CN201391493Y - High-pressure energy accumulation hydraulic operation device - Google Patents

High-pressure energy accumulation hydraulic operation device Download PDF

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Publication number
CN201391493Y
CN201391493Y CN200920137800U CN200920137800U CN201391493Y CN 201391493 Y CN201391493 Y CN 201391493Y CN 200920137800 U CN200920137800 U CN 200920137800U CN 200920137800 U CN200920137800 U CN 200920137800U CN 201391493 Y CN201391493 Y CN 201391493Y
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CN
China
Prior art keywords
valve
mouth
way
pressure
work device
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
CN200920137800U
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Chinese (zh)
Inventor
黄新照
黄友斌
蔡聪荣
黄露
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
FUJIAN WANXIN GENERATING EQUIPMENT Co Ltd
Original Assignee
FUJIAN WANXIN GENERATING EQUIPMENT Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
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Application filed by FUJIAN WANXIN GENERATING EQUIPMENT Co Ltd filed Critical FUJIAN WANXIN GENERATING EQUIPMENT Co Ltd
Priority to CN200920137800U priority Critical patent/CN201391493Y/en
Application granted granted Critical
Publication of CN201391493Y publication Critical patent/CN201391493Y/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Abstract

The utility model relates to a high-pressure energy accumulation hydraulic operation device comprises a hydraulic source supply pipeline formed by an oil pump output pipe and an accommodator output pipe which are connected in parallel. The high-pressure energy accumulation hydraulic operation device is characterized in that the first branch of the hydraulic source supply pipeline controls a first operating cylinder D to carry out drive control of the opening and closing of a butterfly valve through a first two-position four-way directional valve A, the second branch thereof controls a second operating cylinder E to realize the plugging in and out of the lock of the butterfly valve through a second two-position four-way directional valve B, and the third branch thereof controls a third operating cylinder F to realize the drive of the opening and closing of a bypass valve through a third two-position four-way directional valve C. The device can provide stable pressure oil source for the hydraulic execution mechanism of a water inlet valve of a water turbine generating unit, has the advantages of high reliability, small volume and convenient operation, and ensures that the system can normally operate under the condition that the oil pump can not normally operate.

