Beilstein J. Nanotechnol.2024,15, 925–940, doi:10.3762/bjnano.15.76
. Moreover, it explores the influence of relativetoolsharpness and rake angle on the cutting process. The results show that an increase in the average grain size of the GNG samples leads to a decrease in the average resultant cutting force, as predicted by the Hall–Petch relationship. The deformation
: CoCrNi; gradient nanograined materials; Hall–Petch; molecular dynamics; relativetoolsharpness; removal mechanism; Introduction
Compared with traditional alloys, high-entropy alloys (HEAs) with multiple elements exhibit diverse and unprecedented mechanical properties, attracting widespread scientific
investigates the effects of GNG structures, relativetoolsharpness (RTS), and rake angle on the cutting behavior of a CoCrNi MEA using molecular dynamics simulations.
Methods
The cutting simulation model was established to explore the characteristics of plastic deformation and material removal of a GNG CoCrNi
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Figure 1:
(a) Radial distribution function diagram, (b) physical model of the CoCrNi MEA substrate in the cut...