Literature DB >> 17994145

Removal rate model for magnetorheological finishing of glass.

Jessica E Degroote1, Anne E Marino, John P Wilson, Amy L Bishop, John C Lambropoulos, Stephen D Jacobs.   

Abstract

Magnetorheological finishing (MRF) is a deterministic subaperture polishing process. The process uses a magnetorheological (MR) fluid that consists of micrometer-sized, spherical, magnetic carbonyl iron (CI) particles, nonmagnetic polishing abrasives, water, and stabilizers. Material removal occurs when the CI and nonmagnetic polishing abrasives shear material off the surface being polished. We introduce a new MRF material removal rate model for glass. This model contains terms for the near surface mechanical properties of glass, drag force, polishing abrasive size and concentration, chemical durability of the glass, MR fluid pH, and the glass composition. We introduce quantitative chemical predictors for the first time, to the best of our knowledge, into an MRF removal rate model. We validate individual terms in our model separately and then combine all of the terms to show the whole MRF material removal model compared with experimental data. All of our experimental data were obtained using nanodiamond MR fluids and a set of six optical glasses.

Entities:  

Year:  2007        PMID: 17994145     DOI: 10.1364/ao.46.007927

Source DB:  PubMed          Journal:  Appl Opt        ISSN: 1559-128X            Impact factor:   1.980


  2 in total

1.  The Cause of Ribbon Fluctuation in Magnetorheological Finishing and Its Influence on Surface Mid-Spatial Frequency Error.

Authors:  Bo Wang; Feng Shi; Guipeng Tie; Wanli Zhang; Ci Song; Ye Tian; Yongxiang Shen
Journal:  Micromachines (Basel)       Date:  2022-04-29       Impact factor: 3.523

Review 2.  A Review on Surface Finishing Techniques for Difficult-to-Machine Ceramics by Non-Conventional Finishing Processes.

Authors:  Lida Heng; Jeong Su Kim; Jun Hee Song; Sang Don Mun
Journal:  Materials (Basel)       Date:  2022-02-07       Impact factor: 3.623

  2 in total

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