Strengthening in hybrid alumina-titanium diboride aluminum matrix composites synthesized by ultrasonic assisted reactive mechanical mixing
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Le Zhou | Y. Sohn | P. Rohatgi | A. Moghadam | E. Omrani | H. Lopez
[1] P. Rohatgi,et al. Direct Synthesis of Nanostructured in Situ Hybrid Aluminum Matrix Nanocomposite , 2016 .
[2] P. Menezes,et al. Effect of In-situ Processing Parameters on the Mechanical and Tribological Properties of Self-Lubricating Hybrid Aluminum Nanocomposites , 2016, Tribology Letters.
[3] M. Kalin,et al. Sliding Evolution of the Mechanical Behaviour of Zinc Dialkyldithiophosphate Tribofilms on Diamond-Like Carbon Coatings , 2016, Tribology Letters.
[4] Bin Yang,et al. Microstructure evolution of TiB2 particle-reinforced 7075 Al alloy slurry in semisolid state with different holding time , 2016, Rare Metals.
[5] K. Shirvanimoghaddam,et al. Tensile and fracture behavior of nano/micro TiB2 particle reinforced casting A356 aluminum alloy composites , 2015 .
[6] P. Prabhu,et al. Al 6061-TiB 2 Metal Matrix Composite Synthesized with Different Reaction Holding Times by In-Situ Method , 2015 .
[7] E. P. Furlani,et al. Analysis of stem cell culture performance in a microcarrier bioreactor system , 2014 .
[8] Pradeep K. Rohatgi,et al. Functional Metal Matrix Composites: Self-lubricating, Self-healing, and Nanocomposites-An Outlook , 2014, JOM.
[9] Kyu C. Cho,et al. On the superposition of strengthening mechanisms in dispersion strengthened alloys and metal-matrix nanocomposites: Considerations of stress and energy , 2014, Metals and Materials International.
[10] M. Vedani,et al. Metal Matrix Composites Reinforced by Nano-Particles—A Review , 2014 .
[11] K. Uesugi,et al. Particle Coagulation in Molten Metal Based on Three-Dimensional Analysis of Cluster by X-Ray Micro-Computer Tomography (CT) , 2013 .
[12] Xiaochun Li,et al. Achieving uniform distribution and dispersion of a high percentage of nanoparticles in metal matrix nanocomposites by solidification processing , 2013 .
[13] P. Rohatgi,et al. Synthesis and Properties of Metal Matrix Nanocomposites (MMNCS), Syntactic Foams, Self Lubricating and Self-Healing Metals , 2013 .
[14] Xiaochun Li,et al. Ultrasonic-assisted synthesis of surface-clean TiB2 nanoparticles and their improved dispersion and capture in Al-matrix nanocomposites. , 2013, ACS applied materials & interfaces.
[15] Kyu C. Cho,et al. Prediction models for the yield strength of particle-reinforced unimodal pure magnesium (Mg) metal matrix nanocomposites (MMNCs) , 2013, Journal of Materials Science.
[16] Hongseok Choi,et al. Theoretical study and pathways for nanoparticle capture during solidification of metal melt , 2012, Journal of physics. Condensed matter : an Institute of Physics journal.
[17] K. Rane,et al. Effect of KBF 4 and K 2 TiF 6 on precipitation kinetics of TiB 2 in aluminium matrix composite , 2011 .
[18] M. Surappa,et al. Nanoceramic–Metal Matrix Composites by In-Situ Pyrolysis of Organic Precursors in a Liquid Melt , 2008 .
[19] B. Niroumand,et al. Synthesis of In-situ Aluminum Matrix Composite Using a New Activated Powder Injection Method , 2008 .
[20] H. Abdizadeh,et al. CHEMICAL SYNTHESIS OF NANO-TITANIUM DIBORIDE POWDERS BY BOROTHERMIC REDUCTION , 2008 .
[21] M. Guo,et al. Synthesis of nano TiB2 particles in copper matrix by in situ reaction of double-beam melts , 2008 .
[22] Mark J. Jackson,et al. Nanoparticulate reinforced metal matrix nanocomposites – a review , 2008 .
[23] H. S. Udaykumar,et al. Multiscale modeling of particle–solidification front dynamics. Part II: Pushing–engulfment transition , 2007 .
[24] A. Jarfors,et al. On the precipitation of TiB2 in aluminum melts from the reaction with KBF4 and K2TiF6 , 2005 .
[25] Peter D. Lee,et al. Investigation of the clustering behaviour of titanium diboride particles in aluminium , 2005 .
[26] Alan Dinsdale,et al. The viscosity of aluminium and its alloys--A review of data and models , 2004 .
[27] Z. Chen,et al. Microstructure and properties of In situ Al/TiB2 composite fabricated by in-melt reaction method , 2000 .
[28] Hong Wang,et al. Synthesis of titanium diboride TiB2 and Ti-Al-B metal matrix composites , 2000 .
[29] L. Lu,et al. Application of thermodynamic calculation in the in-situ process of Al/TiB2 , 1999 .
[30] M. Gupta,et al. In situ preparation of TiB2 reinforced Al based composites , 1998 .
[31] S. Tjong,et al. In Situ ceramic particle-reinforced aluminum matrix composites fabricated by reaction pressing in the TiO2 (Ti)-Al-B (B2O3) systems , 1997 .
[32] J. Bi,et al. IN-SITU FORMED AL2O3 AND TIB2 PARTICULATES MIXTURE-REINFORCED ALUMINUM COMPOSITE , 1994 .
[33] P. Davies,et al. Properties of reactively cast aluminium–TiB2 alloys , 1993 .
[34] R. Asthana,et al. The engulfment of foreign particles by a freezing interface , 1993, Journal of Materials Science.
[35] K. S. Prasad,et al. Microstructure-property correlation in (XD) composites , 1990 .
[36] M. Grabski,et al. The Hall–Petch relation in aluminium and its dependence on the grain boundary structure , 1986 .