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Technical Paper

Liquid-Metal-Bonded Gap for Light Water Reactor Fuel Rods

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Pages 300-312 | Published online: 10 May 2017

References

  • Hj. MATZKE, Advanced LMFBR Fuels, p. 167, Norl-Holland, New York (1986).
  • R. F. WRIGHT, G. J. SCHOESSOW, J. S. TULENKO, T. ADAMS, and R. G. CONNELL, Jr., “Material Performance Evaluation of the Innovative Liquid Metal Bonded Light Water Reactor Fuel Rod,” Proc. Int. Topl. Mtg. Light Water Reactor Fuel Performance, West Palm Beach, Florida, April 17–21, 1994, p. 659, American Nuclear Society (1994).
  • R. F. WRIGHT, J. S. TULENKO, G. J. SCHOESSOW, R. G. CONNELL, Jr., M. A. DUBECKY, and T. ADAMS, “Thermal Bonding of Light Water Reactor Fuel Using Nonal-kaline Liquid-Metal Alloy,” Nucl. Technol., 115, 281 (1996).
  • “DEFECT User’s Manual,” EPRI WO-3564–03, Electric Power Research Institute (Dec. 1995).
  • R. J. JAFFEE, R. M. EVANS, E. A. FROMM, and B. W. GONSER, “Gallium in Nuclear Reactors: Consideration for Use as a Primary Coolant,” AECD-3317, U.S. Department of Commerce (1984).
  • D. R. OLANDER and Y. S. KIM, “Liquid-Metal Bonded Gap for LWR Fuel Rods,” EPRI WO-5396-01, Electric Power Research Institute (Dec. 1997).
  • T. B. MASSALSKI, Binary Alloy Phase Diagrams, 2nd ed., Vol. 2, ASM International (1990).
  • D. R. OLANDER and Y. S. KIM, “Liquid-Metal Bonded Gap for LWR Fuel Rods,” EPRI WO-5396–01, Electric Power Research Institute (July 1998).

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