2023
DOI: 10.3390/mi14101931
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Optimization of the Morphology of the Removal Function for Rotating Abrasive Water Jet Polishing

Guipeng Tie,
Zhiqiang Zhang,
Bo Wang
et al.

Abstract: Abrasive water jet polishing has significant advantages in the manufacturing of complex optical components (such as high-slope optical component cavities) that require high-precision manufacturing. This is due to its processing process, in which the polishing tool does not make direct contact with the surface of the workpiece, and instead maintains a considerable distance. However, the removal functions of most existing abrasive water-jet polishing technologies do not possess strict symmetry, which significant… Show more

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Cited by 4 publications
(1 citation statement)
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“…An empirical approach was used to study its effects on surface roughness and material removal rates. Tie G et al [11] constructed a rotary abrasive water jet polishing process based on a five-axis CNC machine tool for planar polishing of optical. Liu Z et al [12] investigated the removal of coating clogging in the cooling holes of turbine blades by abrasive water jets, analyzed the removal mechanism, and analyzed the polishing process for straight and slanted holes.…”
Section: Introductionmentioning
confidence: 99%
“…An empirical approach was used to study its effects on surface roughness and material removal rates. Tie G et al [11] constructed a rotary abrasive water jet polishing process based on a five-axis CNC machine tool for planar polishing of optical. Liu Z et al [12] investigated the removal of coating clogging in the cooling holes of turbine blades by abrasive water jets, analyzed the removal mechanism, and analyzed the polishing process for straight and slanted holes.…”
Section: Introductionmentioning
confidence: 99%