Description

High-voltage energy-storage hydraulic work device
Technical field
The utility model relates to a kind of high-voltage energy-storage hydraulic work device.
Technical background
Existing hydroturbine water intake valve control system still adopts gas compensating type oil gear structure at home, in control system, all adopt the stop valve of casting as control unit in decades, all adopt the steel pipeline to connect each other, therefore the layout of control unit is relatively disperseed, and causes bulky, the operation inconvenience of control gear, also is unfavorable for realizing automatic control.In addition, the stop valve of casting itself is comparatively coarse, sealing is poor, and the pipeline that connects is long, pipe joint is many, therefore easily produces and leaks, and causes the reliability of control gear to reduce, even causing the fault of malfunction, tripping, the safety that jeopardizes turbine equipment causes the generation of power station accident.
Summary of the invention
The purpose of this utility model provides a kind of high-voltage energy-storage hydraulic work device, this device can provide the pressure stable oil sources for the inlet valve hydraulic actuator of hydraulic generator unit, not only reliability height, volume are little, and easy to operate, system can normally move when the oil pump cisco unity malfunction simultaneously.
The technical solution of the utility model is achieved in that it comprises by scavenge delivery and the accumulator output tube formed hydraulic power supply line that is in parallel, it is characterized in that: described hydraulic power supply line one tunnel is controlled the drive controlling that the realization of first operating cylinder D opens and closes butterfly valve through the first two-position four way change valve A, another road second two-position four way change valve B controls the plug that the second operating cylinder E realizes butterfly valve lock ingot, and Third Road is controlled the driving that the 3rd operating cylinder F realization opens and closes bypass valve through the 3rd two-position four way change valve C.
The utility model has the advantages that reasonable in designly, structure is unique, compact structure, be beneficial to realize the stable of system pressure by being equipped with accumulator, need be equipped with the high pressure air system, adopt PLC control, reliability height, volume are little, easy to operate, are beneficial to installation and maintenance.
Description of drawings
Fig. 1 is the hydraulic system schematic representation of the utility model specific embodiment.
Embodiment
Below in conjunction with accompanying drawing embodiment of the present utility model is further elaborated.
As shown in the figure, high-voltage energy-storage hydraulic work device of the present utility model comprises by scavenge delivery (7) and accumulator output tube (15) the formed hydraulic power supply line that is in parallel, it is characterized in that: the drive controlling that described hydraulic power supply line one tunnel opens and closes butterfly valve (23) through the first two-position four way change valve A (26) control first operating cylinder D (24) realization, another road second two-position four way change valve B (17) control second operating cylinder E (19) realizes the plug of butterfly valve lock ingot (22), the driving that Third Road opens and closes bypass valve (21) through the 3rd two-position four way change valve C (18) control the 3rd operating cylinder F (20) realization.
Above-mentioned scavenge delivery is provided with the combination brake switch and proporting (6) of the hydraulic fluid pressure that is used to regulate oil pump output, described combination brake switch and proporting comprises two one-way valves (5), (11), a relief valve (3) and a unloading electromagnetic valve (4), described relief valve is located at one and is connected on the oil return branch road of fuel tank (1) from oil pump (2) output tube, one of described one-way valve (11) is connected on the scavenge delivery road, one end of another one-way valve (5) valve pocket is tapered, the spool of described another one-way valve is provided with one towards a side of tapered end and is used to block the protruding block that tapered end makes the valve pocket of its valve pocket that forms isolated tip and end waist, the other end of described spool is provided with an elastic pressuring spring, so that the state that the maintenance of the valve pocket of the valve pocket of tapered end tip and end waist is blocked, the valve pocket of described tapered end tip is connected with scavenge delivery, the valve pocket of its end waist is connected with fuel tank, its connecting pipeline is provided with the branch road that is connected with the P1 mouth of unloading electromagnetic valve, the valve pocket that described another one-way valve is equipped with elastic pressuring spring is connected with scavenge delivery, the O1 mouth of described unloading electromagnetic valve is connected with fuel tank, the A1 mouth of described unloading electromagnetic valve is connected with scavenge delivery, the B1 mouth of described unloading electromagnetic valve is connected with the valve pocket that elastic pressuring spring is housed of another one-way valve, described unloading electromagnetic valve is the 4th two-position four-way solenoid directional control valve, must not when electricity at electromagnet, the P1 mouth communicates with the O1 mouth, the A1 mouth communicates with the B1 mouth, get when electric at electromagnet, the P1 mouth communicates with the A1 mouth, and the B1 mouth communicates with the O1 mouth.
(2) at least two in above-mentioned oil pump is respectively through being connected in parallel on the scavenge delivery road after the combination brake switch and proporting pressure regulation.
The filler opening K mouth that the first above-mentioned two-position four way change valve A is used to spool is moved to realize commutation is connected with the A3 mouth of the 5th two-position four-way solenoid directional control valve H (16), the P3 mouth of described the 5th two-position four-way solenoid directional control valve H is connected with the hydraulic power supply line, the O3 mouth of described the 5th two-position four-way solenoid directional control valve H is connected with fuel tank, the B3 mouth of described the 5th two-position four-way solenoid directional control valve H is connected with the filler opening M mouth that the first two-position four way change valve A is used to spool is moved to realize commutation, described the 5th two-position four-way solenoid directional control valve H must not when electricity at electromagnet, the P3 mouth communicates with the A3 mouth, the O3 mouth communicates with the B3 mouth, get when electric at electromagnet, the P3 mouth communicates with the B3 mouth, and the A3 mouth communicates with the O3 mouth.
