Area of research
Mechanics of Materials · Mechanical Engineering
Research interest
Research interests include Materials science, Tribology, Composite material, Alloy, Microstructure, and Lubricant.
Study on microstructure, mechanical and tribological properties of a novel high-entropy alloy based self-lubricating composite Al0.5CrFeNiV0.5-hBN
Wear behaviour of high entropy alloys CrFeNiAl0.3Ti0.3 and CrFeNiAl0.3Ti0.3–Ag roll bonded with steel
Ultrathin copper foils fabricated by accumulative pack rolling and surface roughening investigation
Spontaneous Reactions by Atomic Hydrogen – An Extraordinary Reactant for Atomic Layer Deposition of Platinum
Dissociative adsorption of in-situ grown NiBi with oxygen enabling lower friction and wear of nickel-based composite coating at elevated temperature
Impact of vanadium (V) content on in-situ oxidation, high temperature mechanical strength and tribological properties of Al0.5CrFeNiVx high entropy alloys
Microstructure, mechanical properties and high-temperature sliding wear response of a new Al0.5CrFeNiV0.5 high-entropy alloy
In-situ engineering catalytically active surfaces for tribocatalysis with layered double hydroxide nanoparticles
Direct Visualization of Chemical Transport in Solid-State Chemical Reactions by Time-of-Flight Secondary Ion Mass Spectrometry
Fabrication of Ultrathin Al Foils by Accumulative Pack Rolling: Influence of Pack Materials
Comprehensive Investigation of Various Organophosphate Intercalated CoAl-LDHs As Additives in Polyalphaolefin
Minimizing gold amount by alloying silver in hard gold
A (CrFeNi)83(AlTi)17 high-entropy alloy matrix solid-lubricating composite with exceptional tribological properties over a wide temperature range
High temperature tribological performance of a cost-effective eutectic high entropy alloy Al0.8CrFeNi2.2: Comparison with AlCoCrFeNi2.1
Excellent tribological performance at elevated temperatures and associated mechanisms of novel AlCoCrFeNi-MoS2 solid self-lubricating composite
Microstructure, mechanical and tribological properties of Al0.3CrFeNiTi0.3-CaF2/BaF2 self-lubricating composite fabricated by spark plasma sintering
Tribocatalysis Induced Carbon-Based Tribofilms—An Emerging Tribological Approach for Sustainable Lubrications
Tribo-induced catalytically active oxide surfaces enabling the formation of the durable and high-performance carbon-based tribofilms
Tribochemical insights into the carbon film formation induced by metallic species derived from layered double hydroxide nanoadditives
Advances in Friction, Lubrication, Wear and Oxidation in Metals Manufacturing
Insights of nanostructure and nanomechanical properties of the tribofilm derived from CoAl-hexametaphosphate layered double hydroxide on sliding steel surfaces
Tribological performance of a cost-effective CrFeNiAl0.3Ti0.3 high entropy alloy based self-lubricating composite in a wide temperature range
Study of wear and friction properties of a Co-free CrFeNiAl0.4Ti0.2 high entropy alloy from 600 to 950 °C
Fabrication and characterization of a low-cost Co-free Al0.8CrFeNi2.2 eutectic high entropy alloy based solid self-lubricating composite: Microstructure, mechanical and wear properties
Formation mechanism and evolution of white etching layers on different rail grades
Influences of iron and iron oxides on ultra-thin carbon-based tribofilm lubrication
Slip system activity and lattice rotation in polycrystalline copper during uniaxial tension
Potential application of graphene nanoplatelets as a high temperature lubricant for hot rolling
Influence of Structural Disorders on the Tribological Behavior of Phosphate-Intercalated Layered Double Hydroxide Additives in Polyalphaolefin
Thermoresponsive Hybrid Colloidal Capsules as an Inorganic Additive for Fire-Resistant Silicone-Based Coatings