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Experiments and observations regarding the mechanisms of glass removal in magnetorheological finishing

机译:关于磁流变精加工中玻璃去除机理的实验和观察

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Recent advances in the study of the magnetorheological finishing (MRF) have allowed for the characterization of the dynamic yield stress of the magnetorheological (MR) fluid, as well as the nanohardness (H_(nano)) of the carbonyl iron (CI) used in MRF. Knowledge of these properties has allowed for a more complete study of the mechanisms of material removal in MRF. Material removal experiments show that the nanohardness of CI is important in MRF with nonaqueous MR fluids with no nonmagnetic abrasives, but is relatively unimportant in aqueous MR fluids or when nonmagnetic abrasives are present. The hydrated layer created by the chemical effects of water is shown to change the way material is removed by hard CI as the MR fluid transitions from a nonaqueous MR fluid to an aqueous MR fluid. Drag force measurements and atomic force microscope scans demonstrate that, when added to a MR fluid, nonmagnetic abrasives (cerium oxide, aluminum oxide, and diamond) are driven toward the workpiece surface because of the gradient in the magnetic field and hence become responsible for material removal. Removal rates increase with the addition of these polishing abrasives. The relative increase depends on the amount and type of abrasive used.
机译:磁流变精加工(MRF)研究的最新进展已经可以表征磁流变(MR)流体的动态屈服应力,以及羰基铁(CI)的纳米硬度(H_(nano))。 MRF。这些属性的知识可以更完整地研究MRF中的材料去除机理。材料去除实验表明,CI的纳米硬度在不含非磁性磨料的非水性MR流体的MRF中很重要,但在水性MR流体或存在非磁性磨料的情况下相对不重要。由于水的化学作用而形成的水化层显示出随着MR流体从非水MR流体过渡到含水MR流体而改变通过硬质CI去除材料的方式。拖曳力测量和原子力显微镜扫描表明,当添加到MR流体中时,由于磁场中的梯度,非磁性磨料(氧化铈,氧化铝和金刚石)被驱向工件表面,从而成为材料的原因去除。添加这些抛光剂后,去除率会提高。相对增加量取决于所用磨料的数量和类型。

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