CN106402075A - Electro-hydraulic digital directional valve - Google Patents

Electro-hydraulic digital directional valve Download PDF

Info

Publication number
CN106402075A
CN106402075A CN201610989218.3A CN201610989218A CN106402075A CN 106402075 A CN106402075 A CN 106402075A CN 201610989218 A CN201610989218 A CN 201610989218A CN 106402075 A CN106402075 A CN 106402075A
Authority
CN
China
Prior art keywords
valve
main valve
valve body
pilot valve
pilot
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.)
Pending
Application number
CN201610989218.3A
Other languages
Chinese (zh)
Inventor
胡万强
姚宁
董永强
岑辉
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.)
Xuchang University
Original Assignee
Xuchang University
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
Publication date
Application filed by Xuchang University filed Critical Xuchang University
Priority to CN201610989218.3A priority Critical patent/CN106402075A/en
Publication of CN106402075A publication Critical patent/CN106402075A/en
Pending legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F15FLUID-PRESSURE ACTUATORS; HYDRAULICS OR PNEUMATICS IN GENERAL
    • F15BSYSTEMS ACTING BY MEANS OF FLUIDS IN GENERAL; FLUID-PRESSURE ACTUATORS, e.g. SERVOMOTORS; DETAILS OF FLUID-PRESSURE SYSTEMS, NOT OTHERWISE PROVIDED FOR
    • F15B13/00Details of servomotor systems ; Valves for servomotor systems
    • F15B13/02Fluid distribution or supply devices characterised by their adaptation to the control of servomotors
    • F15B13/021Valves for interconnecting the fluid chambers of an actuator
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F15FLUID-PRESSURE ACTUATORS; HYDRAULICS OR PNEUMATICS IN GENERAL
    • F15BSYSTEMS ACTING BY MEANS OF FLUIDS IN GENERAL; FLUID-PRESSURE ACTUATORS, e.g. SERVOMOTORS; DETAILS OF FLUID-PRESSURE SYSTEMS, NOT OTHERWISE PROVIDED FOR
    • F15B13/00Details of servomotor systems ; Valves for servomotor systems
    • F15B13/16Special measures for feedback, e.g. by a follow-up device

Landscapes

  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Servomotors (AREA)

Abstract

The invention discloses an electro-hydraulic digital directional valve, and belongs to the field of hydraulic valves. The electro-hydraulic digital directional valve comprises a left pilot valve body, a right pilot valve body, a left main valve body, a right main valve body, a left pilot valve element drive unit, a right pilot valve element drive unit, a left main valve control oil-way pressure detecting unit and a right main valve control oil-way pressure detecting unit. The electro-hydraulic digital directional valve is characterized in that a left main valve element and a right main valve element are independently controlled by the left pilot valve body and the right pilot valve body correspondingly, the control precision is high, and the response speed is high; and in addition, the optimal double-main-valve-element control scheme can be determined according to use conditions of all execution components.

