Hydraulic system for construction equipment
09618017 ยท 2017-04-11
Assignee
Inventors
Cpc classification
F15B11/055
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/605
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/7058
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/20546
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/253
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/651
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/7135
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/78
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/6309
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E02F9/123
FIXED CONSTRUCTIONS
F15B2211/6652
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B11/165
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/25
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/6313
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/65
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F15B11/05
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B11/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A hydraulic system for a construction machine having a pressure compensation valve is disclosed, which improves operability when a combined operation of a swing device and an attachment is performed. The hydraulic system includes a hydraulic pump, attachment and swing operation devices, an attachment actuator and a swing motor connected to the hydraulic pump, a first control valve controlling hydraulic fluid being supplied to the actuator, a second control valve controlling hydraulic fluid being supplied to the swing motor, a check valve installed on a flow path for detecting load pressures of the actuator to take a maximum pressure of the load pressures, a first pressure compensation valve having an opening amount that is controlled by a difference between the maximum load sensing pressure and the pressure of a discharge flow path of the first control valve, a second pressure compensation valve having an opening amount that is controlled by a difference between the maximum load sensing pressure and the pressure of the discharge flow path of the second control valve, a maximum load pressure sensor detecting the pressure of a maximum load sensing pressure line, and a control unit controlling a discharge flow rate of the hydraulic pump, wherein the system is configured so that the swing load pressure is not connected to the first pressure compensation valve on the attachment side when a combined operation of the swing device and the attachment is performed.
Claims
1. A hydraulic system for a construction machine, comprising: a variable displacement hydraulic pump connected to an engine; an attachment operation device and a swing operation device outputting operation signals in proportion to operator's operation amounts; at least one attachment actuator connected to a discharge flow path of the hydraulic pump to be driven by the operation of the attachment operation device; a first control valve installed in the discharge flow path and shifted to control a start, a stop, and a direction change of the actuator in response to the operation of the attachment operation device; a swing motor connected to a flow path branched from the discharge flow path to be driven by the operation of the swing operation device; a second control valve installed in the flow path and shifted to control a start, a stop, and a direction change of the swing motor in response to the operation of the swing operation device; a first pressure compensation valve installed on a downstream side of the discharge flow path to have an opening amount that is controlled by a difference between a maximum load sensing pressure and a pressure on the downstream side of the discharge flow path; a second pressure compensation valve installed on the downstream side of the flow path to have an opening amount that is controlled by a difference between the maximum load sensing pressure and a pressure on the downstream side of the flow path; a pressure sensor detecting a discharge pressure of the hydraulic pump; a maximum load pressure sensor detecting a pressure of a maximum load sensing pressure line; an attachment operation amount detection means for detecting the operation amount of the attachment operation device; a swing operation amount detection means for detecting the operation amount of the swing operation device; and a control unit receiving an input of detection values of the pressure sensor of the hydraulic pump, the maximum load pressure sensor, the attachment operation amount detection means, and the swing operation amount detection means, and outputting a control signal for controlling a discharge flow rate of the hydraulic pump, wherein one of output ports of the first pressure compensation valve is connected to the attachment actuator through a spool of the first control valve, and another of the output ports thereof is connected to the maximum load sensing pressure line, and wherein one of output ports of the second pressure compensation valve is connected to the swing motor through a spool of the second control valve, and another of the output ports thereof is not connected to the maximum load sensing pressure line, but is connected to a swing load pressure sensor for detecting a load pressure of the swing motor.
2. The hydraulic system for a construction machine according to claim 1, wherein the attachment operation device and the swing operation device include hydraulic joysticks, and the attachment operation amount detection means and the swing operation amount detection means include pressure sensors.
3. The hydraulic system for a construction machine according to claim 1, wherein the attachment operation device and the swing operation device include electrical joysticks, and the attachment operation amount detection means and the swing operation amount detection means include potentiometers.
4. The hydraulic system for a construction machine according to claim 1, wherein the attachment operation device and the swing operation device include electrical joysticks, and the attachment operation amount detection means and the swing operation amount detection means include hall sensors.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The above objects, other features and advantages of the present invention will become more apparent by describing the preferred embodiments thereof with reference to the accompanying drawings, in which:
(2)
(3)
DESCRIPTION OF REFERENCE NUMERALS IN THE DRAWING
(4) 1: variable displacement hydraulic pump 2: attachment operation device 3: swing operation device 4: discharge flow rate 5: attachment actuator 6: flow path 7: swing motor 8: first control valve 9: second control valve 10: first pressure compensation valve 11: second pressure compensation valve 12: hydraulic pump discharge pressure sensor 13: maximum load pressure sensor 14: attachment operation amount detection means 15: swing operation amount detection means 16: control unit 17: hydraulic pump flow control valve 18: swing load pressure sensor 19: maximum load sensing pressure line
PREFERRED EMBODIMENTS OF THE INVENTION
(5) Hereinafter, preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings. The matters defined in the description, such as the detailed construction and elements, are nothing but specific details provided to assist those of ordinary skill in the art in a comprehensive understanding of the invention, and the present invention is not limited to the embodiments disclosed hereinafter.
