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DV/DRV Series Throttle And Throttle Check Hydraulic Valve

DV/DRV Series Throttle And Throttle Check Hydraulic Valve

The DV/DRV series throttle and throttle check hydraulic valve is a cutting-edge hydraulic component designed to optimize control and efficiency in hydraulic systems. With its advanced throttle and throttle check features, this valve offers precise flow control and ensures smooth operation of hydraulic actuators.

The DV/DRV series throttle and throttle check hydraulic valve is a versatile and reliable solution for precise flow control and enhanced system efficiency. With its throttle and throttle check functionality, customizable flow control options, and robust performance, this valve delivers exceptional results across various hydraulic applications. Following the recommended usage methods and maintenance guidelines, operators can ensure the longevity, reliability, and optimal functionality of the DV/DRV series throttle and check hydraulic valve. Upgrade your hydraulic system with this advanced valve and experience heightened efficiency, control, and productivity.

DV/DRV Series Throttle And Throttle Check Hydraulic Valve Key Characteristics:

DV/DRV Series Throttle And Throttle Check Hydraulic Valve Parameter:

DV/DRV Series Throttle And Throttle Check Hydraulic Valve Advantages:

• Used in tubing installation
• Used in sub-plate mounting
• Screw connection
• Repeatability of scale settings
• Materials optional

Usage Method Of DV/DRV Series Throttle And Throttle Check Hydraulic Valve :

How Hydraulic Proportional Valve Works?

A hydraulic proportional valve is a control valve that allows for precise control of fluid flow and pressure in hydraulic systems. It operates based on the principle of varying the opening size of the valve in proportion to the input signal received. This input signal can be electrical, pneumatic, or hydraulic, depending on the design of the valve. Here is an overview of how a hydraulic proportional valve works:

  1. Valve Structure:
    • A hydraulic proportional valve consists of a valve body, a spool or poppet mechanism, and a proportional solenoid or pilot valve.
    • The valve body contains ports, passages, and chambers that facilitate the flow of hydraulic fluid.
    • The spool or poppet mechanism is responsible for controlling the flow area of the valve.
  2. Proportional Solenoid or Pilot Valve:
    • The proportional solenoid or pilot valve is an integral part of the proportional valve design.
    • It receives the input signal, such as an electrical current or pressure, and converts it into a proportional force.
    • This force is used to position the spool or poppet mechanism, thereby adjusting the flow area of the valve.
  3. Flow Control:
    • When the input signal is applied to the proportional solenoid or pilot valve, it generates a proportional force.
    • This force acts on the spool or poppet mechanism, causing it to move and change the flow area of the valve.
    • By adjusting the flow area, the valve can regulate the fluid flow rate passing through it.
  4. Proportional Response:
    • The movement of the spool or poppet mechanism in the hydraulic proportional valve is directly proportional to the input signal.
    • For example, an increase in the input signal results in a larger flow area, allowing more fluid to pass through the valve.
    • Similarly, a decrease in the input signal reduces the flow area, resulting in less fluid flow.
  5. Closed-Loop Control:
    • Some hydraulic proportional valves incorporate closed-loop control systems to further enhance accuracy.
    • These systems use feedback sensors to monitor the actual flow rate or pressure and compare it to the desired setpoint.
    • Based on this feedback, the valve adjusts its position to maintain the desired flow or pressure, minimizing any deviations.
  6. Electronic Control:
    • Hydraulic proportional valves are often controlled by electronic systems.
    • The input signal is typically generated by a control system, such as a programmable logic controller (PLC) or a computer.
    • These control systems can provide precise and dynamic control of the proportional valve, allowing for complex and automated hydraulic systems.
  7. Application Flexibility:
    • Hydraulic proportional valves find applications in various industries, including manufacturing, automation, and mobile equipment.
    • They are commonly used in systems where precise control of flow rate, pressure, or position is required, such as in robotic arms, injection molding machines, and hydraulic presses.

Tehtaan kapasiteetti ja kapasiteetti:

(1) Kokoonpano

Meillä on ensiluokkainen riippumaton tutkimus- ja kehitystyön kokoonpanoalusta. Hydraulisylinterien tuotantopajassa on neljä puoliautomaattista nostosylinterin kokoonpanolinjaa ja yksi automaattinen kallistussylinterin kokoonpanolinja, joiden suunniteltu vuotuinen tuotantokapasiteetti on 1 miljoona kappaletta. Erikoissylinterin työpaja on varustettu erilaisilla eritelmillä puoliautomaattisen puhdistusasennuksen kokoonpanojärjestelmällä, jonka suunniteltu vuotuinen tuotantokapasiteetti on 200 000, ja se on varustettu kuuluisilla CNC-työstölaitteilla, työstökeskuksella, korkean tarkkuuden sylinterin käsittelyyn tarkoitetuilla erityislaitteilla, robottihitsauskoneella, automaattisella puhdistuslaitteella, automaattisella sylinterin kokoonpanokoneella ja automaattisella maalaustuotantolinjalla. Olemassa olevat kriittiset laitteet yli 300 sarjaa (sarjaa). Laiteresurssien optimaalinen kohdentaminen ja tehokas käyttö varmistavat tuotteiden tarkkuusvaatimukset ja täyttävät tuotteiden laatuvaatimukset.

(2) Koneistus

Työstöpaja on varustettu räätälöidyllä kaltevalla kiskosorvauskeskuksella, työstökeskuksella, suurnopeus-hiontakoneella, hitsausrobotilla ja muilla vastaavilla laitteilla, joilla voidaan käsitellä sylinteriputkia, joiden sisähalkaisija on enintään 400 mm ja enimmäispituus on 6 metriä.

(3) Hitsaus

(4) Maalaus ja pinnoitus

Pienillä ja keskisuurilla sylinterin automaattisilla vesipohjaisilla maalipinnoituslinjoilla automaattisen robotin lastaus- ja purku- ja automaattisen ruiskutuksen saavuttamiseksi, suunnittelukapasiteetti on 4000 kappaletta vuorossa;
Meillä on myös puoliautomaattinen maalauslinja suurille sylintereille, joka toimii voimaketjulla ja jonka suunnittelukapasiteetti on 60 laatikkoa työvuorossa.

(5) Testaus

Meillä on ensiluokkaiset tarkastustilat ja testialustat, joilla varmistetaan, että sylinterin suorituskyky täyttää vaatimukset.

 

 

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