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The Magnetorheological Finishing (MRF) of Potassium Dihydrogen Phosphate (KDP) Crystal with Fe3O4 Nanoparticles

机译:Fe3O4纳米粒子对磷酸二氢钾(KDP)晶体的磁流变整理(MRF)

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摘要

The cubic Fe3O4 nanoparticles with sharp horns that display the size distribution between 100 and 200 nm are utilized to substitute the magnetic sensitive medium (carbonyl iron powders, CIPs) and abrasives (CeO2/diamond) simultaneously which are widely employed in conventional magnetorheological finishing fluid. The removal rate of this novel fluid is extremely low compared with the value of conventional one even though the spot of the former is much bigger. This surprising phenomenon is generated due to the small size and low saturation magnetization (Ms) of Fe3O4 and corresponding weak shear stress under external magnetic field according to material removal rate model of magnetorheological finishing (MRF). Different from conventional D-shaped finishing spot, the low Ms also results in a shuttle-like spot because the magnetic controllability is weak and particles in the fringe of spot are loose. The surface texture as well as figure accuracy and PSD1 (power spectrum density) of potassium dihydrogen phosphate (KDP) is greatly improved after MRF, which clearly prove the feasibility of substituting CIP and abrasive with Fe3O4 in our novel MRF design.
机译:具有尖角的立方Fe3O4纳米颗粒显示出100至200nm的尺寸分布,可同时替代常规磁流变整理液中广泛使用的磁敏介质(羰基铁粉,CIPs)和磨料(CeO2 /金刚石)。尽管前者的斑点大得多,但与常规流体相比,该新型流体的去除率极低。根据磁流变精加工(MRF)的材料去除速率模型,由于Fe3O4的尺寸小且饱和磁化强度(Ms)低以及相应的弱剪切应力,在外部磁场下会产生这种令人惊讶的现象。与常规的D形精加工点不同,低磁导率还会导致形成类似梭的点,因为磁控制能力较弱,并且点边缘的颗粒较疏松。进行MRF后,磷酸二氢钾(KDP)的表面纹理以及图形精度和PSD1(功率谱密度)得到了极大的改善,这清楚地证明了在我们新颖的MRF设计中用Fe3O4替代CIP和磨料的可行性。

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