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Exploring Hydraulic Accumulator NXO2-F40/31.5-H: Secret of Stable and Reliable Flow Control

Exploring Hydraulic Accumulator NXO2-F40/31.5-H: Secret of Stable and Reliable Flow Control

In the modern industrial field, accumulators, as key components in hydraulic systems, play an important role in storing energy and stabilizing pressure. The hydraulic accumulator NXO2-F40/31.5-H has been widely used in many industrial scenarios due to its excellent performance. Among them, how to keep its flow control stable and reliable is the focus of many engineers and technicians.

 

I. Precise structural design is the cornerstone

The accumulator NXO2-F40/31.5-H adopts a bladder structure design, which is the basis for achieving stable and reliable flow control. Inside it, the bladder is precisely placed in it, dividing the inner cavity into two parts. The bladder is filled with nitrogen, while the outside is surrounded by hydraulic oil. When the hydraulic oil continues to increase, the bladder is evenly and stably squeezed and deformed, the gas volume decreases, and the air pressure increases, realizing the energy storage process; when the gas expands, the hydraulic oil can be stably discharged to complete the energy release process.

hydraulic accumulator NXO2-F40/31.5-H

This structural design minimizes the direct contact between the hydraulic oil and the external environment, reduces the risk of impurities mixing and oxidation, ensures the cleanliness and performance stability of the hydraulic oil, and thus provides a good internal environment for flow control. At the same time, the material and manufacturing process of the bladder are carefully selected and strictly controlled, with excellent flexibility and pressure resistance, and can accurately adapt to the changes in hydraulic oil under different pressure and flow conditions to ensure stable flow output.

 

II. Advanced working principle is the core

The accumulator NXO2-F40/31.5-H realizes energy storage and flow control based on the compressibility principle of gas (generally nitrogen). During the operation of the hydraulic system, when the hydraulic oil flow output by the hydraulic pump is greater than the actual demand of the system, the excess hydraulic oil will enter the accumulator, squeeze the nitrogen in the bladder, compress the nitrogen, and store the hydraulic oil. At this time, the accumulator is like an “energy warehouse” to store excess energy.

 

When the system’s demand for hydraulic oil increases and exceeds the output capacity of the hydraulic pump, the compressed nitrogen in the accumulator expands, pushing the bladder to stably release the stored hydraulic oil into the system to supplement the flow required by the system. This working principle of automatically adjusting the flow according to system requirements enables the accumulator NXO2-F40/31.5-H to always maintain a stable supply of flow under complex and changeable working conditions, providing a strong guarantee for the reliable operation of the entire hydraulic system.

 

III. Strict selection and matching are prerequisites

To achieve stable and reliable flow control of the accumulator NXO2-F40/31.5-H, correct selection and system matching are crucial. In the selection process, multiple factors need to be considered comprehensively, such as the system’s working pressure, required flow, working temperature range, and the properties of the hydraulic oil.

hydraulic accumulator NXO2-F40/31.5-H

For the working pressure, the design pressure of the accumulator NXO2-F40/31.5-H is 31.5MPa, which requires that in actual applications, the working pressure of the system must be within this rated range, otherwise it may cause problems such as bladder rupture and seal failure, which will affect the stability of flow control. In terms of the required flow, it is necessary to accurately calculate the volume of the accumulator according to the maximum and minimum flow requirements of the system under different working conditions to ensure that it can store enough hydraulic oil to meet the sudden flow requirements of the system.

 

At the same time, the operating temperature range will also affect the performance of the accumulator. Under different temperature conditions, the compressibility of nitrogen and the viscosity of hydraulic oil will change. Therefore, when selecting, it is necessary to select an accumulator suitable for the operating temperature range of the system to ensure that it can work normally under various temperature environments and achieve stable flow control.

 

In addition, the properties of hydraulic oil, such as viscosity and lubricity, will also interact with the performance of the accumulator. Suitable hydraulic oil can reduce the wear of internal components, reduce energy loss, and further improve the reliability of flow control.

 

IV. Scientific installation and maintenance are the guarantee

Correct installation is an important guarantee for the stable and reliable flow control of the accumulator NXO2-F40/31.5-H. During the installation process, it is necessary to strictly follow the requirements of the product manual. The selection of the installation location should take into account factors such as ease of maintenance, avoidance of vibration and impact. At the same time, the layout of the connecting pipes should minimize bending and resistance to ensure that the hydraulic oil can smoothly enter and exit the accumulator.

 

After the installation is completed, the accumulator needs to be debugged and inspected to ensure that its various parameters meet the design requirements. In daily use, regular maintenance is essential. Regularly check the pressure of the accumulator, the state of the bladder, and the sealing performance. If the bladder is found to have signs of aging or damage, or the seal is leaking, it should be replaced and repaired in time to prevent abnormal flow control.

 

In addition, quality monitoring of hydraulic oil is also crucial. Regularly replacing hydraulic oil to maintain its cleanliness and performance can reduce the wear and blockage of impurities on the internal components of the accumulator, thereby ensuring long-term stable and reliable flow control.

 

The accumulator NXO2-F40/31.5-H achieves stable and reliable flow control through precise structural design, advanced working principle, strict selection and matching, and scientific installation and maintenance. In the future industrial development, with the continuous advancement of technology, it is believed that the accumulator NXO2-F40/31.5-H will play an important role in more fields, and continuously improve its performance and reliability, providing solid support for the efficient operation of industrial production.

hydraulic accumulator NXO2-F40/31.5-H

When looking for high-quality, reliable hydraulic accumulators, YOYIK is undoubtedly a choice worth considering. The company specializes in providing a variety of power equipment including steam turbine accessories, and has won wide acclaim for its high-quality products and services. For more information or inquiries, please contact the customer service below:

E-mail: sales@yoyik.com
Tel: +86-838-2226655
Whatsapp: +86-13618105229

 

Yoyik offers various types of spare parts for steam turbines, generators, boilers in power plants:
1 4 needle valve SHV9.6
Stop valve J65Y-2500H SA-182F12
Oil pump GPA2-16-E-30-R
Stop valve J41W-63P
SOLENOID VALVE Q5100-41
Accumulator bladder NXQ-A-10/10-F-Y
temperature Regulating valve LWH-ZG1/2
CYLINDER,OIL UBJZS140-173*H
Stop valve J65Y-320 25
Vacuum stop valve DKJ41H-40
MOTOR HD1222-4A0 225M_45 KW
PNEUMATIC ACTUATOR RP75DA
Pneumatic Vacuum Trap JT641HS-40
Hydraulic Accumulator NXQ 2 5/31.5-L-Y
Gasket-Body to top plat for Dome DN100 P5460E-00
Mechanical seal DF100-80-230
fixed displacement gear pump CB-B16
Electric stop valve J961Y-63
Stop valve J21W-16P
Oring A156.33.01.10-18X2.4
gearbox gears M02225.013MVV1D1.5A
Bellows valves 50FWJ-1.6P
AC MOTOR PUMP YB225M-8B3
Boiler drum safety valve A68Y-250
Stop valve J61Y-P54.5150V
Maintenance package 191247
Electric stop valve J961Y-P55.5150V 12Cr1MoV


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  • Post time: Feb-11-2025