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Applied Optics|August 7, 2007
Subsurface damage and microstructure development in precision microground hard ceramics using magnetorheological finishing spotsShai N Shafrir, John C Lambropoulos, Stephen D JacobsApplied Optics|May 5, 2009
Shear stress in magnetorheological finishing for glassesChunlin Miao, Shai N Shafrir, John C Lambropoulos, et al.Journal of Colloid and Interface Science|November 10, 2009
Synthesis and corrosion study of zirconia-coated carbonyl iron particlesRui Shen, Shai N Shafrir, Chunlin Miao, et al.Optics Express|October 14, 2010
Magnetic field effects on shear and normal stresses in magnetorheological finishingJohn C Lambropoulos, Chunlin Miao, Stephen D JacobsApplied Optics|April 2, 2010
Process parameter effects on material removal in magnetorheological finishing of borosilicate glassChunlin Miao, John C Lambropoulos, Stephen D JacobsApplied Optics|May 3, 2005
Subsurface damage in some single crystalline optical materialsJoseph A Randi, John C Lambropoulos, Stephen D JacobsApplied Optics|December 17, 2009
Zirconia-coated carbonyl-iron-particle-based magnetorheological fluid for polishing optical glasses and ceramicsShai N Shafrir, Henry J Romanofsky, Michael Skarlinski, et al.Applied Optics|February 25, 2016
Magnetorheological finishing of chemical-vapor deposited zinc sulfide via chemically and mechanically modified fluidsSivan Salzman, Henry J Romanofsky, Lucca J Giannechini, et al.Applied Optics|September 5, 2002
Electric-field-induced motion of polymer cholesteric liquid-crystal flakes in a moderately conductive fluidTanya Z Kosc, Kenneth L Marshall, Stephen D Jacobs, et al.Applied Optics|November 13, 2007
Removal rate model for magnetorheological finishing of glassJessica E Degroote, Anne E Marino, John P Wilson, et al.Pageof 3