![]() The experimental results showed that nanofluid's thermophysical properties (i,e viscosity, wettability, and thermal properties) were better than the base oil. The wettability studies were carried out by measuring the angle of contact between the droplet of fluid and the tungsten carbide (WC) substrate interface. ![]() The viscosity studies were carried out at a temperature ranging from 303 K to 393 K, whereas thermal properties were investigated at room temperature. Jatropha oil-based Al 2O 3 and ZrO nanoparticles dispersed nanofluids with varying concentrations were developed and characterized for their rheological, thermal, and wettability properties. This paper attempts to develop and characterize a novel sustainable and eco-friendly cutting fluid for machining applications. However, conventional cutting fluids put a risk to the environment and operator health. ![]() Cutting fluids play an important role in machining processes to provide lubrication and cooling action. ![]()
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