Hydac 0110 R 010 BN4HC Filter Element

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Produktnummer 0110 R 010 BN4HC
Hersteller Hydac
Artikelnummer 0110 R 010 ON

Description: 0110 R 010 BN4HC ( Hydac )

Hydac 0110 R 010 BN4HC Filter Element



Product Name: Hydac 0110 R 010 BN4HC Filter Element
Product Brand: Hydac
Product Code: 0110 R 010 BN4HC
Product Artikel: 0110 R 010 ON
Betamicron ® Filter Elements BN4HC/BH4HC up to 210 bar, filtration rating 3, 5, 6, 10, 20, 25 μm   Collapse stability BN4HC: 20 bar BH4HC: 210 bar Temperature range -30 °C to +100 °C For sealing material FPM to -10 °C Flow direction From outside to inside Filtration rating 3, 5, 6, 10, 20, 25 μm Bypass cracking pressure Pressure filter element ( InchDInch ): Without bypass valve as standard Pressure filter element to DIN 24550 ( InchDNInch ): Without bypass valve as standard Pressure filter element for MFX filter ( InchMXInch ): standard 3.5 bar Return line filter element to DIN 24550 ( InchRNInch ): standard 3.5 bar (others on request) Category of filter element Single use element   The 3-stage structure of Betamicron® filter elements ensures the maximum contamination retention and filtration performance. An additional drainage layer directs the fluid flow with optimal efficiency, achieving particularly favourable Δp/Q characteristics.   An innovative bonding process used for the longitudinal seam guarantees that the cut ends of the mesh pack remain completely sealed even under high load variations. This eliminates the possibility of particles crossing from the contaminated to the clean side.   To prevent the formation of zinc soap, which occurs mainly in conjunction with water-based fluids (HFA / HFC) and bio oils, no components containing zinc are utilized. The metal tube which forms a stable core inside the element is constructed as a spiral lock seam tube. This provides consistent stability and a significant reduction in element weight.   The pleated filter mesh pack is encased in a stable outer wrap. This wrap distributes the incoming fluid evenly over the mesh pack. In addition the mesh pack is not directly exposed to the flow, and this protects it from pulsating flows. In this way, the element achieves extremely high fatigue strength values. Moreover, the mesh pack is protected from mechanical damage.

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