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Solenoid Ball Valve M-3SEW6U37/420MG24N9K4/V: Optimization of High-Pressure Fluid Control

Solenoid Ball Valve M-3SEW6U37/420MG24N9K4/V: Optimization of High-Pressure Fluid Control

In the fields of industrial automation and machinery control, fluid control is a key technical link. Ball valve M-3SEW6U37/420MG24N9K4/V, a directional control valve with electromagnetic starting function, provides an effective solution for starting, stopping and flow direction of fluid. We will introduce in detail the composition, working principle and application of this valve in high-pressure environments.

Solenoid Ball Valve M-3SEW6U37/420MG24N9K4/V

Directional valve M-3SEW6U37/420MG24N9K4/V is a high-pressure solenoid ball valve, which mainly consists of the following parts:

  1. 1. Shell: Provides support and protection for the valve body. The design of the fluid channel inside the shell determines the flow direction and speed of the fluid.
  2. 2. Coil: Under the action of electromagnetism, magnetic force is generated to push the valve core to move, thereby controlling the flow of fluid.
  3. 3. Reinforced valve body structure: In order to withstand high pressure, ensure the stability and durability of the valve.
  4. 4. Closing element: It is a key component of the valve switch. This element moves under the action of spring force and electromagnetic force to control the flow of fluid.
  5. 5. Spring: When the solenoid coil is not energized, the valve core is held in the initial position by spring force.
  6. 6. Incline push rod: connects the coil and the valve core, converting the force generated by the coil into the movement of the valve core.
  7. 7. Balls: Roll between the valve core and the valve seat to reduce friction and improve the valve’s switching efficiency.
  8. 8. Starting push rod: The sealed starting push rods on both sides are affected by the force of the coil and push the valve core to move to start or stop the flow of fluid.

 

The working principle of the ball valve M-3SEW6U37/420MG24N9K4/V is that in the initial position, the ball/valve core is pressed into the valve seat by spring force. When the solenoid coil is energized, the magnetic force generated by the coil will overcome the spring force, push the inclined push rod and the ball, and then transmit the force to the starting push rod, causing the valve core to move and change the flow direction of the fluid. When the coil is de-energized, the spring force springs the spool back to its original position and fluid flow stops.

 

The valve adapts to different starting forces through pressure compensation. Whether it is coil force or return spring force, it can ensure that the valve system works normally at a pressure not exceeding 630 bar. This design makes the ball valve M-3SEW6U37/420MG24N9K4/V suitable for high-pressure environments and widely used in industrial automation and machinery control and other fields.

 

Ball valve M-3SEW6U37/420MG24N9K4/V provides a reliable solution for fluid control with its unique structural design and high pressure adaptability.


Yoyik can offer many spare parts for power plants as below:
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  • Post time: Mar-21-2024