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W-Series Wingstyle Hex-Nut Female Threaded Coupler
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w-f hex coupler 3d half

3WF3-B-HN - W-Series Wingstyle Hex-Nut Female Threaded Coupler

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Attributes

Maximum Operating Pressure
3,000 PSI (207 bar)
Weight
0.85 lb
Break Quantity
1
Optional Package/Box Quantity
1
Material
Brass
Maximum OD
1.49" (37.85 mm)
Thread
Female NPTF
Body Size
3/8"
Temperature Range
-40°F to 250°F (-40°C to 121°C)
Burst Pressure
13,000 (897 bar)
Thread Size
3/8"
Length
2.33" (59.18 mm)
Hex
13/16"

Details

Applications

Designed for applications requiring a coupling that can be connected under residual pressure with minimum spillage and air inclusion. Widely used on dump trailer wet-line hydraulic systems and oil field equipment. Not recommended for continuous hydraulic impulse applications.

Compatibility & Interchange Data

  • Aeroquip 5100-Series, Parker 6100-Series
  • Snap-Tite 78-Series, Faster Series-FB, Safeway S51-Series

Construction

  • Machined components are manufactured using solid bar stock
  • Stainless steel retaining rings and springs maximize corrosion resistance and extend service life.
  • Steel componentry is plated using ROHS Compliant Trivalent Chrome.
  • Nitrile (Nitrile Rubber) seals are standard
  • Main coupler valve has a bonded face-seal to improve seal integrity during pressurized connection/disconnection.
  • Redundant O-Ring on the coupler body will engage nipple for secondary sealing support.
  • Coupling has a PTFE back-up ring on the valve sleeve to extend service life.

Safety Notes

  • Although wingstyle couplings are able to connect and disconnect while under pressure, it is recommended that hydraulic power supply be de-energized during connection to ensure operator safety. If it is not possible to de-energize the circuit, operators must be aware of their surroundings to ensure that an attachment or tool does not put them at risk, once hydraulic power is applied during the connection process.
  • W-series couplings are not recommended for continuous hydraulic impulse applications at rated pressures.

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