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Articles

Halo formation in Al-Si alloys

Pages 362-366 | Published online: 18 Jul 2013

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Fernando S. Rocha, Thiago G. Costa, Ailton G. Oliveira, Thiago A. Costa, Ivaldo L. Ferreira & Otávio L. Rocha. (2020) Transient heat flow parameters and microstructure of the upward solidified eutectic Al–Si alloy: a theoretical and experimental study. Philosophical Magazine 100:21, pages 2659-2676.
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Rodrigo V. Reyes, Rafael Kakitani, Thiago A. Costa, José E. Spinelli, Noé Cheung & Amauri Garcia. (2016) Cooling thermal parameters, microstructural spacing and mechanical properties in a directionally solidified hypereutectic Al–Si alloy. Philosophical Magazine Letters 96:6, pages 228-237.
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L. Hu, B. Gao, J. K. Lv, Y. Hao, G. F. Tu, S. Z. Hao & C. Dong. (2015) The metastable structure of hypereutectic Al–17·5Si alloy surface induced by high current pulsed electron beam. Materials Research Innovations 19:sup5, pages S5-320-S5-324.
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N. Tenekedjiev & J. E. Gruzleski. (1990) Hypereutectic Aluminium-Silicon Casting Alloys—A Review. Cast Metals 3:2, pages 96-105.
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Articles from other publishers (21)

George R. Lindemann, Paul Chao, Allen H. Hunter & Ashwin J. Shahani. (2022) Formation of three-phase eutectic grains on primary phases: Observations from correlative imaging. Journal of Alloys and Compounds 923, pages 166274.
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Qun Ren, Haijun Su, Jun Zhang, Guangrao Fan, Haifang Liu, Di Zhao, Yuan Liu, Min Guo, Lin Liu & Hengzhi Fu. (2019) Halo formation in directionally solidified Al2O3-Er3Al5O12 off-eutectic in situ composite ceramics. Materials Characterization 150, pages 31-37.
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Wenchao Yang, Hasse Fredriksson & Shouxun Ji. (2017) Halo formation of Zn-Al alloys under conventional solidification and intensive convection solidification. Journal of Alloys and Compounds 696, pages 460-469.
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Rodrigo V. Reyes, Thomas S. Bello, Rafael Kakitani, Thiago A. Costa, Amauri Garcia, Noé Cheung & José E. Spinelli. (2017) Tensile properties and related microstructural aspects of hypereutectic Al-Si alloys directionally solidified under different melt superheats and transient heat flow conditions. Materials Science and Engineering: A 685, pages 235-243.
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Song Luo & Xiaowei Wei. (2016) A method for improving the mechanical properties of a hypereutectic Al–Si alloy by introducing the α-Al phase. International Journal of Materials Research 107:5, pages 422-428.
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L. Hu, B. Gao, J. K. Lv, S. C. Sun, Y. Hao & G. F. Tu. (2015) Halo Evolution of Hypereutectic Al-17.5Si Alloy Treated with High-Current Pulsed Electron Beam. Journal of Nanomaterials 2015, pages 1-6.
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T.H. Ludwig, E. Schonhovd Dæhlen, P.L. Schaffer & L. Arnberg. (2014) The effect of Ca and P interaction on the Al–Si eutectic in a hypoeutectic Al–Si alloy. Journal of Alloys and Compounds 586, pages 180-190.
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Thomas Hartmut Ludwig, Paul Louis Schaffer & Lars Arnberg. (2013) Influence of Phosphorus on the Nucleation of Eutectic Silicon in Al-Si Alloys. Metallurgical and Materials Transactions A 44:13, pages 5796-5805.
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Young Soo Jang, Byoung Hee Choi & Chun Pyo Hong. (2013) Effects of Two Stages of Electro-Magnetic Stirring on Microstructural Evolution in Rheo-Diecasting of a Near Eutectic Al^|^ndash;Si Alloy. ISIJ International 53:3, pages 468-475.
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Y. Hao, B. Gao, G.F. Tu, S.W. Li, C. Dong & Z.G. Zhang. (2011) Improved wear resistance of Al–15Si alloy with a high current pulsed electron beam treatment. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 269:13, pages 1499-1505.
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S.M. Li, B.L. Jiang, B.L. Ma & H.Z. Fu. (2007) Halo formation in directional solidification of Ni–Ni3Nb hypereutectic alloy. Journal of Crystal Growth 299:1, pages 178-183.
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M.D. Nave, A.K. Dahle & D.H. StJohn. (2002) Halo formation in directional solidification. Acta Materialia 50:11, pages 2837-2849.
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Myung-Jin Suk & Klaus Leonartz. (2000) Halo growth during unidirectional solidification of camphor–naphthalene eutectic system. Journal of Crystal Growth 213:1-2, pages 141-149.
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A. Hawksworth, W.M. Rainforth & H. Jones. (1999) Solidification microstructure formation in the Al-rich Al–La–Ni system. Materials Science and Engineering: A 262:1-2, pages 159-165.
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S.T. Bluni, M.R. Notis & A.R. Marder. (1995) Nucleation characteristics and microstructure in off-eutectic Al-Zn alloys. Acta Metallurgica et Materialia 43:5, pages 1775-1782.
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Myung-Jin Suk, Gil-Heyun Choi & In-Hyung Moon. (1992) Formation of halo in Sb-InSb and Sn-Bi eutectic alloy systems. Journal of Crystal Growth 123:1-2, pages 5-16.
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F. Yilmaz, O.A. Atasoy & R. Elliott. (1992) Growth structures in aluminium-silicon alloys II. The influence of strontium. Journal of Crystal Growth 118:3-4, pages 377-384.
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H. Jones. (1991) Modelling of growth and microstructure selection in rapid solidification: a progress report. Materials Science and Engineering: A 133, pages 33-39.
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S. DasS. V. PrasadT. R. Ramachandran & P. K. Rohatgi. (1991) Microstructures of Cast Al–Si Alloys in the Presence of Dispersed Graphite Particles. Materials Transactions, JIM 32:2, pages 189-194.
Crossref
H. Jones. 1991. Rapidly Quenched Materials. Rapidly Quenched Materials 33 39 .
Fevzi Yilmaz. (1990) Structure and properties of directionally solidified AlSi hypereutectic alloys. Materials Science and Engineering: A 124:2, pages L1-L5.
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