Basic parameters and structural principle of the first conductive magnetic valve - Database & Sql Blog Articles

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Basic Parameters and Structural Principle of the First Conductive Solenoid Valve

The first conductive solenoid valve is a critical component used in various industrial applications, especially where precise control of fluid flow is required. It combines the functionality of a solenoid valve, a manual valve, and a throttling valve, making it highly versatile and adaptable to different operational needs.

Body Material: 304/316 stainless steel

Medium Type: Water, air, gas, natural gas, and other weak acids or bases, as well as slightly corrosive media

Structural Principle: Direct-acting diaphragm type

Control Method: Normally closed or normally open

Pressure Difference Range: 0–1.0 MPa

Nominal Pressure: 1.0 MPa

Medium Temperature: -5°C to 80°C

Ambient Temperature: -5°C to 60°C

Connection Type: Threaded connection or flange connection

Voltage Options: AC 380V, 220V, 110V, 36V, 24V; DC 220V, 110V, 36V, 24V, 12V

The structural principle of the first conductive solenoid valve is designed for efficiency and durability. The pilot valve receives an electrical signal that triggers the main valve operation. Adjustment screws A and B allow for fine-tuning of the medium viscosity range and the switching time of the main valve, with compensation available after wear occurs. This design ensures long-term performance and reliability.

If the pilot valve requires maintenance, simply tighten adjustment screw B and isolation screw C, then remove the pilot valve and use the manual screw. This feature allows for easy servicing without disrupting the system. Additionally, the manual screw can be used to set the maximum or minimum flow rate during automatic control, offering greater flexibility in operation.

This type of solenoid valve is ideal for applications requiring high precision, stability, and ease of maintenance. Its robust construction and advanced design make it suitable for a wide range of industries, including chemical processing, water treatment, and automation systems.

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