The second above-mentioned two-position four way change valve B is the second two-position four-way solenoid directional control valve, and described the 3rd two-position four way change valve C is the 3rd two-position four-way solenoid directional control valve.
The output pipe of above-mentioned accumulator is provided with a stop valve (14), and the output terminal of described accumulator and the pipeline between the stop valve are provided with an oil return branch road that is communicated to fuel tank, and described oil return branch road is provided with a manual unloading valve (12).
(13) at least two of above-mentioned accumulators, the in parallel connection of output terminal that it is connected with stop valve is beneficial to stable system pressure or provides enough pressure oil for system when the oil pump cisco unity malfunction.
The pipeline that the input end of above-mentioned oil pump is connected to fuel tank is provided with oil suction filter (28), and described operating cylinder is connected on the return line of fuel tank and is provided with return filter (27) at the end near fuel tank.
Also be provided with the pressure monitoring unit on the above-mentioned scavenge delivery, described pressure monitoring unit comprises and is used to show force value and the pressure indicating ﹠ controlling device (9) of reporting to the police in hypotony or when too high and is used to control the starting of oil pump low pressure and pressure transmitter (10) that high pressure stops that the pipeline that described pressure monitoring unit is communicated to scavenge delivery is provided with stop valve (8).
The connecting pipeline of first above-mentioned two-position four way change valve A to the first operating cylinder D is provided with one-way throttle valve (25).
Working principle of the present utility model is such: motor drives oil pump by coupling and rotates, and absorbs hydraulic oil from fuel tank, after the combination brake switch and proporting pressure regulation, exports from the scavenge delivery road.The hydraulic pressure oil content of exporting from the scavenge delivery road three tunnel is control first operating cylinder D, the second operating cylinder E, the 3rd operating cylinder F behind the first two-position four way change valve A, the second two-position four way change valve B, the 3rd two-position four way change valve C respectively.The second two-position four way change valve B, the 3rd two-position four way change valve C are the two-position four-way solenoid directional control valve, when electromagnet gets when electric, the second two-position four way change valve B, the 3rd two-position four way change valve C action, the oil inlet end of the second operating cylinder E, the 3rd operating cylinder F and oil outlet end be conversion mutually respectively, hydraulic oil promotes piston rod and moves, thereby the working state of lock ingot and bypass valve is changed.When the electromagnet dead electricity, the second two-position four way change valve B, the 3rd two-position four way change valve C reset, and oil inlet end and the oil outlet end of the second operating cylinder E, the 3rd operating cylinder F are returned to initial state, and piston rod is returned to initial state.
The first two-position four way change valve A that controls the first operating cylinder D work also is connected with one the 5th two-position four-way solenoid directional control valve H, when the electromagnet of the 5th two-position four-way solenoid directional control valve H gets when electric, the P3 mouth of the 5th two-position four-way solenoid directional control valve H communicates with the B3 mouth, the A3 mouth communicates with the O3 mouth, this moment, hydraulic oil entered the first two-position four way change valve A through the filler opening K of the first two-position four way change valve A, promote the spool of the first two-position four way change valve A, the path of the first two-position four way change valve A is changed, thereby the oil inlet end of first operating cylinder D and oil outlet end are changed, hydraulic oil promotes piston rod and moves, thereby the keying state of butterfly valve is changed.When the electromagnet dead electricity of the 5th two-position four-way solenoid directional control valve H, the P3 mouth communicates with the A3 mouth, the O3 mouth communicates with the B3 mouth, this moment, hydraulic oil entered the first two-position four way change valve A through the filler opening M of the first two-position four way change valve A, make the first two-position four way change valve A be returned to initial working state, make the piston rod of operating cylinder be returned to initial working state.
Pressure for stable system, high-voltage energy-storage hydraulic work device also is provided with 3 accumulators parallel with one another, the output tube and the scavenge delivery of accumulator are in parallel, accumulator can change the unnecessary energy in the system into the compression energy or potential energy stores when the system instantaneous pressure increases, when when energy deficiency (provide as oil hydraulic pump cisco unity malfunction or oil hydraulic pump) is provided in system, to compress again can or potential energy change the hydraulic pressure energy into and discharge, again mend supply system, normal to guarantee whole system pressure.Accumulator of the present utility model is the gas-filled type accumulator, fills nitrogen in its leather bag, and normal inflation is 8.0~8.5Mpa.Every power station is equipped with a cover nitrogen detection device, is used for checking nitrogen pressure.Every three months detects nitrogen pressure at least one time during proper functioning, if there is leakage should replenish nitrogen, guarantees that the interior nitrogen pressure of accumulator is within the scope that requires.
When system needs off-load, the unloading electromagnetic valve action, electromagnet gets electric, and the P1 mouth of unloading electromagnetic valve communicates with the A1 mouth, and the B1 mouth communicates with the O1 mouth, and directly get back to the fuel tank by unloading electromagnetic valve from the hydraulic oil of oil pump output this moment, thereby reach the purpose of off-load.
The utility model is reasonable in design, and structure is unique, and compact structure need not be equipped with the high pressure air system, adopts PLC control, and reliability height, volume are little, easy to operate, are beneficial to installation and maintenance, have bigger promotional value, and its market prospects are considerable.
Though the utility model discloses as above with embodiment; right its is not in order to limit the utility model; have in the technical field under any and know the knowledgeable usually; in not breaking away from spirit and scope of the present utility model; when doing a little change and retouching, therefore protection domain of the present utility model is as the criterion when looking accompanying the claim person of defining.

