Area of research
Mechanical Engineering · Biomedical Engineering
Research interest
Research focused on Tribology and Lubrication, with related work in Tribometer, Lubricant, Graphene. Notable publications include 'Friction and wear characteristics of TiO 2 nano-additive water-based lubricant on ferritic stainless steel', 'Synergistic tribological performance of a water based lubricant using graphene oxide and alumina hybrid nanoparticles as additives', and 'Tribological Performance and Lubrication Mechanism of Alumina Nanoparticle Water-Based Suspensions in Ball-on-Three-Plate Testing'.
The influence of water-based nanolubrication on mill load and friction during hot rolling of 304 stainless steel
Water-based nanosuspensions: Formulation, tribological property, lubrication mechanism, and applications
Roughness-dependent tribological characteristics of water-based GO suspensions with ZrO2 and TiO2 nanoparticles as additives
Novel water-based nanolubricant with superior tribological performance in hot steel rolling
Eco-Friendly Water-Based Nanolubricants for Industrial-Scale Hot Steel Rolling
Synergistic tribological performance of a water based lubricant using graphene oxide and alumina hybrid nanoparticles as additives
Effect of water-based nanolubricant containing nano-TiO2 on friction and wear behaviour of chrome steel at ambient and elevated temperatures
Machining characteristics and mechanism of GO/SiO2 nanoslurries in fixed abrasive lapping
Oxidation Behaviour of Steel During hot Rolling by Using TiO2-Containing Water-Based Nanolubricant
Tribological Characteristics of Aqueous Graphene Oxide, Graphitic Carbon Nitride, and Their Mixed Suspensions
Performance Evaluation and Lubrication Mechanism of Water-Based Nanolubricants Containing Nano-TiO2 in Hot Steel Rolling
Friction and wear characteristics of TiO 2 nano-additive water-based lubricant on ferritic stainless steel
Tribological Performance and Lubrication Mechanism of Alumina Nanoparticle Water-Based Suspensions in Ball-on-Three-Plate Testing
The pH-dependent structural and tribological behaviour of aqueous graphene oxide suspensions