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Sedimentations on high precision surfaces of advanced materials by magnetorheological finishing

机译:通过磁流变精加工在先进材料的高精度表面上进行沉积

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Magnetorheological finishing (MRF) is a computer controlled polishing (CCP) technique for high precision surfaces. The process uses a magnetorheological fluid which stiffens in a magnetic field and thus acts as the polishing tool. A standard MR fluid consists of magnetic carbonyl iron (CI) particles, nonmagnetic polishing abrasives and liquid. To delaying oxidation of the iron particles and avoiding agglomeration the liquid consists of water completed with stabilizers. For the material removal and smoothing of the surface mostly cerium oxide or diamond is used. The materials to be polished may tend toward to different sedimentations of the MR fluid on the machined surface. These sedimentations result from the machining and may develop a polishing layer with MR fluid components. At the University of Applied Sciences Deggendorf analysis of the machined surface are made by the scanning electronic microscope (SEM) to determine the sedimentations of the finishing. The results of the research display the influence for the surface properties due to developing polishing layer by magnetorheological finishing.
机译:磁流变抛光(MRF)是一种用于高精度表面的计算机控制的抛光(CCP)技术。该工艺使用的磁流变流体会在磁场中变硬,因此可以用作抛光工具。标准MR流体由磁性羰基铁(CI)颗粒,非磁性抛光磨料和液体组成。为了延迟铁颗粒的氧化并避免结块,液体由水和稳定剂组成。为了去除材料和平滑表面,主要使用氧化铈或金刚石。待抛光的材料可能会导致MR流体在机加工表面上的沉积不同。这些沉积物是由于加工而产生的,并可能形成带有MR流体成分的抛光层。在应用科学大学,Deggendorf通过扫描电子显微镜(SEM)对加工表面进行分析,以确定表面处理的沉积情况。研究结果显示了通过磁流变精加工显影抛光层对表面性能的影响。

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