(6) A hydraulic system for a construction machine according to an embodiment of the present invention, as illustrated in
(7) According to the hydraulic system as configured above, the control unit 16 compares the load pressure value of the swing motor 7 that is detected by a swing load pressure sensor 18 with the maximum load sensing pressure value detected by the maximum load pressure sensor 13, and selects a higher pressure value of the compared pressure values. If the difference between the selected pressure value and the pressure value detected by the hydraulic pump discharge pressure sensor 12 exceeds a preset value, the control unit 16 operates to reduce the discharge flow rate of the hydraulic pump 1 to improve the fuel ratio.
(8) On the other hand, in the case where the attachment operation device 2 and the swing operation device 3 include hydraulic joysticks, the attachment operation amount detection means 14 and the swing operation amount detection means 15 may include pressure sensors.
(9) In the case where the attachment operation device 2 and the swing operation device 3 include electrical joysticks, the attachment operation amount detection means 14 and the swing operation amount detection means 15 may include potentiometers.
(10) In the case where the attachment operation device 2 and the swing operation device 3 include electrical joysticks, the attachment operation amount detection means 14 and the swing operation amount detection means 15 may include hall sensors.
(11) Hereinafter, a use example of the hydraulic system for a construction machine according to an embodiment of the present invention will be described in detail.
(12) As shown in
(13) Accordingly, even in the case of the combined operation of the attachment, such as a boom, and the swing device of the excavator, the combined operability can be improved.
(14) On the other hand, if the swing motor 7 is solely operated for the swing operation, the pressure that is generated on the side of the swing motor 7 is not transferred to the maximum load sensing pressure line 19, and thus the pressure value of the maximum load sensing pressure line 19 that is detected by the maximum load pressure sensor 13 becomes equal to the pressure value of a hydraulic tank T. In this case, the pressure value that is detected by the hydraulic pump discharge pressure sensor 12 is equal to the load pressure of the swing motor 7, and the pressure value that is detected by the maximum load pressure sensor 13 is equal to the pressure value of the hydraulic tank T. If the difference between the pressure values exceeds the preset pressure value, the control unit 16 controls the hydraulic pump flow control valve 17 to reduce the discharge flow rate of the hydraulic pump 1. Accordingly, during the sole swing operation, the operability is lowered.
(15) The lowering of the operability during the sole swing operation can be solved by the swing load pressure sensor 18 that detects the load pressure of the swing motor 7. The swing load pressure sensor 18 is installed in the flow path in which the load pressure on the side of the swing motor 7 is intercepted by the swing load pressure sensor 18 so that the load pressure on the side of the swing motor 7 is not transferred to the maximum load sensing pressure line 19. Through this, the swing load pressure sensor 18 detects the load pressure that is generated on the side of the swing motor 7 and transfers a detection signal to the control unit 16. Accordingly, the control unit 16 compares the load pressure on the side of the swing motor 7 and the pressure that is detected by the maximum load pressure sensor 13 to select a higher pressure value as a reference value. If the difference between the selected pressure value and the pressure value detected by the hydraulic pump discharge pressure sensor 12 exceeds the preset value, the control unit 16 operates to reduce the discharge flow rate of the hydraulic pump 1, and thus operability can be secured even in the case of the sole swing operation.
(16) As described above, in the case of the combined operation of the swing device and the attachment, such as a boom, the load pressure that is generated on the side of the swing motor 7 is not transferred to the maximum load sensing pressure line 19. Due to this, the spool of the first pressure compensation valve 10 is not closed, and thus the hydraulic fluid of the hydraulic, pump 1 can be smoothly supplied to the attachment actuator 5.
(17) Further, in the case of the sole swing operation, if the difference between the higher value of the pressure value on the side of the swing motor 7 detected by the swing load pressure sensor 18 and the pressure value of the maximum load sensing pressure line 19 detected by the maximum load pressure sensor 13 and the pressure value detected by the hydraulic pump discharge pressure sensor 12 exceeds the preset value, the control unit 16 operates to reduce the discharge flow rate of the hydraulic pump 1. Through this, if the difference between the load pressure on the side of the swing motor 7 and the pressure value detected by the hydraulic pump discharge pressure sensor 12 does not exceed the preset value during the sole swing operation, the hydraulic fluid from the hydraulic pump 1 can be smoothly supplied to the side of the swing motor 7.
INDUSTRIAL APPLICABILITY
(18) As apparent from the above description; according to the hydraulic system for a construction machine according to the embodiment of the present invention, when the combined operation of the swing device and the attachment, such as a boom, is performed, workability can be improved. Further, if the difference between the load pressures of the hydraulic pump and the attachment exceeds the preset value, the discharge flow rate of the hydraulic pump is controlled to be reduced and thus the fuel ratio can be improved.