Description

A kind of electrohydraulic digital reversal valve
Technical field
The present invention relates to hydraulic buttery valve technical field, particularly a kind of fast response time, control accuracy is high and controls Pattern can separate configurations, the electrohydraulic digital reversal valve of flexible combination.
Background technology
Electro hydraulic valve, as a kind of important valve class of hydraulic drive and control system, is mainly made up of pilot valve and main valve, Pilot valve is generally electromagnetic valve reversal valve, mainly passes through commutation control entrance main valve oil circuit, thus play vulnerabilities scan big flow, The effect of big pressure.But general pilot valve is ordinary electromagnetic reversal valve, simple oil circuit commutation can only be played, cannot be to fluid Pressure, flow play and are accurately controlled, if working conditions change, such as executive component need different movement velocitys, then need to use Electro-hydraulic proportional valve is realizing.
Although electro-hydraulic proportional valve can carry out linear scale control to pressure and flow, proportion electro-magnet input current is big, The shortcomings of high frequency response is slow.In recent years, the control effect in order to obtain, people with digital valve as pilot valve, thus developing Become electrohydraulic digital valve.It can directly and computer enters line interface it is not necessary to D/A converter, with proportioning valve, servo valve phase This, such valve arrangement is simple, good manufacturability, reproducible, stable and reliable in work, because it will be tight to computer and hydraulic technique In conjunction with, thus have broad application prospects.
Traditional digital valve control mode typically adopts Incremental control and pulse width modulation controlled method, and Incremental control is main Produce digital type pulse signal drive stepping motor by control system to rotate, then by mechanical switching device, motor is revolved Transhipment is dynamic to be converted to linear motion, thus carrying movable valve plug to move, controlling and adjusting hydraulic parameter.But because motor has relatively Large rotating inertia, after being mechanically connected with hydraulic valve, inertia increases, and natural frequency reduces further, and therefore frequency response performance is subject to Considerable restraint, or even high frequency step-out phenomenon occurs.
Pulse-width modulation digital valve is generally high-speed switch type digital valve, and the pulsewidth mainly adjusting input signal carrys out control valve Push And Release and open and time span, thus reach control liquor stream direction, flow and pressure purpose.But it controls essence Degree is low, and control model is single and structure is complex, uses generally as single digital valve, seldom does pilot valve and uses.
Content of the invention
The technical problem to be solved is to provide a kind of fast response time, and control accuracy is high and control model can be only Vertical configuration, the electrohydraulic digital reversal valve of flexible combination.
The present invention solves above-mentioned technical problem and be employed technical scheme comprise that:
A kind of electrohydraulic digital reversal valve, described electrohydraulic digital reversal valve includes left pilot valve;Right pilot valve;Left main valve;Right main valve; Left pilot valve driving means;Right pilot valve driving means;Left main valve oil circuit control pressure-detecting device;Right main valve controls oil Road pressure-detecting device;Wherein, the entering of the oil inlet passage of described left pilot valve oil inlet P 1 and described right pilot valve oil inlet P 2 Oily passage portion and pilot valve oil inlet passage P' vertical connection, oil discharge passage of described left pilot valve oil-out T1 in pilot valve body With the oil discharge passage of described right pilot valve oil-out T2 in pilot valve body portion and pilot valve drainback passage T' vertical connection, described The asphalt channel of left pilot valve control port A1 is passed through inside guide valve blocks and main valve body with described left valve core of main valve upper end cavity Channel connection, it is external with main valve that described left pilot valve control port B1 and described left valve core of main valve lower end cavity pass through guide valve blocks Portion's channel connection, the asphalt channel of described right pilot valve control port A2 passes through pilot valve with described right valve core of main valve upper end cavity Body is connected with main valve body inner passage, and the asphalt channel of described right pilot valve control port B2 is empty with described right valve core of main valve lower end Chamber is connected with main valve body external channel by guide valve blocks, and the asphalt channel of described left main valve oil inlet P 3 and described right main valve enter The asphalt channel of hydraulic fluid port P4 is in the internal asphalt channel vertical connection with main valve oil inlet P of main valve body, described left main valve oil return opening The asphalt channel of the asphalt channel of T3 and described right main valve oil return inlet T 4 is in the internal asphalt channel with main valve oil return inlet T of main valve body Vertical connection;
