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The microscale material removal mechanism was discussed.
Kerse, C. et al. Ablation-cooled material removal with ultrafast bursts of pulses.
Four groups of material removal experiments were conducted to validate the proposed material removal model and investigate its material removal characteristics.
Material removal rate (MRR) and surface roughness are investigated.
Mechanisms of material removal on the microscale are studied.
The usual requirement is for efficient material removal.
An abrasive is occasionally added to the water to improve the rate of material removal, especially in finishing work.
In this study, experiments were done to investigate the effect of input power on the material removal rate (MRR) and to explore the material removal mechanism.
Whereas material removal rate (MRR) is mostly influenced by intensity of the laser beam and the high material removal rates are associated with high laser beam intensities.
Colombier, J. P. et al. Optimized energy coupling at ultrafast laser-irradiated metal surfaces by tailoring intensity envelopes: Consequences for material removal from Al samples.
The main parameter that determines the material removal rate in the process is the current intensity.
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