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Original Articles

Irradiation creep due to the growth of interstitial loops

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Pages 49-64 | Received 14 Jun 1972, Published online: 20 Aug 2006

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (18)

R. Bullough. (2013) Radiation damage and point defects. Philosophical Magazine 93:28-30, pages 3760-3771.
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Anirban Patra & David L. McDowell. (2012) Crystal plasticity-based constitutive modelling of irradiated bcc structures. Philosophical Magazine 92:7, pages 861-887.
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D. J. Sherwood, A. L. Ward & G. D. Johnson. (1987) Development of Materials for Fast Reactor Fuel Assemblies. Nuclear Technology 78:1, pages 83-89.
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J.L. Martin. (1987) Creep and microstructure under irradiation. Radiation Effects 101:1-4, pages 199-200.
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K.G. M. Nair, H.K. Sahu & K. Krishan. (1982) Some results on the evolution of microstructure for pulsed beam irradiation. Radiation Effects 59:3-4, pages 125-136.
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J.R. Matthews. (1977) The behaviour of materials in fast reactors. Contemporary Physics 18:6, pages 571-591.
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M.V. Speight, P.T. Heald & G.W. Lewthwaite. (1976) On the statistical model of irradiation creep. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 33:6, pages 931-934.
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M.V. Speight. (1975) Point defects and irradiation-enhanced densification. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 32:6, pages 1101-1105.
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R. Bullough & J.R. Willis. (1975) The stress-induced point defect-dislocation interaction and its relevance to irradiation creep. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 31:4, pages 855-861.
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L.N. Bystrov, L.I. Ivanov & O.V. Martishin. (1975) Effects of electron irradiation on creep of aluminium. Radiation Effects 24:2, pages 111-115.
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F.A. Nichols & C.C. Dollins. (1975) Statistical fluctuations and dislocation climb during irradiation. Radiation Effects 27:1-2, pages 23-28.
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P.T. Heald & M.V. Speight. (1974) Irradiation creep and swelling. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 30:4, pages 869-875.
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P.T. Heald & M.V. Speight. (1974) Steady-state irradiation creep. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 29:5, pages 1075-1080.
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G.W. Lewthwaite. (1973) Irradiation creep produced by the effect of stress on the nucleation of dislocation loops. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 28:6, pages 1287-1302.
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Articles from other publishers (78)

M.S. Veshchunov. (2023) On the theory of dislocation loop nucleation in irradiated crystals. Journal of Nuclear Materials 577, pages 154310.
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Yuanyuan Wang, Jiajun Zhao, Jianhua Ding & Jijun Zhao. (2022) Modeling irradiation-induced intragranular gas bubble in tungsten under external tensile loading. International Journal of Refractory Metals and Hard Materials 105, pages 105824.
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Takaaki Koyanagi, David J. Sprouster, Lance L. Snead & Yutai Katoh. (2021) X-ray characterization of anisotropic defect formation in SiC under irradiation with applied stress. Scripta Materialia 197, pages 113785.
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Sang Il Choi, Mosab Jaser Banisalman, Gyeong-Geun Lee, Junhyun Kwon, Eisung Yoon & Ji Hyun Kim. (2020) Using rate theory to better understand the stress effect of irradiation creep in iron and its based alloy. Journal of Nuclear Materials 536, pages 152198.
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Fabien Onimus, Thomas Jourdan, Cheng Xu, Anne A. Campbell & Malcolm Griffiths. 2020. Comprehensive Nuclear Materials. Comprehensive Nuclear Materials 310 366 .
Takaaki Koyanagi, Kurt Terrani, Torill Karlsen, Vendi Andersson, David Sprouster, Lynne Ecker & Yutai Katoh. (2019) In-pile tensile creep of chemical vapor deposited silicon carbide at 300 °C. Journal of Nuclear Materials 521, pages 63-70.
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Ronald B. Adamson, Christopher E. Coleman & Malcolm Griffiths. (2019) Irradiation creep and growth of zirconium alloys: A critical review. Journal of Nuclear Materials 521, pages 167-244.
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M. Gaumé, P. Baldo, F. Mompiou & F. Onimus. (2018) In-situ observation of an irradiation creep deformation mechanism in zirconium alloys. Scripta Materialia 154, pages 87-91.
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J. Henry & S.A. Maloy. 2017. Structural Materials for Generation IV Nuclear Reactors. Structural Materials for Generation IV Nuclear Reactors 329 355 .
