Pressure-reducing valve DV755
diaphragmmanualfor control

Pressure-reducing valve - DV755 - DIVATEC,SL - diaphragm / manual / for control
Pressure-reducing valve - DV755 - DIVATEC,SL - diaphragm / manual / for control
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Characteristics

Type
diaphragm
Operation
manual
Function
for control, adjustment, pressure-reducing
Body
threaded, PTFE, PVC, PP, PVDF
Applications
for industrial applications, for the chemical industry, for water treatment
Associated function
reducing, spray
DN

Min.: 10 mm
(0.394 in)

Max.: 50 mm
(1.969 in)

Pressure

10 bar
(145 psi)

Description

• Control valve for pressure reduction • We obtain constant work pressures • Low vibration and pressure control from 0.5 to 9 bar • PVC, PP and PVDF materials • PTFE membrane • PN10 bar Advantage • Valve adjustment also under working pressure • High reproducibility of the adjustment pressure • High operating safety and long service life • Stable regulation behavior and reduced vibrations • Requires little maintenance • Absolutely watertight by valve membrane with molded gasket rings • Shortest construction length with threaded spigot attached by spray according to DIN 8063 • The threaded bushing on the housing of the valve body makes it possible to directly mount the valves on the support brackets and maintains the freedom of assembly of the union union nuts on the PVC-U, PP and PVDF valves Applications • Construction of chemical facilities • Construction of industrial facilities • Water treatment Use • The pressure reducing valve is controlled directly by the fluid and is used in industrial plants to reduce the primary pressures at work pressures conditioned by the system and to regulate and maintain constant pressures of work. Function of the valve • The open valve is balanced between the inlet pressure (primary pressure) and the lowest working pressure (secondary pressure). If the working pressure increases above or falls below the desired value, the large surface membrane is pressed up or down against the spring. The valve starts to close or open until the equilibrium state is reached again, that is, regardless of whether the inlet pressure increases or decreases, the working pressure remains constant (if the inlet pressure> working pressure).

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