Dixon

IXFS24 - Internal Expansion (IX) Sanitary Style Bevel Seat Stem

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SKU:
IXFS24
Availability:
Usually Ships Within 24 Hours
Weight:
0.72 LBS
*Images are for visual reference only.
$89.72

Represents the combined quantity sold of all the sizes under this product SKU.
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Description

Details

Applications

Flow Chief Sanitary Fittings are used in the food, dairy and beverage industries, recommended where increased flow capacity is important.

Note

Consult maximum working pressure chart or contact Dixon for additional application and working pressure information.

Safety Notes

  • Flow Chief internal expansion (IX) fittings are only to be used with Flow Chief stainless steel ferrules
  • Holedall couplings, regardless of coupling style, are never to be used for steam service at any pressure.
  • Holedall couplings, regardless of coupling style, are never to be used for steam service at any pressure.
  • Holedall fittings are not to be used with cable reinforced high-pressure hose, 4 or 6 braid wire hydraulic hose or any other service not listed in the recommendations. Consult Dixon for recommendations on usage.
  • Strict adherence to ferrule OD range (internally expanded) for each hose end to be assembled is essential for satisfactory performance.
  • Hose service working pressure (including surges and spikes) is never to exceed the maximum recommended working pressure for the fitting. The assembly's (hose + coupling) maximum working pressure is the lesser of the hose rated working pressure or the coupling rated working pressure.
  • Media being transported through the hose should be compatible with the stem material. Compatibility of ferrule material with the environment in which it will be used is recommended. Consult the Compatibility Chart or the Dixon factory for material compatibility.
  • For applications other than the ones list, please consult Dixon.

Use

Only use with the IXAN nuts
WARNING: This product contains lead, a chemical known to the State of California to cause cancer and birth defects or other reproductive harm.
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