Title of article :
Experimental and Numerical Investigation of Friction Coefficient and Wear Volume in the Mixed-Film Lubrication Regime with ZnO Nano-Particle
Author/Authors :
Gholami, R Department of Mechanical Engineering - Isfahan University of Technology - Isfahan , Ghaemi Kashani, H Department of Mechanical Engineering - Isfahan University of Technology - Isfahan , Silani, M Department of Mechanical Engineering - Isfahan University of Technology - Isfahan , Akbarzadeh, S Department of Mechanical Engineering - Isfahan University of Technology - Isfahan
Abstract :
One of the most important challenges industry has always been facing is the wear phenomenon. Wear is the
cause of huge deteriorations in parts and results in a drop in performance and lifetime of different machines.
Therefore, finding solutions to reduce friction coefficient and wear is of special importance. The present
research aims at numerical and experimental investigation of friction coefficient and wear in the presence of
nano-lubricants. In the numerical section, to tackle different scales of contact components, two sub-models are
developed. In the first one, contact of asperities is modeled and the properties of contact surfaces are taken into
account. Second sub-model simulates nano-particles in the contact region. Furthermore, a series of experiments
are conducted under different loads, speeds, and different values for Zinc Oxide nano-particle weight percent
using a pin-on-disk test rig. Results show that predicted friction coefficient and wear volume in theory are
reasonably in agreement with experimental results. It was found that adding nanoparticle to the lubricant can
be beneficial in terms of friction reduction.
Keywords :
Zinc oxide nano-particle , Pin-on-disk test , Nano-lubricant , Wear , Friction coefficient
Journal title :
Astroparticle Physics