Preferred version, wherein, the valve element of described left pilot valve is distributed in pilot valve with the valve element horizontal symmetry of described right pilot valve Same valve body hole in;
Preferred version, wherein, described left pilot valve driving means are left voice coil motor, and described right pilot valve driving means are Right voice coil motor;
Preferred version, wherein, the valve element attachment means of described left voice coil motor and described left pilot valve, described right voice coil motor with The valve element attachment means of described right pilot valve are shaft coupling;
Preferred version, wherein, also includes central controller, described central controller is arranged on the valve body upper end of described left pilot valve Central authorities;
Preferred version, wherein, described central controller and described left voice coil motor, described right voice coil motor are all by CAN Connect;
Preferred version, wherein, the valve element of described left main valve, the valve element of described right main valve vertically symmetrical are arranged in described left main valve In valve body, the valve body of described right main valve;
Preferred version, wherein, the valve body of described left main valve is same valve body with the valve body of described right main valve;
Preferred version, wherein, also includes left dislocation sensor, right displacement transducer, described left dislocation sensor upper end is arranged on In pilot valve body, lower end is inserted in the circular hole of valve element upper end of described left main valve, forms gap cooperation, described left dislocation sensing Device wire is connected with described central controller by pilot valve body;Described right displacement transducer upper end is arranged on pilot valve body Interior, lower end is inserted in the circular hole of valve element upper end of described right main valve, forms gap cooperation, and described right displacement transducer wire passes through Pilot valve body is connected with described central controller;
Preferred version, wherein, described left dislocation sensor, described right displacement transducer are LVDT displacement transducer.
Preferred version, wherein, described left main valve oil circuit control pressure-detecting device is B mouth pressure transducer, described B mouth pressure Force transducer is embedded in main valve body in the asphalt channel of B mouth, and described B mouth pressure transducer wire passes main valve body left end and leads to Cross CAN to be connected with described central controller;
Preferred version, wherein, described right main valve oil circuit control pressure-detecting device is A mouth pressure transducer, and described A mouth pressure passes Sensor is embedded in main valve body in the asphalt channel of A mouth, and described A mouth pressure transducer wire passes main valve body right-hand member to be passed through CAN is connected with described central controller;
Preferred version, wherein, also includes P mouth pressure transducer, T mouth pressure transducer, described P mouth pressure transducer is embedded in main valve Near the position of outlet, described P mouth pressure transducer wire passes main valve body and passes through CAN and institute internal P mouth asphalt channel State central controller to connect, described T mouth pressure transducer is embedded in the position of the close outlet of T mouth asphalt channel in main valve body, described T Mouth pressure transducer wire is passed main valve body and is connected with described central controller by CAN.
The method have the characteristics that:, by voice coil motor independent control, fast response time, control accuracy is high for pilot valve core; Main valve plug, respectively by pilot valve independent control, due to being provided with displacement transducer, can carry out precise control to primary spool position, Due to being provided with pressure transducer, essence can be carried out to the inlet pressure of main valve, outlet pressure, control port pressure and flow True closed loop control it is ensured that executive component can accurate speed operation, and it is possible to the operating mode being used according to actual platform, really Fixed optimal double spool combination control program.
Brief description
Fig. 1 is a kind of electrohydraulic change valve structure schematic diagram of the present invention;
Fig. 2 is a kind of Application Example of electro-hydraulic reversing valve of the present invention;
