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Technical Paper

Interaction of Interstitial Impurities with Radiation-Induced Defects Leading to Improved Elevated Temperature Mechanical Properties of Mild Steel

Pages 124-131 | Published online: 10 May 2017

References

  • See for example, D. R. OLANDER, “Fundamental Aspects of Nuclear Reactor Fuel Elements,” TID-26711-P1, National Technical Information Service, U.S. Department of Commerce (1976).
  • K. L. MURTY and D. J. OH, “Friction and Source Hardening in Irradiated Mild Steel,” Scripta Met., 17, 317 (1983).
  • E. O. HALL, Yield Point Phenomena in Metals and Alloys, p. 109, MacMillan and Company, Ltd., London (1970).
  • M. S. WECHSLER, “The Influence of Impurity-Defect Interactions on Radiation Hardening and Embrittlement,” J. Eng. Mater. Technol., 101, 114 (1979).
  • K. L. MURTY and E. O. HALL, “Dynamic Strain-Aging and Neutron Irradiation in Mild Steel,” Irradiation Effects on the Microstructure and Properties of Metals, ASTM STP 611, p. 434, American Society for Testing and Materials (1976).
  • K. L. MURTY, “Strain-Aging Behavior of Irradiated and Denitrided Mild Steel,” Mater. Sci. Eng., 59, 207 (1983); see also K. L. MURTY, “Beneficial Effect of Neutron Irradiation on Mechanical Properties of Mild Steel in Blue Brittle Range,” Scripta Met., 18, 87 (1984).
  • L. E. STEELE, “Review and Analysis of Reactor Vessel Surveillance Programs, Status of USA Nuclear Reactor Pressure Vessel Surveillance for Radiation Effects, ASTM STP 784, p. 227, American Society for Testing and Materials (1983).
  • E. A. LITTLE and D. R. HARRIES, “Effects of Interstitial Elements on Radiation Hardening in Mild Steels,” Irradiation Effects in Structural Alloys for Thermal and Fast Reactors, ASTM STP 457, p. 215, American Society for Testing and Materials (1969).
  • J. E. McLENNAN and E. O. HALL, “The Carbon Levels in Radiation-Damaged and Strain-Aged Mild Steel,” J. Aust. Inst. Met., 8, 191 (1963).
  • D. HULL and I. L. MOGFORD, “Precipitation and Irradiation Hardening in Iron,” Phil. Mag., 6, 535 (1961).
  • A. C. DAMASK, “Effect of Neutron Irradiation on Precipitation of Carbon in Alpha Iron,” Diffusion in Body-Centered Cubic Metals, p. 317, American Society for Metals (1964).
  • J. T. STANLEY, “The Effect of Irradiation on Precipitation of Nitrides in Iron,” Diffusion in Body-Centered Cubic Metals, p. 349, American Society for Metals (1964).
  • N. IGATA, R. R. HASIGUTI, E. YAGI, U. NISHIKA and K. WATANABE, “Neutron Irradiation Effects on Iron Containing Aluminum and Nitrogen,” Irradiation Effects on Structural Alloys for Nuclear Reactor Applications, ASTM STP 484, p. 128, American Society for Testing and Materials (1970).
  • A. WOLFENDEN, J. R. HOLLAND, R. G. LOTT and J. A. SPITZNAGEL, “Phase Stability in Irradiated BCC Materials,” Phase Stability During Irradiation, p. 383, American Institute of Mining, Metallurgical and Petroleum Engineers (1981).
  • J. S. BLAKEMORE and E. O. HALL, “Blue-Brittle Behavior of Mild Steel,” J. Iron Steel Inst., 204, 817 (1966).
  • C. C. LI and W. C. LESLIE, “Effects of Dynamic Strain-Aging on the Subsequent Mechanical Properties of Carbon Steels,” Met. Trans., 9A, 1765 (1978).
  • K. L. MURTY, R. P. SHOGAN and W. H. BAMFORD, “Dynamic Fracture Toughness of Irradiated A533 Grade B class 1 Pressure Vessel Steel,” Nucl. Technol., 64, 268 (1984).

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