Williams_F107

Williams F107

Williams F107

Turbofan engine for cruise missiles


The Williams F107 (company designation WR19) is a small turbofan engine made by Williams International. The F107 was designed to propel cruise missiles. It has been used as the powerplant for the AGM-86 ALCM, and BGM-109 Tomahawk, as well as the experimental Kaman KSA-100 SAVER and Williams X-Jet flying platform.

Quick Facts F107 / WR19, Type ...

Applications

Specifications (WR19)

Data from Aircraft engines of the World 1970[1]

General characteristics

  • Type: Turbofan
  • Length: 24 in (610 mm)
  • Diameter: 12 in (300 mm)
  • Dry weight: 67 lb (30 kg)

Components

  • Compressor: 2-stage fan, 2-stage axial IP compressor, 1-stage centrifugal HP compressor
  • Combustors: Annular combustion chamber
  • Turbine: 1-stage HP turbine, 2-stage LP turbine
  • Fuel type: JP-4 / JP-5
  • Oil system: Pressure system with return

Performance

  • Maximum thrust: 430 lbf (1.9 kN) Maximum continuous power
F107-WR-400 610 lbf (2.7 kN)
F107-WR-402 700 lbf (3.1 kN)
F107-WR-105/401 1,400 lbf (6.22 kN)

F122

Quick Facts Type, National origin ...

The Williams International F122 is a twin-shaft, axial-centrifugal-flow turbofan that is similar to the F107 in configuration but has a maximum thrust of 900 lbf (3.33 to 4.0 kN).

Design and development

The F122 is used to power the KEPD 350 air-launched cruise missile, and was the powerplant for the cancelled AGM-137 TSSAM air-launched cruise missile.[2] Although the AGM-137 was cancelled, the F122 was first used for the Taurus KEPD when it was flown aboard that missile in April 2002.

Applications

See also


References

  1. Wilkinson, Paul H. (1970). Aircraft engines of the World 1970 (21st ed.). Washington D.C.: Paul H. Wilkinson. p. 120.
  2. "Northrop AGM/MGM-137 TSSAM". www.designation-systems.net.

Further reading

  • Leyes, Richard A.; Fleming, William A. (1999). The history of North American small gas turbine aircraft engines Chapter 10. Washington D.C.: AIAA /Smithsonian Institution. ISBN 1-56347-332-1.

The initial version of this article was based on a public domain article from Greg Goebel's Vectorsite.


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