GARY S. WASGary S. Was. 2017. Fundamentals of Radiation Materials Science. Fundamentals of Radiation Materials Science 735 791 .
Takaaki Koyanagi, Yutai Katoh, Kazumi Ozawa, Kazuya Shimoda, Tatsuya Hinoki & Lance L. Snead. (2016) Neutron-irradiation creep of silicon carbide materials beyond the initial transient. Journal of Nuclear Materials 478, pages 97-111.
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Qing Peng, Wei Ji, Jie Lian, Fei Gao, Shuming Peng, Hanchen Huang & Suvranu De. (2016) A first-principles study of the avalanche pressure of alpha zirconium. RSC Advances 6:76, pages 72551-72558.
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Sosuke Kondo, Takaaki Koyanagi & Tatsuya Hinoki. (2014) Irradiation creep of 3C–SiC and microstructural understanding of the underlying mechanisms. Journal of Nuclear Materials 448:1-3, pages 487-496.
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Qing Peng, Wei Ji, Hanchen Huang & Suvranu De. (2013) Axial ratio dependence of the stability of self-interstitials in HCP structures. Journal of Nuclear Materials 437:1-3, pages 293-296.
Crossref
K.L. Murty & K. Ramaswamy. 2013. Materials Ageing and Degradation in Light Water Reactors. Materials Ageing and Degradation in Light Water Reactors 3 69 .
Osman Anderoglu, Thak Sang Byun, Mychailo Toloczko & Stuart A. Maloy. (2012) Mechanical Performance of Ferritic Martensitic Steels for High Dose Applications in Advanced Nuclear Reactors. Metallurgical and Materials Transactions A 44:S1, pages 70-83.
Crossref
Kaiping Tai, Robert S. Averback, Pascal Bellon & Yinon Ashkenazy. (2011) Irradiation-induced creep in nanostructured Cu alloys. Scripta Materialia 65:2, pages 163-166.
Crossref
J. Garnier, Y. Bréchet, M. Delnondedieu, A. Renault, C. Pokor, P. Dubuisson & J.-P. Massoud. (2011) Irradiation creep of SA 304L and CW 316 stainless steels: Mechanical behaviour and microstructural aspects. Part II: Numerical simulation and test of SIPA model. Journal of Nuclear Materials 413:2, pages 70-75.
Crossref
S. Kondo, A. Kohyama & T. Hinoki. (2007) Anisotropic evolution of Frank loops in ion-irradiated silicon carbide. Journal of Nuclear Materials 367-370, pages 764-768.
Crossref
. 2007. Fundamentals of Radiation Materials Science. Fundamentals of Radiation Materials Science 711 763 .
Frank Garner. 2006. Materials Science and Technology. Materials Science and Technology.
Johsei Nagakawa & Keiko Ueno. (2004) Calculation of radiation-induced deformation of SUS 316 in the ITER-relevant condition. Journal of Nuclear Materials 329-333, pages 597-601.
Crossref
. 2003. Thermally Activated Mechanisms in Crystal Plasticity. Thermally Activated Mechanisms in Crystal Plasticity 281 319 .
Y Kurata, Y Itabashi, H Mimura, T Kikuchi, H Amezawa, S Shimakawa, H Tsuji & M Shindo. (2000) In-pile and post-irradiation creep of type 304 stainless steel under different neutron spectra. Journal of Nuclear Materials 283-287, pages 386-390.
Crossref
M.B Toloczko, J.P Hirth & F.A Garner. (2000) Application of generalized deformation theory to irradiation creep of fcc and bcc stainless steels. Journal of Nuclear Materials 283-287, pages 409-413.
Crossref
Johsei Nagakawa, Y Murase, N Yamamoto & T Fukuzawa. (2000) Irradiation creep at 60°C in SUS 316 and its impact on fatigue fracture. Journal of Nuclear Materials 283-287, pages 391-395.
Crossref
Tetsuji Noda & Johsei Nagakawa. 1999. Computational Materials Design. Computational Materials Design 163 193 .
Johsei Nagakawa. (1998) Calculation of radiation-induced deformation in the ITER vacuum vessel. Journal of Nuclear Materials 258-263, pages 289-294.
Crossref
Amitabh Jain. (1998) Ion-beam-induced stress reduction in refractory metal films. Surface and Coatings Technology 103-104, pages 20-24.
Crossref
R Scholz. (1998) Deuteron irradiation creep of chemically vapor deposited silicon carbide fibers. Journal of Nuclear Materials 254:1, pages 74-77.