Fig. 3 is a kind of Another Application embodiment of electro-hydraulic reversing valve of the present invention.
Specific embodiment
Below in conjunction with the accompanying drawings the present invention is described further.
As shown in figure 1, a kind of electrohydraulic digital reversal valve, described electrohydraulic digital reversal valve includes left pilot valve 1;Right pilot valve 2;Left main valve 3;Right main valve 4;Left pilot valve driving means 5;Right pilot valve driving means 6;Left main valve oil circuit control pressure Detection means 9;Right main valve oil circuit control pressure-detecting device 10;Wherein, the oil inlet passage of described left pilot valve 1 oil inlet P 1 with The oil inlet passage of described right pilot valve 2 oil inlet P 2 portion and pilot valve oil inlet passage P' vertical connection in pilot valve body, described The oil discharge passage of the oil discharge passage of left pilot valve 1 oil-out T1 and described right pilot valve 2 oil-out T2 in pilot valve body portion with On pilot valve drainback passage T' vertical connection, the asphalt channel of described left pilot valve 1 control port A1 and described left main valve 3 valve element End cavity is connected with main valve body inner passage by guide valve blocks, described left pilot valve 1 control port B1 and described left main valve 3 valve Core lower end cavity is connected with main valve body external channel by guide valve blocks, the asphalt channel of described right pilot valve 2 control port A2 Connected with main valve body inner passage by guide valve blocks with described right main valve 4 valve element upper end cavity, described right pilot valve 2 controls oil The asphalt channel of mouth B2 is connected with main valve body external channel by guide valve blocks with described right main valve 4 valve element lower end cavity, described The asphalt channel of left main valve 3 oil inlet P 3 is entered with main valve inside main valve body with the asphalt channel of described right main valve 4 oil inlet P 4 The asphalt channel vertical connection of hydraulic fluid port P, the asphalt channel of described left main valve 3 oil return inlet T 3 and described right main valve 4 oil return inlet T 4 Asphalt channel is in the internal asphalt channel vertical connection with main valve oil return inlet T of main valve body;
Specifically, the valve element of described left pilot valve 1 and the valve element horizontal symmetry of described right pilot valve 2 are distributed in the same of pilot valve In valve body hole;
Specifically, described left pilot valve driving means 5 are left voice coil motor, and described right pilot valve driving means 6 are right sound Circle motor;
Specifically, the valve element attachment means of described left voice coil motor and described left pilot valve 1, described right voice coil motor and the described right side The valve element attachment means of pilot valve 2 are shaft coupling;
Specifically, also include central controller 13, described central controller 13 is arranged in the valve body upper end of described left pilot valve 1 Centre;
Specifically, described central controller 13 is all connected by CAN with described left voice coil motor, described right voice coil motor;
Specifically, the vertically symmetrical valve being arranged in described left main valve 3 of valve element of the valve element of described left main valve 3, described right main valve 4 In body, the valve body of described right main valve 4;
Specifically, the valve body of described left main valve 3 and the valve body of described right main valve 4 are same valve body;
Specifically, left dislocation sensor 7, right displacement transducer 8 are also included, described left dislocation sensor 7 upper end is arranged on guide In valve body, lower end is inserted in the circular hole of valve element upper end of described left main valve 3, forms gap cooperation, described left dislocation sensor 7 Wire is connected with described central controller 13 by pilot valve body;Described right displacement transducer 8 upper end is arranged on pilot valve valve In vivo, lower end is inserted in the circular hole of valve element upper end of described right main valve 4, forms gap cooperation, described right displacement transducer 8 wire It is connected with described central controller 13 by pilot valve body;
Specifically, described left dislocation sensor 7, described right displacement transducer 8 are LVDT displacement transducer.
Specifically, described left main valve oil circuit control pressure-detecting device 9 is B mouth pressure transducer, described B mouth pressure sensing Device is embedded in main valve body in the asphalt channel of B mouth, and described B mouth pressure transducer wire passes main valve body left end and passes through CAN Bus is connected with described central controller 13;
