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Advanced Aseptic Process Equipment
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ASEPCO Flush-Mounted Tank Valves

 
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The ASEPCO Flush-Mounted Tank Valve is used as original equipment by the two largest U.S. bioreactor manufacturers, and it is experiencing growing popularity in the food and chemical industries. See the drawing to understand why the most forward-thinking engineers in aseptic processing have made ASEPCO valves a standard.

   Features & Benefits

  • The only truly flush diaphragm tank valve
  • Has no pocket, unlike other designs
  • Completely drainable
  • Welds flush to tank bottom—eliminates gaskets, bolts, and seams
  • An award winner—Innovation in Pharmaceutical Processing Award: Bioprocessing & Injectable Drug Manufacturing
  • Meets ASME code requirements
  • Delivered with material test reports (MTRs)
  • Serialized and stamped with a unique heat number
  • Uses a simple clamp for disassembly and inspection, needs no tools
  • Uses a Radial-Diaphragm design—reliable seal, easily cleanable
  • Reliable delivery—your project stays on time
  • Saves 85% of routine maintenance cost over weir valves, forever

In addition, the Flush Tank Valve can be ported to allow it to be C/SIP or flushed while closed,
providing access through the valve body to the downstream lines. The ability to quickly flush
or C/SIP while the valve is closed solves downstream problems simply and speeds the product changeover.

 

ASEPCO Tank-Bottom Valve Specifications

   Material 316L, AL6XN, Hastelloy
   Method of Manufacturing Machined from solid, hot-rolled, bar stock
  Sizes 1/2” through 4”
  Outlet Connections Hygienic clamp, tube end,and others available
   Maximum Pressure 250 psi
  Maximum Temperature 135ºC/275ºF
  Packaging All valves are separately packed in foam packing
  Marking Each valve is marked for full material traceability
  ISO All product and procedures are governed by our ISO Quality Assurance Program
  Non-Standard Custom Products Please contact our Customer Service Department for any non-standard valve requirement
  Standard BPE, CE-PED, ASME