Crossref
Amitabh Jain, S. Loganathan & Uma Jain. (1997) Reduction of stresses in thin films by high energy ion beams. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 127-128, pages 43-45.
Crossref
A. Jain, S. Loganathan & U. Jain. (1997) Toughening of thin films by high energy ion beams. Toughening of thin films by high energy ion beams.
H. Watanabe, T. Muroga & N. Yoshida. (1996) The temperature dependent role of phosphorus and titanium in microstructural evolution of FeCrNi alloys irradiated in FFTF. Journal of Nuclear Materials 228:3, pages 261-274.
Crossref
Johsei Nagakawa. (1995) Calculation of radiation-induced creep and stress relaxation. Journal of Nuclear Materials 225, pages 1-7.
Crossref
Naoki Kishimoto, Hiroshi Amekura & Tetsuya Saito. (1995) Resonant creep enhancement in austenitic stainless steels due to pulsed irradiation at low doses. Fusion Engineering and Design 29, pages 391-398.
Crossref
Amitabh Jain & Uma Jain. (1995) A physical basis for irradiation-induced modification of thin-film stresses. Thin Solid Films 256:1-2, pages 116-119.
Crossref
M.A. Shaikh, M. Ahmed & J.I. Akhter. (1994) Void formation in irradiated binary nickel alloys. Journal of Nuclear Materials 217:1-2, pages 200-205.
Crossref
Johsei Nagakawa. (1994) Calculation of radiation-induced stress relaxation. Journal of Nuclear Materials 212-215, pages 541-545.
Crossref
Naoki Kishimoto & Hiroshi Amekura. (1994) Resonant irradiation creep of 316 stainless steel under pulsed deuteron bombardment. Journal of Nuclear Materials 212-215, pages 535-540.
Crossref
S. Murakami. 1993. Theoretical and Applied Mechanics 1992. Theoretical and Applied Mechanics 1992 323 338 .
V.L. INDENBOM & Z.K. SARALIDZE. 1992. Elastic Strain Fields and Dislocation Mobility. Elastic Strain Fields and Dislocation Mobility 699 744 .
S. Murakami, M. Mizuno & T. Okamoto. (1991) Mechanical modeling of creep, swelling and damage under irradiation for polycrystalline metals. Nuclear Engineering and Design 131:2, pages 147-155.
Crossref
Johsei Nagakawa, N. Yamamoto & H. Shiraishi. (1991) Computer simulation of early-stage irradiation creep. Journal of Nuclear Materials 179-181, pages 986-989.
Crossref
S. Murakami & M. Mizuno. 1991. Creep in Structures. Creep in Structures 237 252 .
M. Suzuki & A. Sato. (1990) Stress-assisted nucleation of interstitial loops in an electron-irradiated Fe-18Cr-14Ni alloy. Journal of Nuclear Materials 172:1, pages 97-105.
Crossref
A. D. Brailsford. (1989) Reaction rate theory perspectives on some problems in materials science. Metallurgical Transactions A 20:12, pages 2583-2598.
Crossref
F.A. Garner & D.S. Gelles. (1988) Irradiation creep mechanisms: An experimental perspective. Journal of Nuclear Materials 159, pages 286-309.
Crossref
J.R. Matthews & M.W. Finnis. (1988) Irradiation creep models — an overview. Journal of Nuclear Materials 159, pages 257-285.
Crossref
V.V. SLYOZOV & P.A. BEREZNYAK. 1986. Physics of Radiation Effects in Crystals. Physics of Radiation Effects in Crystals 575 620 .
Johsei Nagakawa, H. Shiraishi, M. Okada, H. Kamitsubo, I. Kohno & T. Shikata. (1985) Irradiation creep simulation at low proton flux. Journal of Nuclear Materials 133-134, pages 497-500.
Crossref
Karl Ehrlich. (1981) Irradiation creep and interrelation with swelling in austenitic stainless steels. Journal of Nuclear Materials 100:1-3, pages 149-166.
Crossref
J.L. Martin. 1981. Dislocation Modelling of Physical Systems. Dislocation Modelling of Physical Systems 193 196 .
H. Rauh & D. Simon. (1981) A perturbation solution of chemical rate equations for irradiation-produced point defects. Physics Letters A 81:5, pages 285-287.
Crossref
F.A. Nichols. (1981) Radiation damage in non-fissile metallic alloys. Progress in Nuclear Energy 7:1, pages 11-45.
