43
Views
2
CrossRef citations to date
0
Altmetric
Technical Paper

In-Reactor Creep Measurements

&
Pages 273-283 | Published online: 12 May 2017

References

  • E. R. GILBERT, D. C. KAULITZ, J. J. HOLMES, and T. T. CLAUDSON, “Fast Reactor Induced Creep in 20% Cold Worked Type 316 Stainless Steel,” Irradiation Embrittlement and Creep in Fuel Cladding and Core Components, p. 239, British Nuclear Energy Society (1972).
  • T. L. KIRCHNER, “Laser Interferometer System for the Measurement of Creep in Pressurized Tubes,” Proc. Electro Optics Laser Conf., New York (1978).
  • M. HALL, Jr., A. G. HINS, J. R. SUMMERS, and D. E. WALKER, “Fusion Welding of Irradiated AISI 304L Stainless Steel Tubing,” Fifth Bolton Landing Conf. Weldments-Physical Metallurgy and Failure Phenomena, New York (1978).
  • D. G. FRANKLIN and W. E. RUTHER, “Reactor In-Core Temperature Monitor,” Trans. Am. Nucl. Soc., 14, 632 (1971).
  • G. L. WIRE and J. L. STRAALSUND, “Irradiation Induced Stress Relaxation of Previously Irradiated 304 Stainless Steel in a Fast Flux Environment,” J. Nucl. Mater., 64, 254 (1977).
  • G. L. WIRE, “Effects of Prior Stress History on Irradiation-Induced Creep,” Irradiation Effects on the Mictostructure and Properties of Metals, ASTM STP 611, p. 5, American Society for Testing and Materials (1976).
  • T. A. KENFIELD, H. J. BUSBOOM, and W. K. APPLEBY, “In-Reactor Stress Relaxation in Bending of 20% Cold-Worked 316 Stainless Steel,” Trans. Am. Nucl. Soc., 22, 185 (1975).
  • B. A. CHIN and J. L. STRAALSUND, “The Effect of a Temperature Change on the In-Reactor Creep of 20% Cold-Worked 316 Stainless Steel,” J. Nucl. Mater., 74, 260 (1978).
  • B. A. CHIN, J. L. STRAALSUND, and G. L. WIRE, “Irradiation Creep of Previously Irradiated 304 Stainless Steel in a Fast Flux Environment,” J. Nucl. Mater., 75, 274 (1978).
  • A. J. McSHERRY, M. R. PATEL, J. MARSHALL, and E. R. GILBERT, “Irradiation Creep in Bending of CW AISI 316 at Low Fluence,” Trans. Am. Nucl. Soc., 28, 146 (1978).
  • D. MOSEDALE, G. W. LEWTHWAITE, G. O. LEFT, and W. SLOSS, “Irradiation Creep in the Dounreay Fast Reactor,” Nature, 224, 1301 (1969).
  • D. MOSEDALE and G. W. LEWTHWAITE, “Irradiation Creep in Some Austenitic Stainless Steels, Nimonic PE16 Alloys, and Nickel,” Creep Strength in Steel and High-Temperature Alloys, p. 169, The Metals Society, London (1972).
  • D. MOSEDALE, D. R. HARRIES, J. A. HUDSON, G. W. LEWTHWAITE, and R. J. McELROY, “Irradiation Creep in Fast Reactor Core Component Materials,” Radiation Effects in Breeder Reactor Structural Materials, p. 209, American Institute of Mechanical Engineers (1977).
  • M. M. HALL, Jr., “Multiaxial In-Reactor Creep in the Presence of Significant Swelling,” Trans. Am. Nucl. Soc., 28, 146 (1978).
  • G. W. LEWTHWAITE, D. MOSEDALE, and I. R. WARD, “Irradiation Creep in Several Metals and Alloys at 100°C,” Nature 216, 472 (1967).
  • J. E. FLINN, G. L. McVAY, and L. C. WALTERS, “In-Reactor Deformation of Solution-Annealed Type 304L Stainless Steel,” J. Nucl. Mater., 65, 210 (1977).
  • H. R. BRAGER, F. A. GARNER, E. R. GILBERT, J. E. FLINN, and W. G. WOLFER, “Stress-Affected Micro-structural Development and the Creep-Swelling Interrelationship,” Radiation Effects in Breeder Reactor Structural Materials, p. 727, American Institute of Mechanical Engineers (1977).
  • L. E. THOMAS, “Phase Instabilities and Swelling Behavior in Fuel Cladding Alloys,” Trans. Am. Nucl. Soc., 28. 151 (1978).
  • J. F. BATES and M. K. KORENKO, “Updated Design Equation for Swelling of 20% CW AISI 316 SS,” HEDL-TME 78-3, Hanford Engineering Development Laboratory (1978).
  • S. N. BUCKLEY, “Irradiation Growth and Irradiation-Enhanced Creep in fee and bcc Metals,” The Interactions Between Dislocations and Point Defects Part III, Dislocation Climb, AERE-R-5944, Vol. 2, pp. 547–565, Atomic Energy Research Establishment, Harwell (1968).

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.