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Articles

Properties of reactively cast aluminium–TiB2 alloys

Pages 833-840 | Published online: 18 Jul 2013

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N. Radhika, R. Jojith & S. R. Pravinsankar. (2021) Influence of spheroidised eutectic silicon on tribo-mechanical behaviour of centrifugally cast functionally graded aluminium composite. Canadian Metallurgical Quarterly 60:4, pages 265-280.
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X. Wang & Q. Han. (2015) Relationships of diboride phases in Al–Ti(Zr)–B alloys. Materials Science and Technology 31:7, pages 874-879.
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J. Xue, Y. F. Han, J. B. Lei, J. Wang & B. D. Sun. (2014) CeO2 induced dispersive distribution of TiB2 particles in in situ TiB2/Al composite. Materials Science and Technology 30:8, pages 871-875.
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J Xue, Y F Han, J Wang & B D Sun. (2013) Study on squeeze casting of an in situ 5 vol.-% TiB2/2014 Al composite. Materials Science and Technology 29:11, pages 1373-1382.
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M. A. Herbert, G. Das, R. Maiti, M. Chakraborty & R. Mitra. (2010) Tensile properties of cast and mushy state rolled Al–4·5Cu alloy and in situ Al4·5Cu–5TiB2 composite. International Journal of Cast Metals Research 23:4, pages 216-224.
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M. Fazel Najafabadi, M. A. Golozar, A. Saidi & H. Edris. (2003) Wear behaviour of aluminium matrix TiB2 composite prepared by in situ processing. Materials Science and Technology 19:11, pages 1531-1532.
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J. Goni, P. Egizabal, J. Coleto, I. Mitxelena, I. Leunda & J. R. Guridi. (2003) High performance automotive and railway components made from novel competitive aluminium composites. Materials Science and Technology 19:7, pages 931-934.
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R. Taghiabadi, M. Mahmoudi, M. Emamy Ghomy & J. Campbell. (2003) Effect of casting techniques on tensile properties of cast aluminium alloy (Al–Si–Mg) and TiB2 containing metal matrix composite. Materials Science and Technology 19:4, pages 497-502.
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K.L. Tee, L. Lu & M.O. Lai. (2001) In situ stir cast Al–TiB2 composite: processing and mechanical properties. Materials Science and Technology 17:2, pages 201-206.
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J. Goni, I. Mitxelena & J. Coleto. (2000) Development of low cost metal matrix composites for commercial applications. Materials Science and Technology 16:7-8, pages 743-746.
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L. Lu, M.O. Lai & F.L. Chen. (1997) In situ preparation of TiB2 reinforced Al base composite. Advanced Composite Materials 6:4, pages 299-308.
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J. V. Wood, K. Dinsdale, P. Davies & J. L. F. Kellie. (1995) Production and properties of steel–TiC composites for Wear applications. Materials Science and Technology 11:12, pages 1315-1320.
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J. V. Wood, D. G. McCartney, K. Dinsdale, J. L. F. Kellie & P. Daviest. (1995) Casting and mechanical properties of a reactively cast Al-TiB2 alloy. Cast Metals 8:1, pages 57-64.
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Articles from other publishers (49)

