Z2S Series Pilot Operated Check Hydraulic Valve

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Z2S Series Pilot Operated Check Hydraulic Valve

The Z2S series pilot operated check hydraulic valve is a cutting-edge solution designed to optimize the performance and control of hydraulic systems. With its advanced design and versatile features, this valve enhances fluid flow management, ensuring efficient and reliable operation.

The Z2S series pilot operated check hydraulic valve is an essential component for hydraulic systems, offering precise control, high flow capacity, and reliable check functionality. With its pilot operated design and pressure control capabilities, it optimizes fluid flow and enhances system performance. By following the recommended usage methods and adhering to regular maintenance practices, the Z2S series valve will continue to provide efficient and reliable operation. Upgrade your hydraulic system with the Z2S series pilot operated check hydraulic valve and experience the benefits of enhanced control and efficiency.

Z2S Series Pilot Operated Check Hydraulic Valve Key Characteristics:

  • Pilot Operated Design:
    • The Z2S series valve incorporates a pilot-operated mechanism that enables precise control over fluid flow.
    • This design allows for enhanced accuracy and responsiveness, ensuring optimal system performance.
  • Check Functionality:
    • The valve features a built-in check function that allows unidirectional fluid flow while preventing backflow.
    • This ensures system integrity and prevents potential damage, providing peace of mind during operation.
  • High Flow Capacity:
    • The Z2S series hydraulic valve is engineered to handle high flow rates, making it suitable for efficient fluid control applications.
    • Its optimized flow path minimizes pressure drop, maximizing system efficiency and reducing energy consumption.
  • Pressure Control:
    • This hydraulic valve offers precise pressure control capabilities, allowing for managing pressure levels within the hydraulic system.
    • It ensures stability and reliability by maintaining consistent pressure, even under varying load conditions.

Z2S Series Pilot Operated Check Hydraulic Valve Parameter:

Size 6 10 16 22
Fluid Mineral oil suitable for NBR and FKM seal
Phosphate ester for FKM seal
Degree of contamination Maximum permissible degree of fluid contamination: Class 9. NAS 1638 or 20/18/15, ISO4406
Fluid temperature range ℃ -30 to +80(NBR seal)
-20 to +80(FKM seal)
Viscosity rangemm2/s 2.8 to 500
Operating pressure bar 315
Max. flow-rateL/min 60 120 300 450
Flow direction See the sign
Crack pressure(positive circulation) bar Refer to the characteristic curve 1.5,3,6,10 0.3,0.5,0.75,1.0 3,5,7.5,10
Area radio A1/A2=1/3   A1/A2=1/13.4  A3/A2=1/2.68 (Please refer to page”02/04″for section drawing)  A1/A2=1/11.8  A3/A2=1/2.8 (Please refer to page”02/04″for section drawing)  A1/A2=1/13.6  A3/A2=1/2.8
Weightkg about 1.0 3 6.8 12.8

Z2S Series Pilot Operated Check Hydraulic Valve Advantages:

NG6
• Sandwich type structure
• Installation face follow DIN 24340 A, ISO 4401, CETOP-RP121H
• One or two sets of working oil orifices leak free sealing according to requirements
• Applied for sandwich type installation
• Three opening pressure
NG10
• Connection size follow DIN 24340
• Have one or two leak free sealingports
• Sandwich type structure, used in vertical sandwich type installation
• Four opening pressure, optional
NG16
• Connection size follow DIN 24340
• Have one or two leak free sealingports
• Sandwich type structure, used in vertical sandwich type installation
• Four opening pressure, optional
NG22
• Connection size follow DIN 24340
• Have one or two leak free sealingports
• Sandwich type structure, used in vertical sandwich type installation
• Four opening pressure, optional

Usage Method Of Z2S Series Pilot Operated Check Hydraulic Valve:

  • System Integration:
    • Identify the appropriate location for the Z2S series valve within the hydraulic system, considering the desired flow direction and pressure control requirements.
    • Ensure compatibility with the system’s pressure and flow specifications.
    • Install the valve in-line with the fluid flow, following the manufacturer’s guidelines.
  • Pilot Connection:
    • Connect the pilot line to an external control device, such as a pressure relief valve or a proportional pressure control valve.
    • Ensure proper sizing and connections to enable accurate pressure regulation.
  • Fluid Connections:
    • Select compatible hydraulic fittings and hoses for secure and leak-free connections.
    • Follow the manufacturer’s instructions for proper torque values during the installation process.
    • Use appropriate thread sealants or tape to ensure a reliable seal.
  • System Calibration:
    • Calibrate the pilot control device according to the desired pressure settings and system requirements.
    • Adjust the control parameters to achieve the desired pressure regulation and response characteristics.

How To Bleed A Hydraulic Clutch Without Bleeder Valve?

