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Results 1-10 of 94 (Search time: 0.002 seconds).
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Issue DateTitleAuthor(s)
2010Grain growth behavior of aluminum oxide reinforced with carbon nanotube during plasma spraying and PostSpray consolidationBalani K.; Bakshi S.R.; Lahiri D.; Agarwal A.
2016Emergence of fluorescence in boron nitride nanoflakes and its application in bioimagingKumar V.; Nikhil K.; Roy P.; Lahiri D.; Lahiri I.
2011Nanohardness and Young's modulus of nanopolycrystalline diamondCouvy H.; Lahiri D.; Chen J.; Agarwal A.; Sen G.
2015A novel energy-based method to evaluate indentation modulus and hardness of cementitious materials from nanoindentation load–displacement dataJha K.K.; Suksawang N.; Lahiri D.; Agarwal A.
2013Nanodynamic mechanical behavior of graphene nanoplatelet-reinforced tantalum carbideNieto A.; Lahiri D.; Agarwal A.
2012Graphene nanoplatelet-induced strengthening of ultrahigh molecular weight polyethylene and biocompatibility in vitroLahiri D.; Dua R.; Zhang C.; De Socarraz-Novoa I.; Bhat A.; Ramaswamy S.; Agarwal A.
2013Graphene-induced strengthening in spark plasma sintered tantalum carbide-nanotube compositeLahiri D.; Khaleghi E.; Bakshi S.R.; Li W.; Olevsky E.A.; Agarwal A.
2016Strengthening of Mg based alloy through grain refinement for orthopaedic applicationNayak S.; Bhushan B.; Jayaganthan R.; Gopinath P.; Agarwal R.D.; Lahiri D.
2013Ultrahigh-pressure consolidation and deformation of tantalum carbide at ambient and high temperaturesLahiri D.; Singh V.; Rodrigues G.R.; Costa T.M.H.; Gallas M.R.; Bakshi S.R.; Seal S.; Agarwal A.
2010Microstructure, mechanical properties, and in vitro biocompatibility of spark plasma sintered hydroxyapatite-aluminum oxide-carbon nanotube compositeKalmodia S.; Goenka S.; Laha T.; Lahiri D.; Basu B.; Balani K.