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Article

Dose rate effect on micro-structure and hardness of Hastelloy-N irradiated by Xe ions

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Pages 829-836 | Received 14 May 2014, Accepted 22 Oct 2014, Published online: 02 Dec 2014

References

  • Allen TR, Tan L, Was GS, Kenik EA. Thermal and radiation-induced segregation in model Ni-base alloys. J Nucl Mater. 2007;361:174–183.
  • Azhazha VM, Bakai AS, Lavrinenko SD, Bobrov YP, V’yugov PN, Kovtun KV, Pylypenko MM, Savchenko VI, Solopikhin AD, Stetsenko SP, Malykhin DG. Alloys for molten-salt reactors. Radiat Damage Phys Radiat Mater Sci. 2005;87:40–47.
  • Yamakawa K, Shimomura Y. Damage structures in fission-neutron irradiated Ni-based alloys at high temperatures. J Nucl Mater. 1999;264:319–326.
  • Rowcliffe AF, Mansur LK, Hoelzer DT, Nanstad RK. Perspectives on radiation effects in nickel-base alloys for applications in advanced reactors. J Nucl Mater. 2009;392:341–352.
  • Bakai AS. Combined effect of molten fluoride salt and irradiation on Ni-based alloys. Conference of the NATO Advanced Study Institute on Materials Issues for Generation IV Systems; 2007 Sep 24–Oct 06; France.
  • Azhazha VM, Bakai AS, Bobrov Y, Virich VD, Yemlyaninova TG, Kapustin VL, Kovtun KV, Lavrinenko SD, Malykhin DG, Petel’guzov IA, Pylypenko MM, Savchenko VI, Semyonov NA, Solopikhin AD, Shirokov BM. The corrosion resistance of heatproof nickel alloy in molten fluoride salts. Radiat Damage Phys Radiat Mater Sci. 2005;87:74–81.
  • Olson LC, Ambrosek JW, Sridharan K, Anderson MH, Allen TR. Materials corrosion in molten LiF–NaF–KF salt. J Fluor Chem. 2009;130:67–73.
  • Jin SX, Guo LP, Yang Z, Fu DJ, Liu CS, Xiao W, Tang R, Liu FH, Qiao YX. Microstructural evolution in nickel alloy C-276 after Ar+ ion irradiation. Nucl Instrum Methods Phys Res B. 2011;269:209–215.
  • Kondo M, Nagasaka T, Xu Q, Muroga T, Sagara A, Noda N, Ninomiya D, Nagura M, Suzuki A, Terai T, Fujii N. Corrosion characteristics of reduced activation ferritic steel, JLF-1 (8.92Cr–2W) in molten salts Flibe and Flinak. Fusion Eng Des. 2009;84:1081–1085.
  • Meslin E, Radiguet B, Pareige P, Toffolon C, Barbu A. Irradiation-induced solute clustering in a low nickel FeMnNi ferritic alloy. Exp Mech. 2011;51:1453–1458.
  • Dai Y, Henry J, Tong Z, Averty X, Malaplate J, Long B. Neutron/proton irradiation and He effects on the microstructure and mechanical properties of ferritic/martensitic steels T91 and EM10. J Nucl Mater. 2011;415:306–310.
  • Jiao Z, Was GS. Segregation behavior in proton- and heavy-ion-irradiated ferritic–martensitic alloys. Acta Mater. 2011;59:4467–4481.
  • Hengstler-Eger RM, Baldo P, Beck L, Dorner J, Ertl K, Hoffmann PB, Hugenschmidt C, Kirk MA, Petry W, Pikart P, Rempel A. Heavy ion irradiation induced dislocation loops in AREVA's M5 alloy. J Nucl Mater. 2012;423:170–182.
  • Jiao ZJ, Shankar V, Was GS. Phase stability in proton and heavy ion irradiated ferritic-martensitic alloys. J Nucl Mater. 2011;419:52–62.
  • Allen TR, Was GS, Kenik EA. The effect of alloy composition on radiation-induced segregation in Fe-Cr-Ni alloys. J Nucl Mater. 1997;244:278–294.
