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Fig. 1 MD simulation model of nanometric cutting.
Figure 1 shows the three-dimensional MD simulation model of nanometric cutting.
Figure 1a c show three simulation models for our large-scale MD simulations of nanometric cutting.
A schematic diagram of the nanometric cutting simulation model is shown in Figure 1.
All those previous studies have provided much help in understanding nanometric cutting.
Their motion obeys the classical Newton's second law, and they are the object for investigating the mechanism of nanometric cutting.
Therefore, there is a need for large-scale MD simulations of three-dimensional (3D) nanometric cutting processes.
Fig. 1 Nanometric cutting model.
Nanometric cutting is performed on the Newton layer.
Consequently, the well-established conventional macroscopic machining mechanisms may be not be suitable for the interpretation of the nanometric cutting, and thus, a fundamental understanding of the nanometric cutting mechanisms is essentially required to facilitate the nanometric cutting technique.
The material flow of the monocrystalline germanium during nanometric cutting is the same as that of copper and silicon [10, 17]. Figure 4 Material flow in nanometric cutting.
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