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Original Articles

Methods of analysis and measurement of irradiation creep in non-cubic metals

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Pages 59-84 | Received 30 Oct 1997, Accepted 09 Mar 1998, Published online: 12 Aug 2009

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Read on this site (2)

C. H. Woo & X. Liu. (2007) Atomistic calculation of point-defect diffusion anisotropy and irradiation growth in -zirconium. Philosophical Magazine 87:16, pages 2355-2369.
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C.N. Tomé & N. Christodoulou. (2000) Analysis of accelerated irradiation growth in Zr-2.5% Nb pressure tubes. Philosophical Magazine A 80:6, pages 1407-1424.
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Articles from other publishers (7)

Malcolm Griffiths. (2023) Microstructural Effects on Irradiation Creep of Reactor Core Materials. Materials 16:6, pages 2287.
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Dong-Hyun Ahn, Gyeong-Geun Lee, Young-Bum Chun & Jong Yeob Jung. (2022) Prediction of the in-reactor deformation of Zr-2.5wt%Nb pressure tubes using the crystal plasticity finite element method framework. Journal of Nuclear Materials 570, pages 153947.
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Fabien Onimus, Thomas Jourdan, Cheng Xu, Anne A. Campbell & Malcolm Griffiths. 2020. Comprehensive Nuclear Materials. Comprehensive Nuclear Materials 310 366 .
Daniel C. Bufford, Christopher M. Barr, Baoming Wang, Khalid Hattar & Aman Haque. (2019) Application of In Situ TEM to Investigate Irradiation Creep in Nanocrystalline Zirconium. JOM 71:10, pages 3350-3357.
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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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S. Cai, Mark R. Daymond, R.A. Holt & E.C. Oliver. (2006) Evolution of Interphase Stress in Zr-2.5%Nb during Deformation. Advanced Materials Research 15-17, pages 615-620.
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D.X. Du & C.H. Woo. (2002) Effect of grain-structure topology in modelling aggregate irradiation creep behaviour of two-phase alloys. Computational Materials Science 23:1-4, pages 260-269.
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