Specifically, described right main valve oil circuit control pressure-detecting device 10 is A mouth pressure transducer, described A mouth pressure transducer It is embedded in main valve body in the asphalt channel of A mouth, it is total by CAN that described A mouth pressure transducer wire passes main valve body right-hand member Line is connected with described central controller 13;
Specifically, P mouth pressure transducer 11, T mouth pressure transducer 12 are also included, described P mouth pressure transducer 11 is embedded in main valve Internal P mouth asphalt channel near the position of outlet, described P mouth pressure transducer 11 wire pass main valve body pass through CAN with Described central controller 13 connects, and described T mouth pressure transducer 12 is embedded in the position of the close outlet of T mouth asphalt channel in main valve body Put, described T mouth pressure transducer 12 wire is passed main valve body and is connected with described central controller 13 by CAN.
Operation principle with regard to the present invention is simply introduced below:
First, for example, central controller 13 pass through CAN to the left voice coil motor 5 send "+" signal(+ represent forward current ,- Represent reverse current), left voice coil motor 5 drives the valve element of left pilot valve 1 to move right, and oil inlet P 1 and control port A1 connect Logical, control port B1 connects with oil return inlet T 1 simultaneously, and pilot valve controls fluid to enter P1 mouth from P' mouth, subsequently into A1 mouth, leads to Cross A1 mouth and enter left main valve 3 valve element upper end cavity, promote left main valve 3 valve element to move downward, left main valve 3 oil inlet P 3 and B mouth connect Logical, working connection passes through P mouth, P3 mouth enters B mouth, then flows out from B mouth;
2nd, for example, by CAN, voice coil motor 5 sends "-" signal to central controller 13 to the left, and left voice coil motor 5 drives The valve element of left pilot valve 1 is connected to left movement, oil inlet P 1 with control port B1, and control port A1 and oil return inlet T 1 connect simultaneously Logical, pilot valve controls fluid to enter P1 mouth from P' mouth, subsequently into B1 mouth, enters left main valve 3 valve element lower end cavity by B1 mouth, Left main valve 3 valve element is promoted to move upwards, left main valve 3 hydraulic fluid port B connects with T3 hydraulic fluid port, fluid enters T3 mouth by B mouth, then from T Mouth flows back to fuel tank;
Three, right pilot valve 2 is identical to the control principle of left main valve 3 with left pilot valve 1 to the control principle of right main valve 4.
Four, for example, precise control is carried out to main valve plug displacement, its control process is:Central controller 13 voice coil loudspeaker voice coil electricity to the left Machine 5 sends control signal, and left voice coil motor 5 drives a certain distance of left pilot valve 2 spool displacement, and left pilot valve 2 valve port is opened(Open Open size relevant with left voice coil motor input current size), pilot valve controls fluid from P' mouth entrance P1 mouth, subsequently into A1 Mouthful, left main valve 3 valve element upper end cavity is entered by A1 mouth, promotes left main valve 3 valve element to move downward, left dislocation sensor 7 is by position Shifting signal is converted to corresponding electric signal, passes to central controller 13 by CAN, is compared with given control signal, than Compared with error amount after scaling adjustment, it is transferred to left voice coil motor 5 again by CAN, thus realizing to left main valve 3 The accurate closed loop control of valve element.
Five, for example, accurate closed loop control is carried out to B mouth rate of discharge, its control process is:Because B mouth rate of discharge It is the valve port flow by left main valve 3, according to flow formula, in formula, valve port sectional area, B mouth pressure value, A mouth Pressure value, stability to be kept, can by realizing to the precise control of i.e. main valve plug displacement in the case that difference is constant, Specifically, left dislocation sensor 7, B mouth pressure transducer 9, A mouth pressure transducer 10 are periodically by the displacement of left main valve plug Value, B mouth oil liquid pressure value, A mouth oil liquid pressure value send central controller 13 to by CAN, in central control valve After putting algorithm process, control signal is transferred to left voice coil motor 5, left voice coil motor 5 drives the valve element of left pilot valve 1 to do accordingly Rotating, thus changing the flow of the valve element fluid injecting left main valve 3, making left main valve 3 valve element reach new stress balance, thus real The now accurate closed loop control to fluid flow.
In addition, it is necessary to explanation, the displacement of pilot valve is directly proportional to the size of voice coil motor input current, inputs electricity Stream is big, then pilot valve displacement is big, and the opening of valve is just big, and just big by the flow of valve port, vice versa.
