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Original Articles

Formation of L12 ordered precipitates at room temperature and their effect on the mechanical properties in Al-Li alloys

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Pages 99-107 | Received 06 Apr 1992, Accepted 07 Apr 1992, 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 (5)

A.G. Mikhin & N. De Diego. (1999) Interionic potential model for the Al-Li system. Philosophical Magazine A 79:5, pages 1233-1246.
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K. Mergia, F. Al-Hazmi, R.J. Stewart & S. Messoloras. (1997) In-situ small-angle neutron scattering study of the growth and dissolution of precipitates in Al-Li alloys. Philosophical Magazine A 75:4, pages 939-958.
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M.D. Aycirex, N. de Diego, A. Dupasquier, J. Del Río & A. Somoza. (1996) Positron and transmission electron microscopy study of precipitation phenomena in an Al[sbnd]Li[sbnd]Zr alloy. Philosophical Magazine A 73:1, pages 203-211.
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B. Noble & A.J. Trowsdale. (1995) Precipitation in an aluminium-14at.% lithium alloy. Philosophical Magazine A 71:6, pages 1345-1362.
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J. del Río, F. Plazaola & N. de Diego. (1994) A positron annihilation study of the formation and dissolution of L12 precipitates in Al—Li alloys. Philosophical Magazine A 69:3, pages 591-596.
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Articles from other publishers (10)

Xiaolong Zhang, Liang Zhang, Guohua Wu, Wencai Liu, Chunchang Shi, Jiashen Tao & Jiangwei Sun. (2017) Microstructural evolution and mechanical properties of cast Al-2Li-2Cu-0.5Mg-0.2Zr alloy during heat treatment. Materials Characterization 132, pages 312-319.
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Henry Ovri & Erica T. Lilleodden. (2015) New insights into plastic instability in precipitation strengthened Al–Li alloys. Acta Materialia 89, pages 88-97.
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Sengo Kobayashi, Kiyomichi Nakai & Yasuya Ohmori. (2012) Analysis of Ordering Process in an Al-Li Alloy by a Newly Developed Method of Degree of Order Determination Using High-Resolution Transmission Electron Micrographs. Metallurgical and Materials Transactions A 43:12, pages 4496-4506.
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K. S. Ghosh, K. Das & U. K. Chatterjee. (2007) Calorimetric studies of 8090 and 1441 Al–Li–Cu–Mg–Zr alloys of conventional and retrogressed and reaged tempers. Journal of Materials Science 42:12, pages 4276-4290.
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J.I. Pérez-Landazábal, M.L. Nó, V. Recarte & J. San Juan. (1998) Internal friction associated with δ′ precipitation in Al–Li alloys. Materials Science and Engineering: A 249:1-2, pages 241-248.
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M. Lewandowska, J. Mizera & J.W. Wyrzykowski. 1998. Low Cycle Fatigue and Elasto-Plastic Behaviour of Materials. Low Cycle Fatigue and Elasto-Plastic Behaviour of Materials 379 384 .
J. Lendvai. 1998. Advanced Light Alloys and Composites. Advanced Light Alloys and Composites 307 318 .
N. de Diego, J. del Río, R. Romero & A. Somoza. (1997) A positron study on the microstructural evolution of Al-Li based alloys in the early stages of plastic deformation. Scripta Materialia 37:9, pages 1367-1371.
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B. Noble & A.J. Trowsdale. (1995) Evidence for pre δ′ precipitation events in an Al-Li alloy. Scripta Metallurgica et Materialia 33:1, pages 33-38.
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J.I. Pérez-Landazábal, M.L. Nó & J.San Juan. (1995) Thermoelectric power measurements of the early stages of δ′ precipitation in Al-Li alloys. Scripta Metallurgica et Materialia 32:9, pages 1307-1312.
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