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Original Articles

Characterization of dislocation loops in neutron-irradiated titanium

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Pages 903-916 | Received 05 Jun 1979, Accepted 23 Oct 1979, Published online: 04 Oct 2006

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T. Mukai & T.E. Mitchell. (1982) Nature of dislocation loops in electron-irradiated CuAuI and Cu3Au. Philosophical Magazine A 45:5, pages 741-751.
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Articles from other publishers (17)

Huan Li, Chengze Liu, Jianping Xu, Hai Huang, Junyu Wu, Houlong Liu, Xing Zhao & Jinping Wu. (2022) Gamma-ray irradiation behavior of a hexagonal Ti–6Ta alloy applied in spent nuclear fuel reprocessing. Journal of Materials Science 57:43, pages 20521-20530.
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Charles A. Hirst, Fredric Granberg, Boopathy Kombaiah, Penghui Cao, Scott MiddlemasR. Scott KempJu Li, Kai Nordlund & Michael P. Short. (2022) Revealing hidden defects through stored energy measurements of radiation damage. Science Advances 8:31.
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Ryo Ishibashi, Yasunori Hayashi, Huang Bo, Takao Kondo & Tatsuya Hinoki. (2022) Radiation Effect in Ti-Cr Multilayer-Coated Silicon Carbide under Silicon Ion Irradiation up to 3 dpa. Coatings 12:6, pages 832.
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Malcolm Griffiths. 2020. Comprehensive Nuclear Materials. Comprehensive Nuclear Materials 367 405 .
Hongbing Yu, Zhongwen Yao, Yasir Idrees, He K. Zhang, Mark A. Kirk & Mark R. Daymond. (2017) Accumulation of dislocation loops in the α phase of Zr Excel alloy under heavy ion irradiation. Journal of Nuclear Materials 491, pages 232-241.
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S. Sadi, A. Paulenova, W.D. Loveland, P.R. Watson, J.P. Greene & G.P. Zinkann. (2011) Microstructure damage of titanium films by irradiation with fission fragments. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 269:24, pages 3230-3232.
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V Dubinko, A Turkin, A Abyzov & M Griffiths. (2006) Modeling of the Simultaneous Evolution of Vacancy and Interstitial Dislocation Loops in hcp Metals Under Irradiation. Journal of ASTM International 3:1, pages 1-18.
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P Rudling & B KammenzindV Dubinko, A Turkin, A Abyzov & M Griffiths. 2005. Zirconium in the Nuclear Industry: Fourteenth International Symposium. Zirconium in the Nuclear Industry: Fourteenth International Symposium 157 174 .
C.H Woo. (2000) Defect accumulation behaviour in hcp metals and alloys. Journal of Nuclear Materials 276:1-3, pages 90-103.
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M. Griffiths. (1993) Evolution of microstructure in hcp metals during irradiation. Journal of Nuclear Materials 205, pages 225-241.
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V.G. Kapinos, Yu.N. Osetsky & P.A. Platonov. (1992) Computer simulation of vacancy loops and stacking faults in zirconium. Journal of Nuclear Materials 195:1-2, pages 83-101.
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C.H. Woo. (1988) Theory of irradiation deformation in non-cubic metals: Effects of anisotropic diffusion. Journal of Nuclear Materials 159, pages 237-256.
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W.J. Phythian. (1988) Displacement collision cascade damage in hcp metals. Journal of Nuclear Materials 159, pages 219-224.
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M. Griffiths, C.D. Cann & R.C. Styles. (1987) Neutron irradiation damage in 64% cold-worked Titanium. Journal of Nuclear Materials 149:2, pages 200-211.
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FA Garner, NH Packan & AS KumarC Woo. 1987. Radiation-Induced Changes in Microstructure: 13th International Symposium (Part I). Radiation-Induced Changes in Microstructure: 13th International Symposium (Part I) 70 89 .
M. Griffiths, D. Faulkner & R.C. Styles. (1983) Neutron damage in α-titanium. Journal of Nuclear Materials 119:2-3, pages 189-207.
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M. Griffiths, M.H. Loretto & R.E. Smallman. (1983) Electron damage in zirconium. Journal of Nuclear Materials 115:2-3, pages 313-322.
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