Fig. 2 is a kind of Application Example of electro-hydraulic reversing valve of the present invention, in the present embodiment, control requirement be, Hydraulic cylinder rod chamber:It is configured to flow control mode, realize the precise control in a certain movement velocity for the hydraulic cylinder, hydraulic cylinder no bar Chamber:It is configured to pressure control mode, realize minimum back pressure, efficient energy-saving.
Its control process is:Voice coil motor 5 sends the control electric current of corresponding movement velocity, Zuo Yin to central controller 13 to the left Circle motor 5 drives a certain distance of valve element displacement to the right of left pilot valve 1, and the valve port of left pilot valve 1 is opened(Openings of sizes and electric current Size is proportional), the fluid of certain pressure and flow passes through P', P1 mouth and enters A1 mouth, then flows into the valve element of left main valve 3 Upper end, destroys the stress balance of left main valve 3 valve element, promotes left main valve 3 valve element to a certain distance of bottom offset, the valve port of left main valve 3 Open(Openings of sizes and the proportional relation of oil liquid pressure flowing into epicoele), now, the working connection fluid of a certain flow passes through P Mouth, P3 mouth, B mouth enter hydraulic cylinder rod chamber, because flow and hydraulic cylinder rod chamber net sectional area are definite value, hydraulic cylinder Movement velocity is definite value, thus realizing the precise control to hydraulic cylinder piston movement velocity;Central controller 13 sound to the right simultaneously Circle motor 6 sends control electric current, and right voice coil motor 6 drives the valve element of right pilot valve 2 to move right, and moving displacement amount is by inputting electricity Stream size controls, and oil inlet P 2 is connected with control port B2, and oil return inlet T 2 is connected with control port A2, and oil circuit control fluid is from P' Mouth, P2 mouth, B2 mouth enter right main valve 2 valve element lower end cavity, promote right main valve 4 valve element to move upwards, right main valve 4 valve port is beaten completely Open, hydraulic cylinder rodless cavity fluid enters T4 mouth by A mouth, then flows back to fuel tank by T mouth, due to being directly connected to fuel tank, institute To realize minimum back pressure control.
Fig. 3 is a kind of Another Application embodiment of electro-hydraulic reversing valve of the present invention, and in the present embodiment, controlling will Ask:Two hydraulic cylinders realize different movement velocitys.
Its control process is:Central controller 13 passes through CAN, and voice coil motor 5 and right voice coil motor 6 export not to the left Same control electric current, left voice coil motor 5 drives the valve element of left pilot valve 1 to move right respective distances, controls fluid from P', P1 Mouth, A1 mouth enter the valve element upper end cavity of left main valve 3, promote left main valve 3 valve element to move down a certain distance, the master of a certain flow Fluid enters left hydraulic cylinder rodless cavity from P mouth, P3 mouth, B mouth, promotes left hydraulic cylinder piston rod to move ahead with a certain speed;Simultaneously right Voice coil motor 6 drives right pilot valve 2 valve element to the corresponding distance of left movement, controls fluid to enter right main valve from P', P2 mouth, A2 mouth 4 valve element upper end cavitys, promote right main valve 4 valve element to move down respective distance, the main fluid of a certain flow is from P mouth, P4 mouth, A mouth Entering right hydraulic cylinder rodless cavity, promoting right hydraulic cylinder piston rod to move ahead with another speed, thus realizing two hydraulic cylinders with different Speed moves ahead.
In addition, it is necessary to explanation, this specification and its accompanying drawing 2, accompanying drawing 3 are the Application Example of the present invention, do not illustrate The present invention only has this two Application Examples, for example, it is possible to it is different that two and above hydraulic cylinder are implemented with the same time simultaneously Speed or identical speed controlling of same time, for example, it is possible to it is mutually synchronized to implement different time to three and above hydraulic cylinder Degree or different time friction speed control, for example, it is possible to implement friction speed to each hydraulic cylinder, different pressures control, example As can be realized the essence to each hydraulic cylinder piston rod moving displacement by the closed loop control of the precise displacement to valve core of main valve Really control, for example, it is possible to carry out accurate closed loop control to by the fluid flow of each main valve plug valve port, etc..

