying out a first operation based on said detection result by said first switch; (b) detecting whether or not a device for operating an actuator is operated, and carrying out a second operation based on said detection result by said second switch; and (c) carrying out blocks said hydraulic line by using said drive lock valve, based on one of said first operation and said first and second operations.
- 12. The controlling method of an industrial truck according to claim 11, wherein said step (c) includes:
(c1) closing said drive lock valve to block said hydraulic line under a condition that said first switch does not carries out said first operation.
- 13. The controlling method of an industrial truck according to claim 11, wherein said first operation is to output a first signal indicating that said operator sits down on the seat, and
said second operation is to output a second signal indicating that said device for operating an actuator is operated.
- 14. The controlling method of an industrial truck according to claim 11, wherein said step (a) includes:
(a1) detecting a first status that said operator sits down on the seat; (a2) detecting a second status that said operator does not sit down on the seat; and (a3) carrying out said first operation when a predetermined time period passes since just after said first situation changes to said second situation.
- 15. The controlling method of an industrial truck according to claim 11, wherein said first operation takes priority of said second operation in said step (c).
- 16. The controlling method of an industrial truck according to claims 11, wherein said actuator is operated by using the gravitation against a machine element.
- 17. The controlling method of an industrial truck according to claim 11, wherein said step (b) includes:
(b1) detecting whether or not a device for operating an actuator is operated to a predetermined direction, and (b2) carrying out a second operation when said device is operated to said predetermined direction.
- 18. The controlling method of an industrial truck according to claim 11, further comprising:
(d) opening a unloading valve to connect an upstream of said unloading valve with an hydraulic fluid tank directly, based on one of said first operation and said first and second operations, wherein said unloading valve is included in a second circulating line, and operates in response to said first operation, said second circulating line is connected in parallel with said first circulating line, and does not include said control valve, wherein said hydraulic fluid bypasses said control valve through second circulating line.
- 19. The controlling method of an industrial truck according to claim 18, wherein said step (d) includes:
(d1) opening said unloading valve to connect said upstream of said unloading valve with said hydraulic fluid tank directly, under a condition that said first switch does not carries out said first operation.
Priority Claims (1)
Number |
Date |
Country |
Kind |
153840/2003 |
May 2003 |
JP |
|
CROSS REFERENCE
[0001] The present invention relates to U.S. patent application Ser. No. ______ entitled “CONTROL SYSTEM OF SELF PROPELLERED INDUSTRIAL MACHINE” and claiming a priority based on Japanese Patent Application No. 2003-153304. The disclosures of them are incorporated herein by reference.