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Rexroth A4VSO125 Hydraulic Piston Pump 125ml/rev 1800rpm

    Buy cheap Rexroth A4VSO125 Hydraulic Piston Pump 125ml/rev 1800rpm from wholesalers
     
    Buy cheap Rexroth A4VSO125 Hydraulic Piston Pump 125ml/rev 1800rpm from wholesalers
    • Buy cheap Rexroth A4VSO125 Hydraulic Piston Pump 125ml/rev 1800rpm from wholesalers
    • Buy cheap Rexroth A4VSO125 Hydraulic Piston Pump 125ml/rev 1800rpm from wholesalers

    Rexroth A4VSO125 Hydraulic Piston Pump 125ml/rev 1800rpm

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    Brand Name : Rexroth
    Model Number : A4VSO180DR/30R-PPB13N00 A4VSO125EO2/30R-VPB25N00 A4VSO125EO2/30R-VZB13N00 A4VSO125EO2/30R-PZB13N00 A4VSO125EO2/30R-VPB13N00
    Certification : ISO
    Price : 2
    Payment Terms : MoneyGram,Western Union,T/T,D/P,D/A,L/C
    Supply Ability : 100
    Delivery Time : 2 weeks
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    Rexroth A4VSO125 Hydraulic Piston Pump 125ml/rev 1800rpm

    A4VSO180DR/30R-PPB13N00 A4VSO125EO2/30R-VPB25N00 A4VSO125EO2/30R-VZB13N00
    A4VSO125EO2/30R-PZB13N00 A4VSO125EO2/30R-VPB13N00 Rexroth A4VSO125 piston pump German high-pressure variable

    whatsapp:+85267220981
    email:Yli97584@gmail.com
    model:A4VSO180DR/30R-PPB13N00 A4VSO125EO2/30R-VPB25N00 A4VSO125EO2/30R-VZB13N00
    A4VSO125EO2/30R-PZB13N00 A4VSO125EO2/30R-VPB13N00
    displacement:125
    warranty:a year
    brand:Rexroth
    control mode :dr
    purpose:hydraulic system
    Scope of use:Excavator coal mining industry ship hydraulic system

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    FAQ;

    Frequently Asked Questions (FAQ) for Rexroth A4VSO Series Axial Piston Pumps (Control Variables)

    1. What is the fundamental working principle of the A4VSO series pump?

    The A4VSO series is a swashplate-type axial piston pump designed for open-circuit systems. Its flow output is proportional to the input drive speed and its displacement volume. The displacement is infinitely variable by adjusting the angle of the swashplate. It's known for its excellent suction characteristics, low noise, long service life, and high power-to-weight ratio. Multiple control options are available to meet various system requirements.

    2. What are the common control methods for the A4VSO pump?

    The A4VSO series offers a wide range of variable control methods. The most commonly used include:

    • DR/DRG: Pressure Control (Constant Pressure)

    • LR: Constant Power Control (Hyperbolic)

    • EO/EO2: Electroproportional Control

    Other available controls include FR (Flow Control), MA (Manual Control), EM (Electric Motor Control), HW/HM/HS/HD (Various Hydraulic Controls), and DS (Secondary Control for speed sensing).

    3. How does the DR Pressure Control (Pressure Cut-Off) work?

    The DR control maintains a constant system pressure by changing the swashplate angle. When the system pressure reaches the spring-set value on the DR valve, the control mechanism acts to reduce the pump's displacement, delivering only the flow required to maintain the set pressure. This functionality is sometimes referred to as "Pressure Cut-Off" in some pump literature. It's important to note that a system safety valve is still essential because the DR control's response is relatively slow compared to sudden pressure shocks; the safety valve handles transient pressure spikes.

    4. What is the difference between DRG and DP control types?

    Both DRG and DP are forms of constant pressure control, but they are designed for different applications:

    • DRG (Remote Pressure Control): Allows the pressure setpoint for the pump to be adjusted remotely via an external pressure control valve.

    • DP (Multi-Pump Parallel Pressure Control): Specifically designed for systems where multiple pumps work in parallel. It contains an additional element (a variable orifice, valve 5) that mechanically links to the swangle. This design automatically compensates for differences between pumps, ensuring they share the load equally and operate at the same swashplate angle when working together at the set pressure. The DP control has a larger control deviation (~6.5 bar) compared to DRG (~3 bar).

    5. Why might multiple A4VSO DR pumps in parallel cause system vibration?

    When multiple pumps with standard DR controls are set to the same pressure and run in parallel, slight inherent differences in their response characteristics and pressure settings can cause them to not reduce displacement (cut off) at exactly the same time and rate. This lack of synchronization can lead to interactions between the pumps, resulting in pressure fluctuations and potentially causing severe pipeline vibration.

    6. What are the key specifications of the A4VSO series?

    • Common Displacement Specifications (ml/rev): 40, 71, 125, 180, 250, 355, 500, 750.

    • Nominal Pressure: 350 bar.

    • Peak Pressure: 400 bar.

    • Bearing: Features a specially designed, long-life, high-precision full roller bearing.

    • Shaft: Through-shaft design allows for mounting additional pumps to form a multi-pump group.

    Quality Rexroth A4VSO125 Hydraulic Piston Pump 125ml/rev 1800rpm for sale
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