Narendra Kumar, Rakesh Kumar Gautam & Sunil Mohan. (2015) In-situ development of ZrB2 particles and their effect on microstructure and mechanical properties of AA5052 metal-matrix composites. Materials & Design 80, pages 129-136.
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S. H. Nandam, B. S. Murty & S. Sankaran. (2015) Influence of TiB2 Addition on the Precipitation Kinetics in Al-7Si-0.3Mg In Situ TiB2 Composites. Metallurgical and Materials Transactions A 46:7, pages 2844-2849.
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Devinder Yadav & Ranjit Bauri. (2015) Friction Stir Processing of Al-TiB2 In Situ Composite: Effect on Particle Distribution, Microstructure and Properties. Journal of Materials Engineering and Performance 24:3, pages 1116-1124.
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Fei Chen, Feng Mao, Zongning Chen, Jingyu Han, Guangyuan Yan, Tongmin Wang & Zhiqiang Cao. (2015) Application of synchrotron radiation X-ray computed tomography to investigate the agglomerating behavior of TiB2 particles in aluminum. Journal of Alloys and Compounds 622, pages 831-836.
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Zongning Chen, Tongmin Wang, Yuanping Zheng, Yufei Zhao, Huijun Kang & Lei Gao. (2014) Development of TiB2 reinforced aluminum foundry alloy based in situ composites – Part I: An improved halide salt route to fabricate Al–5 wt%TiB2 master composite. Materials Science and Engineering: A 605, pages 301-309.
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Zhiwei Liu, Qingyou Han & Jianguo Li. (2011) Ultrasound assisted in situ technique for the synthesis of particulate reinforced aluminum matrix composites. Composites Part B: Engineering 42:7, pages 2080-2084.
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C.S. Ramesh, R. Keshavamurthy, S. Pramod & Praveennath G. Koppad. (2011) Abrasive wear behavior of Ni–P coated Si3N4 reinforced Al6061 composites. Journal of Materials Processing Technology 211:8, pages 1423-1431.
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I.G. Siddhalingeshwar, D. Deepthi, M. Chakraborty & R. Mitra. (2011) Sliding wear behavior of in situ Al–4.5Cu–5TiB2 composite processed by single and multiple roll passes in mushy state. Wear 271:5-6, pages 748-759.
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Jing Xue, Jun Wang, Yanfeng Han, Pan Li & Baode Sun. (2011) Effects of CeO2 additive on the microstructure and mechanical properties of in situ TiB2/Al composite. Journal of Alloys and Compounds 509:5, pages 1573-1578.
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Sree Harsha Nandam, S. Sankaran & B. S. Murty. (2011) Precipitation kinetics in Al-Si-Mg/TiB2 in-situ composites. Transactions of the Indian Institute of Metals 64:1-2, pages 123-126.
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Yu-tao ZHAO, Song-li ZHANG & Gang CHEN. (2010) Aluminum matrix composites reinforced by in situ Al2O3 and Al3Zr particles fabricated via magnetochemistry reaction. Transactions of Nonferrous Metals Society of China 20:11, pages 2129-2133.
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G. Vourlias, N. Pistofidis, E. Pavlidou & G. Stergioudis. (2009) Reinforcement of Al–Fe–Ni alloys with the in situ formation of composite materials. Journal of Alloys and Compounds 483:1-2, pages 178-181.
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Songli Zhang, Yutao Zhao, Gang Chen & Xiaonong Cheng. (2009) Interface structures of the (Al2O3+Al3Zr)/A356 nanocomposites fabricated by magnetochemistry in situ reaction. Journal of Alloys and Compounds 478:1-2, pages 210-214.
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A. Mandal, B.S. Murty & M. Chakraborty. (2009) Wear behaviour of near eutectic Al–Si alloy reinforced with in-situ TiB2 particles. Materials Science and Engineering: A 506:1-2, pages 27-33.
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A. Mandal, B.S. Murty & M. Chakraborty. (2009) Sliding wear behaviour of T6 treated A356–TiB2 in-situ composites. Wear 266:7-8, pages 865-872.
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Mervin A. Herbert, R. Maiti, R. Mitra & M. Chakraborty. (2008) Wear behaviour of cast and mushy state rolled Al–4.5Cu alloy and in-situ Al4.5Cu–5TiB2 composite. Wear 265:11-12, pages 1606-1618.
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A. Mandal, M. Chakraborty & B.S. Murty. (2008) Ageing behaviour of A356 alloy reinforced with in-situ formed TiB2 particles. Materials Science and Engineering: A 489:1-2, pages 220-226.
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S. Kumar, M. Chakraborty, V. Subramanya Sarma & B.S. Murty. (2008) Tensile and wear behaviour of in situ Al–7Si/TiB2 particulate composites. Wear 265:1-2, pages 134-142.
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Song-Li Zhang, Yu-Tao Zhao, Gang Chen, Xiao-Nong Cheng & Xiao-Yang Huo. (2008) Fabrication and dry sliding wear behavior of in situ Al–K2ZrF6–KBF4 composites reinforced by Al3Zr and ZrB2 particles. Journal of Alloys and Compounds 450:1-2, pages 185-192.
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Yutao Zhao, Songli Zhang, Gang Chen & Xiaonong Cheng. (2007) Effects of molten temperature on the morphologies of in situ Al3Zr and ZrB2 particles and wear properties of (Al3Zr+ZrB2)/Al composites. Materials Science and Engineering: A 457:1-2, pages 156-161.
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Songli Zhang, Yutao Zhao, Gang Chen & Xiaonong Cheng. (2007) Microstructures and dry sliding wear properties of in situ (Al3Zr+ZrB2)/Al composites. Journal of Materials Processing Technology 184:1-3, pages 201-208.
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Song-Li Zhang, Yu-Tao Zhao, Gang Chen, Xiao-Nong Cheng & Qi-Xun Dai. (2007) Microstructures and mechanical properties of aluminum matrix composites fabricated from Al–xwt.% Zr(CO3)2 (x=5, 10, 15, 20, 25) systems. Journal of Alloys and Compounds 429:1-2, pages 198-203.
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A. Mandal, M. Chakraborty & B.S. Murty. (2007) Effect of TiB2 particles on sliding wear behaviour of Al–4Cu alloy. Wear 262:1-2, pages 160-166.
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J. Dutta Majumdar, B. Ramesh Chandra, A.K. Nath & I. Manna. (2006) In situ dispersion of titanium boride on aluminium by laser composite surfacing for improved wear resistance. Surface and Coatings Technology 201:3-4, pages 1236-1242.
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M. Emamy, M. Mahta & J. Rasizadeh. (2006) Formation of TiB2 particles during dissolution of TiAl3 in Al–TiB2 metal matrix composite using an in situ technique. Composites Science and Technology 66:7-8, pages 1063-1066.
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Yijie Zhang, Naiheng Ma, Haowei Wang, Yongkang Le & Songchun Li. (2005) Effect of Ti and Mg on the damping behavior of in situ aluminum composites. Materials Letters 59:28, pages 3775-3778.
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Yijie Zhang, Naiheng Ma, Haowei Wang, Yongkang Le & Songchun Li. (2005) Effect of Ti on the damping behavior of aluminum composite reinforced with in situ TiB2 particulate. Scripta Materialia 53:10, pages 1171-1174.
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Xiaoming Wang. (2005) The formation of AlB2 in an Al–B master alloy. Journal of Alloys and Compounds 403:1-2, pages 283-287.
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S.C. Tjong, G.S. Wang & Y-.W. Mai. (2005) High cycle fatigue response of in-situ Al-based composites containing TiB2 and Al2O3 submicron particles. Composites Science and Technology 65:10, pages 1537-1546.
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H.Y. Wang, Q.C. Jiang, Y.G. Zhao & F. Zhao. (2004) In situ synthesis of TiB2/Mg composite by self-propagating high-temperature synthesis reaction of the Al–Ti–B system in molten magnesium. Journal of Alloys and Compounds 379:1-2, pages L4-L7.
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