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ZDB/ZDBD Series Pilot Operated Pressure Relief Hydraulic Valve

ZDB/ZDBD Series Pilot Operated Pressure Relief Hydraulic Valve

The ZDB/ZDBD series pilot-operated pressure relief hydraulic valve is a high-performance component that provides precise and reliable pressure control in hydraulic systems. With its advanced pilot-operated design and exceptional functionality, this valve ensures efficient and safe operation by regulating system pressure within desired limits.

The ZDB/ZDBD series pilot-operated pressure relief hydraulic valve is a high-performance solution for precise pressure control in hydraulic systems. With its pilot-operated design, pressure control accuracy, wide pressure range, and fast response time, this valve ensures efficient and safe operation while protecting system components. By following the recommended usage methods and maintenance practices, the ZDB/ZDBD series valve delivers reliable performance, extending the lifespan of hydraulic systems. Upgrade your hydraulic system with the ZDB/ZDBD series pilot-operated pressure relief hydraulic valve and experience optimal pressure control for enhanced system efficiency and productivity.

ZDB/ZDBD Series Pilot Operated Pressure Relief Hydraulic Valve Key Characteristics:

ZDB/ZDBD Series Pilot Operated Pressure Relief Hydraulic Valve Parameter:

ZDB

Specifications NG6 NG10 NG16 NG22
Fluid Mineral oil suitable for NBR and FKM seal
Phosphate ester for FKM seal
Fluid temperature range -30 to +80 (NBR seals )
-20 to +80 (FKM seals )
Viscosity range mm2/s 10 to 800
Degree of contamination Maximum permissible degree of fluid contamination: Class 9. NAS 1638 or 20/18/15, ISO4406
Max. operating  pressure bar to  315
Max.adjustable pressure bar 50; 100; 200; 315
Max. flow-rate L/min 60 100 200 400
Weight kg ZDB6 Z2DB10 ZDB10 Z2DB10 ZDB16 Z2DB16 ZDB22 Z2DB22
about 1.2 about 1.9 about 2.7 about 3.1 about 9.4 about 11.8 about 9.2 about 10.3

ZDBD

Fluid Mineral oil suitable for NBR and FKM seal
Phosphate ester for FKM seal
Fluid temperature range -30 to +80 (NBR seals )
-20 to +80 (FKM seals )
Viscosity range mm2/s 10 to 800
Degree of contamination Maximum permissible degree of fluid contamination: Class 9. NAS 1638 or 20/18/15, ISO4406
Max. operating  pressure bar to  315
Max.adjustable pressure bar 50; 100; 200; 315
Size  / 6 10 16 22 32
Max. flow-rate L/min 30 80 160 250
Weight Relief function kg A B C D A B C D A B C D A B C D A B C D
2 3 4 4 6 9 13 16 12 25 32 29 47 55 57 53

ZDB/ZDBD Series Pilot Operated Pressure Relief Hydraulic Valve Advantages:

ZDB NG6
• Sandwich type structure
• Installation face follows DIN 24340 A and ISO 4401
• Used in screw connection, Used for bottom sub-plate mounting
• Four pressure ranges
• 5 circuit options
• Two adjustment types: knob, adjustment screw with protection cap
ZDB NG10
• Sandwich type structure
• Installation face follows DIN 24340 A and ISO 4401
• Used in screw connection, Used for bottom sub-plate mounting
• Four pressure ranges
• 6 circuit options
• With one or two inserted overflow valves
• Two adjustment types: knob, adjustment screw with protection cap
ZDB NG16、22
• Sandwich type structure
• Installation face follows DIN 24340 A and ISO 4401
• Used in screw connection, Used for bottom sub-plate mounting
• Four pressure ranges
• 5 circuit options
• With one or two inserted overflow valves
• One adjustment type: adjustment screw with protection cap
ZDBD NG6-32
• Sandwich type structure
• Installation face follows DIN 24340 A and ISO 4401
• Used in screw connection, Used for bottom sub-plate mounting
• Three pressure ranges
• 4 circuit options
• With one or two inserted overflow valves
• One adjustment type: adjustment screw with protection cap

Usage Method Of ZDB/ZDBD Series Pilot Operated Pressure Relief Hydraulic Valve:

How Does A Hydraulic Priority Valve Work?

A hydraulic priority valve, also known as a flow divider or flow combiner, is a component used in hydraulic systems to allocate priority flow to specific circuits or actuators. Its primary function is to ensure that a predetermined amount of hydraulic fluid is supplied to a high-priority circuit or actuator before distributing the remaining flow to lower-priority circuits. Let’s explore how a hydraulic priority valve works:

  1. Valve Configuration:
    • A hydraulic priority valve typically consists of a valve body, a spool, and various ports for fluid inlet and outlet.
  2. Flow Regulation:
    • The priority valve receives hydraulic fluid from the main pump or power source.
    • It regulates fluid flow based on the system’s specific requirements.
  3. Priority Port:
    • The valve designates one or more ports as the priority port(s) where high-priority circuits or actuators are connected.
    • These priority ports receive the initial flow allocation before the remaining flow is distributed to other ports.
  4. Spool Position:
    • The position of the spool within the valve determines the flow distribution between the priority and secondary circuits.
    • When the spool is in a neutral or centered position, the flow is blocked or restricted to all ports.
  5. Priority Flow Allocation:
    • As hydraulic fluid enters the valve, it first reaches the priority port(s).
    • The spool is designed to provide a predetermined flow rate to the high-priority circuit(s) connected to these ports.
  6. Remaining Flow Distribution:
    • After the priority flow is allocated, the excess or remaining flow is diverted to the secondary ports connected to lower-priority circuits or actuators.
    • The spool position allows the fluid to flow freely to these secondary circuits, ensuring they receive an adequate supply.
  7. Pressure Compensation:
    • Hydraulic priority valves often incorporate pressure compensation mechanisms to maintain consistent flow rates regardless of load variations.
    • These mechanisms adjust the spool position based on the pressure differential between the priority and secondary circuits.

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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