Claims (10)

1. a kind of electrohydraulic digital reversal valve is it is characterised in that described electro-hydraulic reversing valve includes described electrohydraulic digital reversal valve includes Left pilot valve;Right pilot valve;Left main valve;Right main valve;Left pilot valve driving means;Right pilot valve driving means;Left main valve Oil circuit control pressure-detecting device;Right main valve oil circuit control pressure-detecting device;Wherein, the entering of described left pilot valve oil inlet P 1 In pilot valve body, portion is vertical with pilot valve oil inlet passage P' connects for the oil inlet passage of oily passage and described right pilot valve oil inlet P 2 Logical, the oil discharge passage of the oil discharge passage of described left pilot valve oil-out T1 and described right pilot valve oil-out T2 is in pilot valve body Portion and pilot valve drainback passage T' vertical connection, the asphalt channel of described left pilot valve control port A1 and described left valve core of main valve Upper end cavity is connected with main valve body inner passage by guide valve blocks, described left pilot valve control port B1 and described left main valve valve Core lower end cavity is connected with main valve body external channel by guide valve blocks, the asphalt channel of described right pilot valve control port A2 with Described right valve core of main valve upper end cavity is connected with main valve body inner passage by guide valve blocks, described right pilot valve control port B2 Asphalt channel connected with main valve body external channel by guide valve blocks with described right valve core of main valve lower end cavity, described left main valve The asphalt channel of the asphalt channel of oil inlet P 3 and described right main valve oil inlet P 4 is in the internal oil with main valve oil inlet P of main valve body Paths vertical connection, the asphalt channel of the asphalt channel of described left main valve oil return inlet T 3 and described right main valve oil return inlet T 4 is being led Valve inner and the asphalt channel vertical connection of main valve oil return inlet T.
2. a kind of electrohydraulic digital reversal valve according to claim 1 is it is characterised in that the valve element of described left pilot valve and institute The valve element horizontal symmetry stating right pilot valve is distributed in the same valve body hole of pilot valve.
3. a kind of electrohydraulic digital reversal valve according to claim 1 is it is characterised in that described left pilot valve driving means For left voice coil motor, described right pilot valve driving means are right voice coil motor.
4. a kind of electrohydraulic digital reversal valve according to claim 1 is it is characterised in that described left voice coil motor and a described left side The valve element attachment means of pilot valve, described right voice coil motor are shaft coupling with the valve element attachment means of described right pilot valve.
5. a kind of electrohydraulic digital reversal valve according to claim 1 is it is characterised in that also including central controller, described Central controller is arranged on the valve body upper-center of described left pilot valve.
6. a kind of electrohydraulic digital reversal valve according to claim 1 is it is characterised in that described central controller and a described left side Voice coil motor, described right voice coil motor are all connected by CAN.
7. a kind of electrohydraulic digital reversal valve according to claim 1 is it is characterised in that the valve element of described left main valve, described In the vertically symmetrical valve body being arranged in described left main valve of the valve element of right main valve, the valve body of described right main valve.
8. a kind of electrohydraulic digital reversal valve according to claim 1 it is characterised in that the valve body of described left main valve with described The valve body of right main valve is same valve body.
9. a kind of electrohydraulic digital reversal valve according to claim 1 is it is characterised in that also include left dislocation sensor, the right side Displacement transducer, described left dislocation sensor upper end is arranged in pilot valve body, and lower end is inserted on the valve element of described left main valve In the circular hole at end, form gap cooperation, described left dislocation sensor conductor passes through pilot valve body with described central controller even Connect;Described right displacement transducer upper end is arranged in pilot valve body, and the circular hole of the valve element upper end of described right main valve is inserted in lower end Interior, form gap cooperation, described right displacement transducer wire is connected with described central controller by pilot valve body;According to power Profit requires a kind of electrohydraulic digital reversal valve described in 1 it is characterised in that described left dislocation sensor, described right displacement transducer It is LVDT displacement transducer.
10. a kind of electrohydraulic digital reversal valve according to claim 1 is it is characterised in that described left main valve oil circuit control pressure Force checking device is B mouth pressure transducer, and described B mouth pressure transducer is embedded in main valve body in the asphalt channel of B mouth, institute State B mouth pressure transducer wire and pass main valve body left end and be connected with described central controller by CAN;
A kind of electrohydraulic digital reversal valve according to claim 1 is it is characterised in that described right main valve oil circuit control pressure is examined Survey device is A mouth pressure transducer, and described A mouth pressure transducer is embedded in main valve body in the asphalt channel of A mouth, described A Mouth pressure transducer wire is passed main valve body right-hand member and is connected with described central controller by CAN;
A kind of electrohydraulic digital reversal valve according to claim 1 is it is characterised in that also include P mouth pressure transducer, T mouth Pressure transducer, described P mouth pressure transducer is embedded in the position of the close outlet of P mouth asphalt channel in main valve body, described P mouth pressure Sensor conductor is passed main valve body and is connected with described central controller by CAN, and described T mouth pressure transducer is embedded in main valve Near the position of outlet, described T mouth pressure transducer wire passes main valve body and passes through CAN and institute internal T mouth asphalt channel State central controller to connect.
CN201610989218.3A 2016-11-10 2016-11-10 Electro-hydraulic digital directional valve Pending CN106402075A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201610989218.3A CN106402075A (en) 2016-11-10 2016-11-10 Electro-hydraulic digital directional valve

