AFS PTFE CORRUGATED HOSE

AFS PTFE CORRUGATED HOSE, Hose Pipe
AFS PTFE CORRUGATED HOSE, Hose Pipe
AFS PTFE CORRUGATED HOSE, Hose Pipe
AFS PTFE CORRUGATED HOSE, Hose Pipe
AFS PTFE CORRUGATED HOSE, Hose Pipe
AFS PTFE CORRUGATED HOSE, Hose Pipe

AFS PTFE Corrugated Hose Usage Area mainly for the chemical and food industries, pharmaceutical plants Features Highly reliable and flexible. Excellent chemical inertness against different types of media. Suitable also for vacuum applications. The wide corrugation provides good self-cleaning properties when media flows through the hoses, the PTFE-base material is FDA-approved, EG 1935/2004 and EU 10/2011. For specific connection fittings the corrugated hose can be flanged over the sealing surface. With inline flanging connection fittings, media does not come into contact with metallic connection fittings. Model coil-corrugated white PTFE inliner with carbon components antistatic design Features Uses mainly for the chemical and food industries, and pharmaceutical plants Features Highly reliable and flexible. Excellent chemical inertness against different types of media. Suitable also for vacuum applications. The wide corrugation provides good self-cleaning properties when media flows through the hoses, the PTFE-base material is FDA-approved, EG 1935/2004 and EU 10/2011. For specific connection fittings the corrugated hose can be flanged over the sealing surface. With inline flanging connection fittings, media does not come into contact with metallic connection fittings. Model coil-corrugated white PTFE inliner with carbon components antistatic design Hose material PTFE (Polytetrafluor ethylene) Braided coating without braided lining Temperature min. -70 °C Temperature max. 260 °C Temperature valid for hose only License The base material has an FDA-approval, EG 1935/2004 and EU 10/2011. Application low pressure applications with different media including aggressive media Product description Warnings The stated pressure values ​​apply only to hose goods. From 120 °C, the pressure reduction factor must be observed. (Max. working pressure = working pressure x factor).

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