Claims (10)

1. high-voltage energy-storage hydraulic work device, comprise by scavenge delivery and the accumulator output tube formed hydraulic power supply line that is in parallel, it is characterized in that: described hydraulic power supply line one tunnel is controlled the drive controlling that the realization of first operating cylinder D opens and closes butterfly valve through the first two-position four way change valve A, another road second two-position four way change valve B controls the plug that the second operating cylinder E realizes butterfly valve lock ingot, and Third Road is controlled the driving that the 3rd operating cylinder F realization opens and closes bypass valve through the 3rd two-position four way change valve C.
2. high-voltage energy-storage hydraulic work device according to claim 1, it is characterized in that: described scavenge delivery is provided with the combination brake switch and proporting of the hydraulic fluid pressure that is used to regulate oil pump output, described combination brake switch and proporting comprises two one-way valves, a relief valve and a unloading electromagnetic valve, described relief valve is located at one and is connected on the oil return branch road of fuel tank from scavenge delivery, one of described one-way valve is connected on the scavenge delivery road, another one-way valve is a cartridge valve, one end of its valve pocket is tapered, the spool of described another one-way valve is provided with one towards a side of tapered end and is used to block the protruding block that tapered end makes the valve pocket of its valve pocket that forms isolated tip and end waist, the other end of described spool is provided with an elastic pressuring spring, so that the state that the maintenance of the valve pocket of the valve pocket of tapered end tip and end waist is blocked, the valve pocket of described tapered end tip is connected with scavenge delivery, the valve pocket of its end waist is connected with fuel tank, its connecting pipeline is provided with the branch road that is connected with the P1 mouth of unloading electromagnetic valve, the valve pocket that described another one-way valve is equipped with elastic pressuring spring is connected with scavenge delivery, the O1 mouth of described unloading electromagnetic valve is connected with fuel tank, the A1 mouth of described unloading electromagnetic valve is connected with scavenge delivery, the B1 mouth of described unloading electromagnetic valve is connected with the valve pocket that elastic pressuring spring is housed of another one-way valve, described unloading electromagnetic valve is the 4th two-position four-way solenoid directional control valve, must not when electricity at electromagnet, the P1 mouth communicates with the O1 mouth, the A1 mouth communicates with the B1 mouth, get when electric at electromagnet, the P1 mouth communicates with the A1 mouth, and the B1 mouth communicates with the O1 mouth.
3. high-voltage energy-storage hydraulic work device according to claim 2 is characterized in that: at least two in described oil pump, and respectively through being connected in parallel on the scavenge delivery road after the combination brake switch and proporting pressure regulation.
4. high-voltage energy-storage hydraulic work device according to claim 1, it is characterized in that: the filler opening K mouth that the described first two-position four way change valve A is used to spool is moved to realize commutation is connected with the A3 mouth of the 5th two-position four-way solenoid directional control valve H, the P3 mouth of described the 5th two-position four-way solenoid directional control valve H is connected with the hydraulic power supply line, the O3 mouth of described the 5th two-position four-way solenoid directional control valve H is connected with fuel tank, the B3 mouth of described the 5th two-position four-way solenoid directional control valve H is connected with the filler opening M mouth that the first two-position four way change valve A is used to spool is moved to realize commutation, described the 5th two-position four-way solenoid directional control valve H must not when electricity at electromagnet, the P3 mouth communicates with the A3 mouth, the O3 mouth communicates with the B3 mouth, get when electric at electromagnet, the P3 mouth communicates with the B3 mouth, and the A3 mouth communicates with the O3 mouth.
5. high-voltage energy-storage hydraulic work device according to claim 1 is characterized in that: the described second two-position four way change valve B is the second two-position four-way solenoid directional control valve, and described the 3rd two-position four way change valve C is the 3rd two-position four-way solenoid directional control valve.
6. high-voltage energy-storage hydraulic work device according to claim 1, it is characterized in that: the output pipe of described accumulator is provided with a stop valve, the output terminal of described accumulator and the pipeline between the stop valve are provided with an oil return branch road that is communicated to fuel tank, and described oil return branch road is provided with a manual unloading valve.
7. high-voltage energy-storage hydraulic work device according to claim 6, it is characterized in that: at least two of described accumulators, the in parallel connection of output terminal that it is connected with stop valve is beneficial to stable system pressure or provides enough pressure oil for system when the oil pump cisco unity malfunction.
8. high-voltage energy-storage hydraulic work device according to claim 1, it is characterized in that: the pipeline that the input end of described oil pump is connected to fuel tank is provided with the oil suction filter, and described operating cylinder is connected on the return line of fuel tank and is provided with return filter at the end near fuel tank.
9. high-voltage energy-storage hydraulic work device according to claim 1, it is characterized in that: also be provided with the pressure monitoring unit on the described scavenge delivery, described pressure monitoring unit comprises and is used to show force value and the pressure indicating ﹠ controlling device of reporting to the police in hypotony or when too high and is used to control the pressure transmitter that the starting of oil pump low pressure and high pressure stop.
10. high-voltage energy-storage hydraulic work device according to claim 1 is characterized in that: the connecting pipeline of described first two-position four way change valve A to the first operating cylinder D is provided with one-way throttle valve.
CN200920137800U 2009-04-23 2009-04-23 High-pressure energy accumulation hydraulic operation device Expired - Lifetime CN201391493Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN200920137800U CN201391493Y (en) 2009-04-23 2009-04-23 High-pressure energy accumulation hydraulic operation device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN200920137800U CN201391493Y (en) 2009-04-23 2009-04-23 High-pressure energy accumulation hydraulic operation device

