Publications
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. Miedema model based methodology to predict amorphous-forming-composition range in binary and ternary systems. Journal of Alloys and Compounds. 2012.
. Nanocomposites of Aluminum Alloys by Rapid Solidification Processing. Transactions of the Indian Institute of Metals. 2012;65:647–651.
. Formation of metastable phases and nanocomposite structures in rapidly solidified Al–Fe alloys. Materials Science and Engineering: A. 2011;528:5967–5973.
. Al–(L1 2) Al 3 Ti nanocomposites prepared by mechanical alloying: Synthesis and mechanical properties. Journal of Alloys and Compounds. 2010;492:128–133.
. Microstructure-hardness relationship of Al–(L1 2) Al 3 Ti nanocomposites prepared by rapid solidification processing. Intermetallics. 2010;18:487–492.
. Nanocomposites and an extremely hard nanocrystalline intermetallic of Al–Fe alloys prepared by mechanical alloying. Materials Science and Engineering: A. 2010;527:2370–2378.
. Development of a thermodynamic criterion to predict the alloy compositions for amorphous and nanocrystalline phase formation during mechanical alloying. Defect and Diffusion Forum. 2008;279:147–151.
. Structure of nanocomposites of Al-Fe alloys prepared by mechanical alloying and rapid solidification processing. Bulletin of Materials Science. 2008;31:449–454.
. High strength nanocrystalline L1 2-Al 3(Ti, Zr) intermetallic synthesized by mechanical alloying. Intermetallics. 2007;15:26–33.
. Milling criteria for the synthesis of nanocrystalline NiAl by mechanical alloying. Journal of alloys and compounds. 2007;429:204–210.
. Nanoindentation studies on amorphous, nanoquasicrystalline and nanocrystalline Zr80Pt20 and Zr75Pd25 alloys. Journal of Nanoscience and Nanotechnology. 2007;7:658–662.
. On sinterability of nanostructured W produced by high-energy ball milling. Journal of materials research. 2007;22:1200–1206.
. Aluminium-based nanocomposites by non-equilibrium processing routes. Transactions of the Indian Institute of Metals. 2006;59:193–198.
. AN INVESTIGATION INTO EXTENSION OF SOLID SOLUBILITY OF Fe AND Ni, IN W BY HIGH-ENERGY MILLING. TRANSACTIONS-POWDER METALLURGY ASSOCIATION OF INDIA HYDERABAD. 2006;32:40.
. On amorphization and nanocomposite formation in Al-Ni-Ti system by mechanical alloying. Pramana. 2005;65:831–840.
. Estimation of entrapped powder temperature during mechanical alloying. Scripta materialia. 2004;50:1199–1202.
. Sintering behaviour of W-based nanocomposites prepared by mechanical alloying. Transactions of the Indian Institute of Metals. 2003;56.
. Structure and thermal stability of nanocrystalline materials. Sadhana (Academy Proceedings in Engineering Sciences). 2003;28:23–45.
. Phase formation and thermal stability of mechanically alloyed Ni-Si system. ICAMMP-2002: International Conference on Advances in Materials Processing. 2002:396–400.
. Stability of nanocrystalline disordered NiAl synthesized by mechanical alloying. Philosophical Magazine Letters. 2002;82:469–475.
. Mechanism and Kinetics of Alloying and Nanostructure Formation by Mechanical Methods. PROCEEDINGS-INDIAN NATIONAL SCIENCE ACADEMY PART A. 2001;67:1–30.
. Thermal stability of nanocrystalline fcc and hcp Ni (Si) synthesized by mechanical alloying of Ni90Si10. Philosophical magazine letters. 2001;81:77–84.
. Face-centered-cubic to hexagonal-close-packed transformation in nanocrystalline Ni (Si) by mechanical alloying. JOURNAL OF MATERIALS RESEARCH-PITTSBURGH-. 2000;15:1429–1432.
. Phase fields of nickel silicides obtained by mechanical alloying in the nanocrystalline state. Journal of Applied Physics. 2000;87:8393–8400.
. Thermal stability of nanocrystalline Ni silicides synthesized by mechanical alloying. Materials Science and Engineering: A. 2000;284:219–225.
. Alloying behaviour in nanocrystalline materials during mechanical alloying. Bulletin of Materials Science. 1999;22:321–327.
. Nanocrystalline phases in Cu Ni, Cu Zn and Ni Al systems by mechanical alloying. Nanostructured Materials. 1997;9:149–152.
. Effect of non-stoichiometry on the ordering behaviour of nanocrystalline NiAl produced by mechanical alloying. Journal of materials science letters. 1996;15:2171–2172.
. Formation of nanocrystalline phases in the Cu-Zn system during mechanical alloying. Journal of materials science. 1996;31:3207–3211.
. Influence of Fe and Cr on the disordering behavior of mechanically alloyed NiAl. Nanostructured materials. 1996;7:691–697.
. Mechanism of mechanical alloying in NiAl and CuZn systems. Materials Science and Engineering: A. 1996;214:146–152.
. Synthesis of nanocrystalline alloys and intermetallics by mechanical alloying. Bulletin of Materials Science. 1996;19:939–956.
. Synthesis of nanocrystalline NiAl over a wide composition range by mechanical alloying. Bulletin of materials Science. 1996;19:565–571.