Bleeding a hydraulic clutch without a bleeder valve can be a bit more challenging, but it is still possible. Here’s a step-by-step guide on how to bleed a hydraulic clutch without a bleeder valve:

  1. Safety Precautions:
    • Prioritize safety by wearing appropriate personal protective equipment, including gloves and safety glasses.
    • Make sure the hydraulic system is depressurized. Turn off the engine and ensure the clutch pedal is not depressed.
  2. Locate the Clutch Slave Cylinder:
    • Identify the location of the clutch slave cylinder. It is usually mounted on or near the transmission bell housing and connected to the clutch release mechanism.
  3. Prepare the Tools:
    • Gather the necessary tools, including an open-end wrench or line wrench that fits the hydraulic line fittings, a clean container to collect the old fluid, and fresh hydraulic clutch fluid.
  4. Access the Hydraulic Line:
    • Locate the hydraulic line connected to the clutch slave cylinder.
    • Loosen the fittings at both ends of the hydraulic line using the appropriate wrench.
    • Place the container beneath the line to catch any fluid that may leak out during the bleeding process.
  5. Gravity Bleeding:
    • Fill the clutch master cylinder reservoir with fresh hydraulic clutch fluid.
    • Leave the fittings loose and allow the fluid to gravity bleed by letting it flow from the clutch master cylinder, through the hydraulic line, and into the container.
    • Keep an eye on the fluid level in the master cylinder reservoir, ensuring it remains topped up during the bleeding process.
  6. Manual Bleeding:
    • Once the fluid flows steadily and is free of air bubbles, it’s time to bleed the hydraulic clutch manually.
    • Enlist the help of a second person to operate the clutch pedal while you monitor and manipulate the hydraulic line fittings.
    • Instruct the person to depress the clutch pedal and hold it down slowly.
  7. Open and Close the Fittings:
    • As the person holds the clutch pedal down, quickly open and close the fitting at the clutch slave cylinder end of the hydraulic line.
    • This action creates pressure and forces trapped air bubbles to move towards the open fitting.
  8. Korrake protsessi:
    • Repeat the process of opening and closing the fitting multiple times while the clutch pedal is held down to expel any remaining air bubbles.
    • Ensure that the person operating the clutch pedal releases it only after you have closed the fitting securely.
  9. Tighten the Fittings:
    • Once the manual bleeding process is complete, tighten the hydraulic line fittings at both ends using the wrench.
    • Ensure they are securely tightened to prevent any leaks.
  10. Test the Clutch:
    • Start the engine and test the clutch pedal for proper operation.
    • Depress and release the clutch pedal several times to ensure smooth engagement and disengagement.
  11. Ongoing Maintenance:
    • Regularly check the clutch fluid level and inspect the system for any signs of leaks or air accumulation.
    • If you notice recurring air in the system or experience difficulties with the clutch, it’s recommended to seek assistance from a qualified professional to identify and resolve any underlying issues.

Tehase võimekus ja suutlikkus:

(1) Kokkupanek

Meil on esmaklassiline sõltumatu teadus- ja arendustegevuse montaažiplatvorm. Hüdrosilindrite tootmistöökojas on neli poolautomaatset tõstesilindrite koosteliini ja üks automaatne kallutussilindrite koosteliin, mille kavandatud aastane tootmisvõimsus on 1 miljon tükki. Spetsiaalsete silindrite töökoda on varustatud erinevate spetsifikatsioonidega poolautomaatse puhastusmontaažisüsteemiga, mille kavandatud aastane tootmisvõimsus on 200 000 ja mis on varustatud kuulsate CNC-töötlemisseadmete, mehaanilise töötlemise keskuse, suure täpsusega silindrite töötlemise eriseadmete, robotkeevitusmasina, automaatse puhastusmasina, automaatse silindri kokkupanemise masina ja automaatse värvimise tootmisliiniga. Olemasolevad kriitilised seadmed rohkem kui 300 komplekti (komplekti). Seadmete ressursside optimaalne jaotamine ja tõhus kasutamine tagavad toodete täpsusnõuded ja vastavad toodete kvaliteedinõuetele.

(2) Töötlemine

Töödeldav töökoda on varustatud kohandatud kallutatud rööpse treipingi keskuse, mehaanilise keskuse, kiire lihvimismasina, keevitusroboti ja muude seotud seadmetega, mis suudavad töödelda silindritorusid, mille maksimaalne siseläbimõõt on 400 mm ja maksimaalne pikkus on 6 meetrit.

(3) Keevitamine

(4) Värvimine ja katmine

Väikese ja keskmise suurusega silindri automaatse veepõhise värvipinnakattega liinide abil, et saavutada automaatne robotlaadimine ja mahalaadimine ning automaatne pihustamine, projekteerimisvõimsus 4000 tükki vahetuse kohta;
Meil on ka poolautomaatne suurte balloonide värvimise tootmisliin, mis töötab jõukettaga ja mille projekteerimisvõimsus on 60 kasti ühe vahetuse kohta.

(5) Testimine

Meil on esmaklassilised kontrolliseadmed ja katsestendid, et tagada silindri jõudlus vastavus nõuetele.

 

 

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