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Valves

Clorius Controls

M3F 3-way Control Valve (DN80-DN150)

The Clorius M3F 3-way Control Valve (DN80-DN150) is designed for regulating water, lubricating oil and other liquid media and can be mounted in the pipe system as either mixing or diverting valves. However, when mounting as a diverting valve, the pressure drop is increased, compared with mounting as a mixing valve*. The valves are used in conjunction with our temperature regulators for controlling industrial processes, district and central heating plants and marine installations.

Price and delivery time will be given on request
Materials Cast iron
Min. Temperature -10ºC
Max. Temperature 120ºC
Leakage rate ≤ 0.5% of Kvs
Regulating capability Kvs/Kvr > 25

The Clorius M3F 3-way Control Valve (DN80-DN150) is designed for regulating water, lubricating oil and other liquid media and can be mounted in the pipe system as either mixing or diverting valves. However, when mounting as a diverting valve, the pressure drop is increased, compared with mounting as a mixing valve*. The valves are used in conjunction with Clorius temperature regulators for controlling industrial processes, district and central heating plants and marine installations.

Design

The valve components – seats and cone are made of alu bronze, the spindle is made of stainless steel. The valve body is made of cast iron EN-GJS-400-15 with flanges drilled according to EN 1092-2. The connection thread for the actuator is G1B ISO 228. The valves have two balanced single seats. The leakage rate is less than 0.5% of the full flow (according to VDI/VDE 2174). Tight between port 1(AB) og 3(B) is optional.

Function

Without an actuator being installed, connection A-AB is fully open, and connection B-AB completely closed using a spring. By increasing pressure on the spindle, the opening of the ports changes proportionally to the travel of the spindle. When the spindle is pressed to the bottom, connection B-AB is fully open, and connection A-AB completely closed.

* If the valves are applied as diverting valves, the pressure drop will increase by 35%, and the kvs-value will decrease by 14% as against mixing valves.

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Bart

Bart de Haan

Managing Director

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