>While magnetorheological fluids can be used for ultra-precise polishing, for example, of advanced optical components, oxidation of metallic parti'/> Magnetorheological properties and polishing characteristics of silica- coated carbonyl iron magnetorheological fluid
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Magnetorheological properties and polishing characteristics of silica- coated carbonyl iron magnetorheological fluid

机译:二氧化硅包覆的羰基铁磁流变液的磁流变性质和抛光特性

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摘要

>While magnetorheological fluids can be used for ultra-precise polishing, for example, of advanced optical components, oxidation of metallic particles in water-based magnetorheological fluids causes irregular polishing behavior. In this study, carbonyl iron microspheres were initially coated with silica to prevent oxidation and were used to polish BK7 glass. In addition, their rheological and sedimentation characterizations were investigated. Material removal and surface roughness were analyzed to investigate the surface quality and optimal experimental conditions of polishing wheel speed and magnetic field intensity. The maximum material removal was 0.95 µm at 95.52 kA/m magnetic field intensity and 1854 mm/s wheel speed. A very fine surface roughness of 0.87 nm was achieved using the silica-coated magnetorheological fluid at 47.76 kA/m magnetic field intensity and 1854 mm/s wheel speed.
机译: >虽然磁流变液可用于超精密抛光,例如高级光学组件的超精密抛光,金属颗粒的氧化水性磁流变液会引起不规则的抛光行为。在这项研究中,羰基铁微球最初涂有二氧化硅以防止氧化,并用于抛光BK7玻璃。此外,还研究了它们的流变和沉降特性。分析材料去除和表面粗糙度,以研究表面质量以及抛光轮速度和磁场强度的最佳实验条件。在95.52 kA / m的磁场强度和1854 mm / s的车轮速度下,最大材料去除量为0.95 µm。使用涂有二氧化硅的磁流变液在47.76 kA / m的磁场强度和1854 mm / s的车轮速度下获得了非常精细的表面粗糙度,为0.87 nm。

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