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Домашній Каталог Пароконденсатне обладнання Сепаратори пара та стисненого повітря Centrifugal air and dirt separator ADCA AS/F with integrated strainer, flanged EN PN16 for liquid systems

Специфікація

  • Body design

    Version with integrated strainer

  • Application

    To remove air and dirt in hydronic heating, cooling and pumping systems

  • Body material

    Carbon Steel P235GH,
    Stainless steel ASTM A312 TP 316L on request

  • Available models

    AS/SF - carbon steel with strainer,
    AS/SSF - stainless steel with strainer

  • Maximum allowable pressure

    Up to 10 bar

  • Maximum allowable temperature

    110°C

  • Minimum operating temperature

    -10°C

  • Air vent and Drainer bore diameter

    Drain connection 3/4” – 1.1/2” (depending on the selected size),
    Automatic air eliminator connection 1/2” – 1” (depending on the selected size),
    Manual start-up air drain connection 1/2” – 1” (depending on the selected size),
    Strainer drain connection 3/4” – 1.1/2” (depending on the selected size)

  • Connections

    Flanged EN 1092-1 PN 16,
    Flanged ASME B16.5 Class 150 on request

Centrifugal air and dirt separator ADCA AS/F with integrated strainer, flanged EN PN16 for liquid systems

Код товару: ADCA.AS-F

Доступно під запит

Ціна відповідно до конфігурації

Виберіть свою конфігурацію
Див. Вся конфігурація
Реф.#.
без ПДВ
(ОРІЄНТОВНА ЦІНА)

Кількість

-
+

Немає готових рішень

The ADCA AS/F series centrifugal air and dirt separators are designed to be used in the flow line of a hydronic heater or cooling system. The operation is based on the principle of centrifugal force, instead of relying on low velocity separation, offering the advantage of efficient separation in a smaller form factor.
The inside strainer protects against any dirt present in the system such as sand, welding residues and other foreign matter. The strainer screen position has a particular advantage compared with external pipe strainers since dirt is removed from the water flow and is collected in the bottom of the unit, avoiding pressure losses.

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