Crossref
J. Nagakawa, V.K. Sethi & A.P.L. Turner. (1981) Irradiation creep in simple binary alloys. Journal of Nuclear Materials 104, pages 1275-1279.
Crossref
K. Krishan. (1980) Kinetics of void-lattice formation in metals. Nature 287:5781, pages 420-421.
Crossref
D. Caillard, J.L. Martin & B. Jouffrey. (1980) Creep under irradiation of 316 steel in the high voltage electron microscope. Acta Metallurgica 28:8, pages 1059-1067.
Crossref
W.G. Wolfer. (1980) Correlation of radiation creep theory with experimental evidence. Journal of Nuclear Materials 90:1-3, pages 175-192.
Crossref
H. Wiedersich & S.R. MacEwen. (1980) Solute effects on radiation-induced creep and growth. Journal of Nuclear Materials 90:1-3, pages 157-168.
Crossref
R. Bullough & M.H. Wood. (1980) Mechanisms of radiation induced creep and growth. Journal of Nuclear Materials 90:1-3, pages 1-21.
Crossref
K Krishan & R V Nandedkar. (1979) Effect of irradiation at low doses and incubation of voids within the rate theory approach. Pramana 12:6, pages 607-629.
Crossref
L.P. Kubin & J.L. Martin. 1979. Strength of Metals and Alloys. Strength of Metals and Alloys 1639 1660 .
F.A. Nichols. (1978) Point defects and the creep of metals. Journal of Nuclear Materials 69-70, pages 451-464.
Crossref
A.D. Braislford & R. Bullough. (1978) Void growth and its relation to intrinsic point defect properties. Journal of Nuclear Materials 69-70, pages 434-450.
Crossref
H.R. Brager, F.A. Garner & G.L. Guthrie. (1977) The effect of stress on the microstructure of neutron irradiated type 316 stainless steel. Journal of Nuclear Materials 66:3, pages 301-321.
Crossref
R. Bullough & M.R. Hayns. (1977) The temperature dependence of irradiation creep. Journal of Nuclear Materials 65, pages 184-191.
Crossref
D.R. Harries. (1977) Irradiation creep in non-fissile metals and alloys. Journal of Nuclear Materials 65, pages 157-173.
Crossref
R. BULLOUGH & M.R. HAYNS. 1977. Measurement of Irradiation-enhanced Creep in Nuclear Materials. Measurement of Irradiation-enhanced Creep in Nuclear Materials 184 191 .
D.R. HARRIES. 1977. Measurement of Irradiation-enhanced Creep in Nuclear Materials. Measurement of Irradiation-enhanced Creep in Nuclear Materials 157 173 .
K. Krishan & S.K. Ray. (1975) Vacancy loop contribution to irradiation-induced creep. Journal of Nuclear Materials 58:3, pages 285-292.
Crossref
P.T Heald & M.V Speight. (1975) Point defect behaviour in irradiated materials. Acta Metallurgica 23:11, pages 1389-1399.
Crossref
G.J.C. Carpenter & D.O. Northwood. (1975) The contribution of dislocation loops to radiation growth and creep of Zircaloy - 2. Journal of Nuclear Materials 56:3, pages 260-266.
Crossref
R. Bullough & M.R. Hayns. (1975) The effects of temperature changes on void swelling. Journal of Nuclear Materials 55:3, pages 237-245.
Crossref
Horst Böhm. (1974) Bedeutung des Bestrahlungsverhaltens für die Auswahl und Entwicklung warmfester Legierungen im Reaktorbau. Archiv für das Eisenhüttenwesen 45:12, pages 821-830.
Crossref
A.R. Causey. (1974) In-reactor creep of zircaloy-2, zircaloy-4 and Zr-1.15 wt % Cr-0.1 wt % Fe at 568 K derived from their stress-relaxation behaviour. Journal of Nuclear Materials 54:1, pages 64-72.
Crossref
K. Herschbach & W. Schneider. (1974) Interconnection between irradiation creep and interstitial loop formation in fcc metals. Journal of Nuclear Materials 51:2, pages 215-220.
Crossref
R Bullough & R.S Nelson. (1974) Voids in irradiated metals. Physics in Technology 5:1, pages 29-67.
Crossref
A.D. Brailsford & R. Bullough. (1973) The stress dependence of high temperature swelling. Journal of Nuclear Materials 48:2, pages 87-106.
Crossref

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