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Articles

Centrifugal casting of aluminium containing in situ formed TiB2

Pages 1215-1219 | Published online: 19 Jul 2013

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Read on this site (2)

G. S. Vinod Kumar, B. S. Murty & M. Chakraborty. (2010) Settling behaviour of TiAl3, TiB2, TiC and AlB2 particles in liquid Al during grain refinement. International Journal of Cast Metals Research 23:4, pages 193-204.
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A. G. Rao, M. Mohape, V. A. Katkar, D. S. Gowtam, V. P. Deshmukh & A. K. Shah. (2010) Fabrication and Characterization of Aluminum (6061)-Boron-Carbide Functionally Gradient Material. Materials and Manufacturing Processes 25:7, pages 572-576.
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Articles from other publishers (18)

R. P. Barot, R. P. Desai & M. P. Sutaria. (2023) Effect of Processing Temperature on the Formation, Morphology, and Dispersion of In Situ TiB2 Particles in AlSi5Cu3/TiB2 Composites Cast in Sand Mold. International Journal of Metalcasting.
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V.K. Parikh, Vivek Patel, D.P. Pandya & Joel Andersson. (2023) Current status on manufacturing routes to produce metal matrix composites: State-of-the-art. Heliyon 9:2, pages e13558.
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Ramaswamy Palanivel, Isaac Dinaharan & Rudolph F. Laubscher. 2021. Encyclopedia of Materials: Composites. Encyclopedia of Materials: Composites 559 587 .
Ömer Savaş. (2020) Production and properties of functionally graded hybrid composites containing Al 3 Ti and TiB 2 . International Journal of Materials Research.
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Ömer SAVAŞ & Ömer Faruk DEMİROK. (2020) Fonksiyonel Derecelendirilmiş TiB2/Al Kompozitlerin Üretimi Üzerine Bir Çalışma. Düzce Üniversitesi Bilim ve Teknoloji Dergisi 8:3, pages 1829-1839.
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Ömer Savaş. (2020) Application of Taguchi’s method to evaluate abrasive wear behavior of functionally graded aluminum based composite. Materials Today Communications 23, pages 100920.
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Ömer Savaş. (2020) Fabrication and characterization of TiB 2 -reinforced functionally graded aluminum matrix material . Industrial Lubrication and Tribology 72:10, pages 1147-1152.
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Ömer Savaş. (2020) Investigation of Production and Abrasive Wear Behavior of Functionally Graded TiB2/Al and TiB2/Al–4Cu Composites. Transactions of the Indian Institute of Metals 73:3, pages 543-553.
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Shubhashree Mohapatra, Hrushikesh Sarangi & Upendra Kumar Mohanty. (2020) Effect of processing factors on the characteristics of centrifugal casting. Manufacturing Review 7, pages 26.
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Ömer SAVAŞ & Ömer Demirok. (2019) Fonksiyonel Derecelendirilmiş TiB2/Al Kompozitlerin Abrasif Aşınma Davranışları Üzerine Deneysel Bir Çalışma. European Journal of Science and Technology, pages 972-981.
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Ömer SAVAŞ. (2019) The production and properties of Al 3 Ti reinforced functionally graded aluminum matrix composites produced by the centrifugal casting method . Materials Research Express 6:12, pages 126532.
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Narendra Kumar, Gaurav Gautam, Rakesh Kumar Gautam, Anita Mohan & Sunil Mohan. (2015) Synthesis and Characterization of TiB2 Reinforced Aluminium Matrix Composites: A Review. Journal of The Institution of Engineers (India): Series D 97:2, pages 233-253.
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A.G. Arsha, E. Jayakumar, T.P.D. Rajan, V. Antony & B.C. Pai. (2015) Design and fabrication of functionally graded in-situ aluminium composites for automotive pistons. Materials & Design 88, pages 1201-1209.
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S. L. Pramod, Srinivasa R. Bakshi & B. S. Murty. (2015) Aluminum-Based Cast In Situ Composites: A Review. Journal of Materials Engineering and Performance 24:6, pages 2185-2207.
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B. Balout & J. Litwin. (2011) Mathematical Modeling of Particle Segregation During Centrifugal Casting of Metal Matrix Composites. Journal of Materials Engineering and Performance 21:4, pages 450-462.
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T.P.D. Rajan, R.M. Pillai & B.C. Pai. (2010) Characterization of centrifugal cast functionally graded aluminum-silicon carbide metal matrix composites. Materials Characterization 61:10, pages 923-928.
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S. Kumar, V. Subramaniya Sarma & B.S. Murty. (2009) Functionally Graded Al Alloy Matrix In-Situ Composites. Metallurgical and Materials Transactions A 41:1, pages 242-254.
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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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