19
Views
1
CrossRef citations to date
0
Altmetric
C.5. Fracture Mechanic

Fracture Mechanics Investigations on High-Temperature Gas-Cooled Reactor Materials

, , &
Pages 371-379 | Published online: 13 May 2017

References

  • E. BODMANN and H. FUHLROTT, “Investigations of Critical Crack Geometries in Pipes,” Proc. 6th Int. Conf. Structural Mechanics in Reactor Technology, Paris, France, August 17–21, 1981, North-Holland Publishing Company (1981).
  • H. D. SCHULZE, G. TOGLER and E. BODMANN, “Fracture Mechanics Analysis on the Initiation and Propagation of Circumferential and Longitudinal Cracks in Straight Pipes and Pipe Bends,” Nucl. Eng. Des., 58, 19 (1980).
  • L. GRUETER and K. KROMPHOLZ, “Anwendbarkeit bruchmechanischer Methoden bei hohen Temperaturen,” Z. Werkstofftechn., 13, 181 (1982).
  • S. J. HUDAK, Jr., A. SAXENA, R. J. BUCCI and R. C. MALCOLM, “Development of Standard Methods of Testing and Analyzing Fatigue Crack Growth Rate Data,” Technical Report AFML-TR-78-40, Air Force Materials Laboratory, Wright-Patterson Air Force Base, Ohio (1978).
  • W. G. CLARK, Jr. and S. J. HUDAK, Jr., “Variability in Fatigue Crack Growth Rate Testing,” J. Test. Eval., 3, 454 (1975).
  • K. KROMPHOLZ, E. D. GROSSER and K. EWERT, “Risswachstum bei metallischen Legierungen, Anwendung und Grenzen des Potentialsondenverfahrens,” Z. Werk-stofftechn., 11, 60 (1980).
  • K. KROMPHOLZ, E. D. GROSSER, K. EWERT and E. MORITZ, “Application of the D.C. Potential Drop Technique in the High Temperature Regime,” Advances in Crack Length Measurement, p. 231, C. J. BEEVERS, Ed., Engineering Materials Advisory Services, Ltd., West Midlands, U.K. (1982).
  • “Tentative Test Method for Constant Load Amplitude Fatigue Crack Growth Rates Above 108 m/Cycle,” Annual Book of ASTM Standards, ASTM-Designation E 647-78T, p. 662, American Society for Testing and Materials (1978).
  • K. KROMPHOLZ, E. D. GROSSER and K. EWERT, “Determination of J-Integral R-Curves for Hastelloy X and Inconel 617 up to 1223 K Using the Potential Drop Technique,” Z. Werkstofftechn., 13, 236 (1982).
  • L. A. JAMES, “Fatigue Crack Propagation in Austenitic Stainless Steels, ’Mi. Energy Rev., 14, 37 (1976).
  • K. KROMPHOLZ, E. D. GROSSER, J. BOETTNER and J. B. PIERICK, “Measurements and Mechanism of Crack Growth at Elevated Temperatures up to 1273 K,” Proc. 5th Int. Conf. Fracture, Cannes, France, March 29-April 3, 1981, Vol. 4, p. 1975, Pergamon Press (1981).
  • G. A. CLARK, W. R. ANDREWS, J. A. BEGLEY, J. K. DONALD, G. T. EMBLEY, J. D. LANDES, D. E. McCABE, and J. H. UNDERWOOD, “A Procedure for Determination of Ductile Fracture Toughness Values Using J-Integral-Techniques,” J. Test. Eval., 6, 49 (1979).
  • H. S. LAMBA, “The J-Integral Applied to Cyclic Loading,” Eng. Frac. Mech., 7, 693 (1975).
  • N. E. DOWLING and J. A. BEGLEY, “Fatigue Crack Growth During Gross Plasticity and the J-Integral,” ASTM-STP-590, p. 82, American Society for Testing and Materials (1976).
  • N. E. DOWLING, “Geometry Effects and the J-Integral Approach to Elastic-Plastic Fatigue Crack Growth,” ASTM-STP-601, p. 19, American Society for Testing and Materials (1976).
