Seedlabs
Source research

International Journal of Engineering Research and Applications

WILCKEN, JORGE THIAGO DE SOUSA, MACEDO, MARCELO DE MATOS, SCHON, CLÁUDIO GERALDO, Ronaldo Câmara Cozza · 2026 · 1220 citationsRead the paper

The purpose of this work is to study the influence of the micro-abrasive wear modes on the behaviors of the
\nvolume of wear (V) and on the coefficient of friction (µ) of thin films. Experiments were conducted with thin
\nfilms of TiN, TiAlN, TiN/TiAlN, TiHfC, ZrN and TiZrN, using a ball of AISI 52100 steel and abrasive slurries
\nprepared with black silicon carbide (SiC) particles and glycerine. The results show that the abrasive slurry
\nconcentration affected the abrasive wear modes (“grooving abrasion” or “rolling abrasion”) and, consequently,
\nthe magnitude of the volume of wear and of the coefficient of friction, as described: i) a low value of abrasive
\nslurry concentration generated “grooving abrasion”, which was relationed to a relatively low volume of wear
\nand high coefficient of friction; ii) a high value of abrasive slurry concentration generated “rolling abrasion”,
\nwhich was relationed to a relatively high volume of wear and low coefficient of friction.

1 idea Seedlabs derived from this research

A hardware-software controller for industrial polishing machines that dynamically adjusts abrasive slurry concentration to toggle between grooving and rolling wear modes. This allows for precise control over the coefficient of friction and surface texture of hard thin films.

AI score 79/100