Publications
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. The effect of nano-clay reinforcement on the rolling contact fatigue behaviour of polyamide. IMechE Part J: Journal of Engineering Tribology. 2013;227(1): 84-95.
. Rolling contact fatigue behavior of polyamide clay reinforced nanocomposite-Eect of load and speed. Wear. 2010;269(7-8):565-571.
. Computation of sliding friction and ratcheting of sintered and hardened steel under rolling contact fatigue’. ASME J of Tribolo. 2008.
. Gear tooth wear in sintered steel gears under dry running conditions. Wear. 2008;265:81-87.
. Influence of reinforcement on composite gear metrology’. Mechanism and Machine Theroy. 2008;43:1198-1209.
. Effect of nozzle traveling velocity on oil cavitation jet peening of aluminum AA 6063 -T6’. ASME J Engg Mat & Tech. 2007;129:609-613.
. Effect of organoclay addition on the two-body abrasive wear characteristics of polyamide nanocomposites’. J Mat Sci. 2007;42:8326-8333.
. Fatigue behavior of oil jet peened Al alloys AA6063 T6. JSME J Solid Mech & Mat Engg. 2007;1:875-885.
. Heat generation in Fe-C-Cu-MoS2 sintered spur gears under unlubricated conditions’. Proc Inst Mech Engrs. J Engg Tribology. 2007;221:645-652.
. An investigation on the fretting wear behavior of MoS2 bonded coating on AISI 1040. Proc Instn. Mech. Engrs. Pt J. 2007;221:41-47.
. Rolling / sliding contact fatigue life prediction of sintered and hardened steels. Wear. 2007;262:70-78.
. Sliding wear performance of polyamide 6 – clay nanocomposites in water. Comp Sci & Tech. 2007;67:399-405.
. Tribological behaviour of clay-thermoset polyester nanocomposites. Wear. 2006;261:835-840.