  • Allen TR, Cole JI, Kenik EA, Was GS. Analyzing the effect of displacement rate on radiation-induced segregation in 304 and 316 stainless steels by examining irradiated EBR-II components and samples irradiated with protons. J Nucl Mater. 2008;376:169–173.
  • Ziegler JF, Ziegler MD, Biersack JP. SRIM – the stopping and range of ions in matter. Nucl Instrum Methods Phys Res B. 2010;268:1818–1823.
  • Li XD, Bhushan B. A review of nanoindentation continuous stiffness measurement technique and its applications. Mater Charact. 2002;48:11–36.
  • Oliver WC, Pharr GM. Measurement of hardness and elastic modulus by instrumented indentation: advances in understanding and refinements to methodology. J Mater Res. 2004;19:3–20.
  • Egeland GW, Valdez JA, Maloy SA, McClellan KJ, Sickafus KE, Bond GM. Heavy-ion irradiation defect accumulation in ZrN characterized by TEM, GIXRD, nanoindentation, and helium desorption. J Nucl Mater. 2013;435:77–87.
  • Hardie CD, Roberts SG. Nanoindentation of model Fe–Cr alloys with self-ion irradiation. J Nucl Mater. 2013;433:174–179.
  • Wan QM, Shu GG, Wang RS, Ding H, Peng X, Zhang Q, Lei J. Characterization of proton irradiation-induced defect in the A508-3 steel by slow positron beam. Nucl Instrum Methods Phys Res B. 2012;287:148–152.
  • Lambrecht M, Malerba L. Positron annihilation spectroscopy on binary Fe–Cr alloys and ferritic/martensitic steels after neutron irradiation. Acta Mater. 2011;59:6547–6555.
  • Yabuuchi A, Maekawa M, Kawasuso A. Vacancy defects in a stress-corrosion-cracked Type 304 stainless steel investigated by positron annihilation spectroscopy. J Nucl Mater. 2011;419:9–14.
  • Jean YC, Zhang RW, Cao H, Yuan JP, Huang CM. Glass transition of polystyrene near the surface studied by slow-positron-annihilation spectroscopy. Phys Rev B. 1997;56:R8459–R8462.
  • Uedono A, Tanigawa S, Sugiura J, Ogasawara M. A study of vacancy-type defects in B+-implanted SiO2/Si by a slow positron beam. Jpn J Appl Phys. 1989;28:1293–1297.
  • Wharry JP, Jiao ZJ, Was GS. Application of the inverse Kirkendall model of radiation-induced segregation to ferritic–martensitic alloys. J Nucl Mater. 2012;425:117–124.
  • Ehrhart P, Averback RS. Diffuse X-ray scattering studies of neutron- and electron-irradiated Ni, Cu and dilute alloys. Philos Mag A. 1989;60:283–306.
  • Makin MJ, Minter FJ. Irradiation hardening in copper and nickel. Acta Met. 1960;8:691–699.
  • Onimus F, Dupuy L, Mompiou F. In situ TEM observation of interactions between gliding dislocations and prismatic loops in Zr-ion irradiated zirconium alloys. Prog Nucl Energy. 2012;57:77–85.
  • Gupta G, Jiao Z, Ham AN, Busby JT, Was GS. Microstructural evolution of proton irradiated T91. J Nucl Mater. 2006;351:162–173.
  • Lucas GE. The evolution of mechanical property change in irradiated austenitic stainless steels. J Nucl Mater. 1993;206:287–305.
  • Rodriguez R, Gutierrez I. Correlation between nanoindentation and tensile properties: influence of the indentation size effect. Mater Sci Eng A. 2003;361:377–384.
  • Hardie CD, Williams CA, Xu S, Roberts SG. Effects of irradiation temperature and dose rate on the mechanical properties of self-ion implanted Fe and Fe–Cr alloys. J Nucl Mater. 2013;439:33–40.

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