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Articles

Stability of intermetallic aluminides in liquid aluminium and implications for grain refinement

Pages 177-185 | Published online: 19 Jul 2013

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. (2011) EDITORIAL. Materials Science and Technology 27:11, pages 1613-1619.
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A. Tronche, M. Vandyoussefi & A. L. Greer. (2002) Instability of TiC particles in aluminium melts inoculated with an Al-Ti-C grain refiner. Materials Science and Technology 18:10, pages 1072-1078.
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B. S. Murty, S. A. Kori & M. Chakraborty. (2002) Grain refinement of aluminium and its alloys by heterogeneous nucleation and alloying. International Materials Reviews 47:1, pages 3-29.
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M. vandyoussefi, J. Worth & A.L. Greer. (2000) Effect of instability of TiC particles ongrain refinement of Al and Al–Mg alloysby addition of Al–Ti–C inoculants. Materials Science and Technology 16:10, pages 1121-1128.
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A.M. Bunn, P. Schumacher, M.A. Kearns, C.B. Boothroyd & A.L. Greer. (1999) Grain refinement by Al–Ti–B alloys in aluminium melts: a study of the mechanisms of poisoning by zirconium. Materials Science and Technology 15:10, pages 1115-1123.
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P Schumacher, A. L. Greer, J. Worth, P. V. Evans, M. A. Kearns, P. Fisher & A. H. Green. (1998) New studies of nucleation mechanisms in aluminium alloys: implications for grain refinement practice. Materials Science and Technology 14:5, pages 394-404.
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H. W. Kerr & W. Kurz. (1996) Solidification of peritectic alloys. International Materials Reviews 41:4, pages 129-164.
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Articles from other publishers (13)

Keith E. Knipling, David C. Dunand & David N. Seidman. (2022) Criteria for developing castable, creep-resistant aluminum-based alloys – A review. International Journal of Materials Research 97:3, pages 246-265.
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Yu-xuan LIU, Ri-chu WANG, Chao-qun PENG, Zhi-yong CAI, Zhao-hui ZHOU, Xiao-geng LI & Xuan-yang CAO. (2021) Microstructures and mechanical properties of in-situ TiB2/Al−xSi−0.3Mg composites. Transactions of Nonferrous Metals Society of China 31:2, pages 331-344.
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Yang Li, Ying Jiang, Bin Hu & Qian Li. (2020) Novel Al-Ti-Nb-B grain refiners with superior efficiency for Al-Si alloys. Scripta Materialia 187, pages 262-267.
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M. Barrachin, K. Gajavalli, A. Decreton, F. Virot, P. Bénigni, J. Rogez, G. Mikaelian, E. Fischer, M. Lomello-Tafin, C. Antion & A. Janghorban. (2019) Critical evaluation of experimental data of solution enthalpy of zirconium in liquid aluminum. The Journal of Chemical Thermodynamics 128, pages 295-304.
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Kedarnath Rane & Narendra Dhokey. (2018) On the Formation and Distribution of In Situ Synthesized TiB2 Reinforcements in Cast Aluminium Matrix Composites. Journal of Composites Science 2:3, pages 52.
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P. Kotenkov, E. Popova & I. Gilev. Formation of stable and metastable aluminides in Al‒Zr‒Ti, Al‒Ti‒Nb alloys. Formation of stable and metastable aluminides in Al‒Zr‒Ti, Al‒Ti‒Nb alloys.
P. Schumacher & A. L. Greer. 2016. Essential Readings in Light Metals. Essential Readings in Light Metals 366 374 .
P. Schumacher & A.L. Greer. 2013. Essential Readings in Light Metals. Essential Readings in Light Metals 366 374 .
K.F. Kelton & A.L. Greer. 2010. Nucleation in Condensed Matter - Applications in Materials and Biology. Nucleation in Condensed Matter - Applications in Materials and Biology 461 510 .
Keith E. Knipling, David C. Dunand & David N. Seidman. (2006) Criteria for developing castable, creep-resistant aluminum-based alloys – A review. Zeitschrift für Metallkunde 97:3, pages 246-265.
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I.G. Watson, M.F. Forster, P.D. Lee, R.J. Dashwood, R.W. Hamilton & A. Chirazi. (2005) Investigation of the clustering behaviour of titanium diboride particles in aluminium. Composites Part A: Applied Science and Manufacturing 36:9, pages 1177-1187.
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Ruyao Wang, Weihua Lu & L.M Hogan. (2003) Self-modification in direct electrolytic Al–Si alloys (DEASA) and its structural inheritance. Materials Science and Engineering: A 348:1-2, pages 289-298.
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A.L Greer, A.M Bunn, A Tronche, P.V Evans & D.J Bristow. (2000) Modelling of inoculation of metallic melts: application to grain refinement of aluminium by Al–Ti–B. Acta Materialia 48:11, pages 2823-2835.
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