2002
DOI: 10.1117/1.1489677
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Nanometer deep shaping with fluid jet polishing

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Cited by 46 publications
(28 citation statements)
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“…with no physical tool contact. Booij et.al 13 have shown the linear dependence of removal rate with slurry concentration. They have also shown the nonlinear dependence with impact-velocity, due to the combined effects of i) a minimum velocity-threshold below which no removal occurs, ii) the increased rate of particle-delivery with increased velocity and iii) the square relation between particle kinetic energy and velocity.…”
Section: Fluid Jet Polishingmentioning
confidence: 98%
“…with no physical tool contact. Booij et.al 13 have shown the linear dependence of removal rate with slurry concentration. They have also shown the nonlinear dependence with impact-velocity, due to the combined effects of i) a minimum velocity-threshold below which no removal occurs, ii) the increased rate of particle-delivery with increased velocity and iii) the square relation between particle kinetic energy and velocity.…”
Section: Fluid Jet Polishingmentioning
confidence: 98%
“…According to Booij et al (2002) the material removal rate in the FJP process depends on the number of impacting particles. The number of abrasive particle impacts depends on the concentration, pressure, nozzle shape, and other factors that influence the velocity of each particle and the processing time.…”
Section: Influence Of Polishing Time On Surface Roughnessmentioning
confidence: 99%
“…Therefore, the particles can be treated as spheres. Under these conditions, motion equation of particle phase can be greatly simplified, by ignoring all the forces but gravity and drag force [14]. The simplified motion equation without Basset, Virtual mass force, Magnus, Saffman and buoyancy is stated as below (x direction at Cartesian coordinate):…”
Section: Mathematical Model Descriptionmentioning
confidence: 99%