  • D. F. MOWBRAY, “Derivation of a Low-Cycle Fatigue Relationship Employing the J-Integral Approach to Crack Growth,” ASTM-STP-601, p. 33, American Society for Testing and Materials (1976).
  • K. KROMPHOLZ, E. D. GROSSER and E. MORITZ, “Untersuchungen zum Ermuedungsrisswachstumsverhalten des austenitischen Stahles X 6 CrNi 18 11 (1.4948),” Z. Werkstofftechn., 12, 440 (1981).
  • J. R. RICE, “Mathematical Analysis in the Mechanics of Fracture,” Fracture, An Advanced Treatise. Vol. II, p. 191, H. LIEBOWITZ, Ed., Academic Press, New York (1968).
  • J. R. RICE, “A Path Independent Integral and the Approximate Analysis of Strain Concentrations by Notches and Cracks,” J. Appl. Mech., 35, 379 (1968).
  • W. J. MILLS, “On the Relationship Between Stretch Zone Formation and the J-Integral for High Strain-Hardening Materials,” HEDL-SA 2051, Hanford Engineering Development Laboratory (Jan. 1980).
  • P. C. PARIS, H. TADA, A. ZAHOOR and H. ERNST, “A Treatment of the Subject of Tearing Instability,” NUREG-0311, U.S. Nuclear Regulatory Commission (1977).
  • P. C. PARIS, H. TADA, A. ZAHOOR and H. ERNST, “The Theory of Instability of the Tearing Mode of Elastic Plastic Crack Growth,” ASTM-STP-668, p. 5, American Society for Testing and Materials (1979).
  • J. W. HUTCHINSON and P. C. PARIS, “Stability Analysis of J-Controlled Crack Growth,” ASTM-STP-668, p. 37, American Society for Testing and Materials (1979).
  • K. KROMPHOLZ, J. B. PIERICK and E. D. GROSSER, “Creep Crack Growth Investigations for Elevated Temperature Material Application,” Proc. 6th Int. Conf. Structural Mechanics in Reactor Technology, Paris, France, August 17–21, 1981, North-Holland Publishing Company (1981).
  • K. KROMPHOLZ, H. HUTHMANN, E. D. GROSSER and J. B. PIERICK, “Creep Crack Growth Behaviour in Air and Sodium for an Unstabilized Austenitic Stainless Steel and Assessment of Evaluation Concepts,” Eng. Fract. Mech., 16, 809 (1982).
  • R. KOTERAZAWA and T. MORI, “Applicability of Fracture Mechanics to Crack Growth Under Creep Condition,” Trans. ASME, 7. Eng. Mater. Technol., 99, 298 (1977).
  • R. KOTERAZAWA and T. MORI, “Fracture Mechanics and Fractography of Creep and Fatigue Crack Propagation at Elevated Temperatures,” Proc. Int. Conf. Engineering Aspects of Creep, Sheffield, U.K., September 15–19, 1980.
  • G. G. MUSICCO, D. J. BOERMAN and G. PIATTI, “Creep Crack Growth Characterization of Austenitic Stainless Steel,” Proc. 5th Int. Conf. Fracture, Cannes, France, March 29-April 3, 1981, Pergamon Press (1981).
  • H. HUTHMANN, K. KROMPHOLZ, E. D. GROSSER and J. B. PIERICK, “Creep Crack Growth Investigations on Nickel-Base Alloy in Air and Helium at Temperatures Above 1073 K,” Proc. Conf. Gas Cooled Reactors Today, Bristol, U.K., September 20–24, 1982, p. 221, British Nuclear Energy Society (1983).
  • H. RIEDEL and J. R. RICE, “Tensile Cracks in Creeping Solids,” ASTM-STP-700, p. 112, American Society for Testing and Materials (1980).

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.