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DBETX Series Proportional Pressure Relief Hydraulic Valve

DBETX Series Proportional Pressure Relief Hydraulic Valve

The DBETX series proportional pressure relief hydraulic valve is a versatile and high-performance hydraulic component designed to provide precise pressure relief in hydraulic systems. Engineered with advanced proportional control technology, this valve ensures optimal performance, efficiency, and safety.

The DBETX series proportional pressure relief hydraulic valve empowers hydraulic systems with precise pressure control, enhanced efficiency, and equipment protection. With its proportional pressure relief capabilities, this valve ensures optimal performance across a wide range of applications. By following the recommended usage methods and maintenance guidelines, you can maximize the benefits and reliability of the DBETX series valve, elevating the performance and control of your hydraulic system. Upgrade your hydraulic setup today and experience superior pressure regulation with the DBETX series proportional pressure relief hydraulic valve.

DBETX Series Proportional Pressure Relief Hydraulic Valve Key Characteristics:

DBETX Series Proportional Pressure Relief Hydraulic Valve Parameter:

General
Construction Poppet valve, direct drive
Actuation Proportional solenoid without position control, external amplifier
Connection type Subplate, mounting hole configuration NG6 (ISO 4401-03-02-0-94)
Installation position Optional
Circumstances temperature range  ℃ -20…+50
Weight Kg about 2.1
Vibration resistance, test condition Max. 25 g, shaken in 3 dimensions(24 h)
Hydraulic     (measured with HLP 46, Voil=40℃±5℃)
Pressure fluid Hydraulic oil to DIN 51524…535, other fluids after prior consultation
Viscosity range recommended  20…100
max. permitted  10…800
Pressure fluid temperature range -20…+80
Maximum permitted degree of contamination of pressure fluid Purity class to ISO 4406(c) Class 18/16/13
Direction of flow See symbol
Max. setting pressure  (Q = 1 l/min) bar 50 80 180 250 315
Min. settable pressure (Q = 1 l/min) bar 2 3 4 5 8
Max. operating  pressure(Q = 1 l/min) bar Port  P: 315
Max. pressure bar Port  T: 250
Max. mechanical pressure limitation level, e.g. when solenoid current I>Imax bar <55 <85 <186 <258 <325
Static/Dynamic
Hysteresis % ≤4
Response time 100% signal changen ms On<60 / Off<70
Range of inversion % ≤3
Electrical data
Cyclic duration factor % 100 ED
Degree of protection IP 65 to DIN 40050 and IEC 14434/5
Solenoid connection Plug-in connector to DIN EN 175301-803/ISO 4400
Power 24VDCnom

DBETX Series Proportional Pressure Relief Hydraulic Valve Advantages:

• Direct, to restrict system pressure
• Can adjust pressure by controlling the current with the solenoid according to the characteristic curve
• In the event of electrical failure, the restricted pressure is still within safety level (solenoid current > Imax)
• External amplifying sub-plate mounting has slope and valve calibration functions (separate order)

Usage Method Of DBETX Series Proportional Pressure Relief Hydraulic Valve:

How To Adjust A Hydraulic Pressure Relief Valve?

Adjusting a hydraulic pressure relief valve allows you to set the desired maximum pressure in a hydraulic system. This is important for maintaining system integrity and preventing damage to components. Here’s a step-by-step guide on how to adjust a hydraulic pressure relief valve:

  1. Identify the Pressure Relief Valve:
    • Locate the pressure relief valve in your hydraulic system. It is typically installed in the hydraulic line and often near the pump or control valve.
  2. Understand the Valve Design:
    • Familiarize yourself with the specific design of the pressure relief valve you are working with. Different valves may have varying adjustment mechanisms, such as a knob, screw, or locknut.
  3. Determine the Desired Pressure:
    • Assess the requirements of your hydraulic system and determine the desired maximum pressure. This will guide you in adjusting the pressure relief valve accurately.
  4. Prepare the System:
    • Before making any adjustments, shut off the hydraulic system and relieve the pressure by moving the control levers back and forth or following the manufacturer’s recommended procedure.
  5. Locate the Adjustment Mechanism:
    • Identify the adjustment mechanism on the pressure relief valve. It could be a knob, screw, or locknut positioned on the valve body or adjacent to it.
  6. Adjust the Valve:
    • If the valve has a knob or handle, turn it clockwise to increase the pressure relief setting or counterclockwise to decrease it. If the valve has a screw, turn it clockwise to increase the pressure relief or counterclockwise to decrease it.
  7. Make Incremental Adjustments:
    • When adjusting the pressure relief valve, make small, incremental changes to avoid sudden or drastic variations in pressure. This allows you to fine-tune the maximum pressure and achieve the desired performance.
  8. Observe the System:
    • With each adjustment, observe the hydraulic system and its components. Pay attention to the pressure gauge readings to see if they align with the desired maximum pressure.
  9. Test and Verify:
    • Operate the hydraulic system and monitor the pressure to ensure that it remains within the desired range. Check for any pressure fluctuations or irregularities that may indicate the need for further adjustment.
  10. Lock the Adjustment:
    • Once you have achieved the desired pressure relief setting, secure the adjustment mechanism to prevent unintended changes. Some valves may have a locking nut or set screw that can be tightened to hold the adjustment in place.
  11. Monitor and Revisit:
    • Regularly monitor the pressure relief valve and the hydraulic system. If there are changes in the system or if the desired maximum pressure needs to be adjusted, revisit the pressure relief valve and repeat the adjustment process as needed.

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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