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Datasheet summary

4,625\" End Port Pressure Vessel 17,2 bar

Engineering summary from PDF text extraction for 4,625\" End Port Pressure Vessel 17,2 bar. Verify every value with the OEM datasheet.

Summary

Product identification

This document provides technical information for the Phoenix 4.625” End Port Pressure Vessel, Product Code 4.6E250N, Issue E. The body of the vessel is manufactured completely from glass reinforced epoxy resins.

Available Models and Specifications:

Order ReferenceNo. of 40” ElementsOverall Length +/-4mm (mm)Max Support Position (mm)Min Support Position (mm)Max Dry Weight (kg)
4.6E250N.1111”4253002003.2
4.6E250N.1919”6255002004.2
4.6E250N.4141”11848002007.0
4.6E250N.41/241”x22225155040012.2

Note: All dimensions and weights are nominal unless stated otherwise.

Operating limits

  • Working Pressure: 250 psi (17.2 bar)
  • Working Temperature: 0° to 45° C
  • Design Code: PED

Mechanical / hydraulic

  • Vessel Body Material: Glass Fibre Epoxy Resin
  • External Diameter: Ø 130 Nominal
  • Internal Diameter: Ø 117.5 ID
  • Connections:
    • Feed and concentrate: 1/2” BSP (Female)
    • Concentrate: 1/4” BSP (Female)
    • Product: 3/8” BSP (Female)
  • Component Materials:
    • Circlip: St.Steel
    • End Cap A: Thermoplastic
    • End Cap B: Thermoplastic
    • ‘O’ Seal (End Cap): EPDM
    • ‘O’ Seal (Adapt/Element): EPDM
    • Adaptor: Thermoplastic

Assembly Notes:

  • Glycerine is to be used on all ‘O’ seal paths.
  • Please adhere to recommended support positions; central support is required for certain configurations.

Disclaimer: This summary is based on the provided text extract and may not include all figures, footnotes, or the latest revisions. For contractual data, please refer to the official OEM PDF revision used on your project.

Official datasheet (PDF)

PDF datasheet

Curated from selected public technical reference material for discovery and preliminary comparison. This summary is not a substitute for a current certified manufacturer datasheet. Verify revisions and design limits before use.