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CN201391493Y true CN201391493Y (en) 2010-01-27

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101532515B (en) * 2009-04-23 2011-04-20 福建万新发电设备有限公司 High-voltage energy-storage hydraulic work device
CN102295154A (en) * 2011-06-08 2011-12-28 徐州五洋科技有限公司 Electro-hydraulic control system for disc-type braking device of declining belt conveyor
CN103906930A (en) * 2011-10-14 2014-07-02 Sk新技术株式会社 Hydraulic control device using hydraulic actuator

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101532515B (en) * 2009-04-23 2011-04-20 福建万新发电设备有限公司 High-voltage energy-storage hydraulic work device
CN102295154A (en) * 2011-06-08 2011-12-28 徐州五洋科技有限公司 Electro-hydraulic control system for disc-type braking device of declining belt conveyor
CN103906930A (en) * 2011-10-14 2014-07-02 Sk新技术株式会社 Hydraulic control device using hydraulic actuator
US20150219124A1 (en) * 2011-10-14 2015-08-06 Sk Innovation Co., Ltd. Hydraulic control device using hydraulic actuator
KR101862868B1 (en) * 2011-10-14 2018-07-06 에스케이이노베이션 주식회사 Stepless capacity control system of reciprocating compressor by hydraulic operated variable clearance pocket

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20100127

Effective date of abandoning: 20090423