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Removal rate model for magnetorheological finishing of glass

机译:玻璃磁流变抛光的去除率模型

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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 (CD 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.
机译:磁流变精加工(MRF)是确定性的小孔抛光工艺。该工艺使用的磁流变(MR)流体由微米级的球形,羰基磁性铁(CD颗粒,非磁性抛光剂,水和稳定剂组成)。当CI和非磁性抛光剂将表面上的材料剪切掉时,会发生材料去除。我们引入了一种新的玻璃MRF材料去除率模型,该模型包含以下条件:玻璃的近表面机械性能,阻力,抛光磨料的尺寸和浓度,玻璃的化学耐久性,MR流体的pH值以及玻璃成分我们据我们所知,首次将定量化学预测因子引入MRF去除率模型中,我们分别对模型中的各个术语进行验证,然后将所有这些术语组合起来以显示整个MRF材料去除模型与实验数据:我们所有的实验数据都是使用纳米金刚石MR流体和一组六副光学玻璃获得的。

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