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201610989218.3A CN106402075A (en) 2016-11-10 2016-11-10 Electro-hydraulic digital directional valve

Publications (1)

Publication Number Publication Date
CN106402075A true CN106402075A (en) 2017-02-15

Family

ID=59230293

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201610989218.3A Pending CN106402075A (en) 2016-11-10 2016-11-10 Electro-hydraulic digital directional valve

Country Status (1)

Country Link
CN (1) CN106402075A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106949112A (en) * 2017-05-08 2017-07-14 许昌学院 A kind of new-type double-valve core digital valve
CN106949113A (en) * 2017-05-08 2017-07-14 许昌学院 A kind of double spool digital valve
CN111486148A (en) * 2020-05-26 2020-08-04 青岛鸿合数字技术有限公司 Electric proportional hydraulic control device for multi-way valve and data processing method thereof
CN116164003A (en) * 2023-03-07 2023-05-26 浙江大学 Load port independent control valve for distributed hydraulic system and control method thereof

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102177481A (en) * 2008-06-11 2011-09-07 伊顿公司 Auto-tuning electro-hydraulic valve
CN102575792A (en) * 2009-08-05 2012-07-11 伊顿公司 Proportional poppet valve with integral check valve

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102177481A (en) * 2008-06-11 2011-09-07 伊顿公司 Auto-tuning electro-hydraulic valve
CN102575792A (en) * 2009-08-05 2012-07-11 伊顿公司 Proportional poppet valve with integral check valve

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106949112A (en) * 2017-05-08 2017-07-14 许昌学院 A kind of new-type double-valve core digital valve
CN106949113A (en) * 2017-05-08 2017-07-14 许昌学院 A kind of double spool digital valve
CN111486148A (en) * 2020-05-26 2020-08-04 青岛鸿合数字技术有限公司 Electric proportional hydraulic control device for multi-way valve and data processing method thereof
CN116164003A (en) * 2023-03-07 2023-05-26 浙江大学 Load port independent control valve for distributed hydraulic system and control method thereof

Similar Documents

Publication Publication Date Title
CN106762890B (en) A kind of test bed hydraulic control system of multifunction hydraulic
CN106382271B (en) The double spool PLC technology hydraulic valve and its method of a kind of high-speed switch valve pilot control
CN106402075A (en) Electro-hydraulic digital directional valve
CN102954064B (en) Method for detecting force motor transitional motion type three-way servo valve
CN104405733B (en) A kind of slider of bender balances electro-hydraulic servo synchronous control system
CN102182729B (en) Large-flow high-frequency response electrohydraulic vibration device based on parallel servo valves and control method
CN105121120B (en) Injection moulding volume control device and method
CN103806495A (en) Hydraulic system with open loop electrohydraulic pressure compensation
CN109154312A (en) For operating the method for valve gear, valve gear and with the data storage medium of computer program
CN104198315B (en) A kind of erosion test system
CN203906970U (en) Electromagnetic hydraulic regulating valve
CN203623640U (en) Synchronous lifting system for double-layer show cars
CN106321545A (en) Electro-hydraulic reversing valve
CN102521461B (en) Simulation modeling method of electro-hydraulic servo valve based on Modelica language
CN106438547A (en) Novel electro-hydraulic directional control valve
CN206682064U (en) A kind of advanced digital valve
CN106197570A (en) A kind of hydraulic pressure dynamic flow occurs and receives Hydraulic Experimental System and experimental technique
CN107421723B (en) Simultaneously multiple solenoid valves can be carried out with the device and its detection method of reliability test
CN107101021A (en) A kind of new digital valve
CN203560195U (en) Electro-hydraulic servo valve applicable to high g-value acceleration environment
CN209050941U (en) A kind of shifting formwork is quickly and the vertical injection molding machine slide plate mould shifting device that precisely stops
CN102954057A (en) Electric closed-loop control three-way proportional pressure-reducing valve
CN206636855U (en) A kind of mechanical hydraulic servo cylinder
CN206723182U (en) A kind of double spool valve
CN206682362U (en) A kind of digital valve

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
RJ01 Rejection of invention patent application after publication

Application publication date: 20170215

RJ01 Rejection of invention patent application after publication