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Investigation of typical properties of nanocrystalline iron powders prepared by ball milling techniques - IOPscience

机译:球磨技术制备的纳米晶铁粉的典型性能研究-IOPscience

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Metallic powder has applications in many fields. In applications for preservation and anti-oxidation, iron powder has been used as an air oxygen reducer which is capable of decreasing microclimatic oxygen concentrations in a hermetic mini-environment. In this role, if we increase the specific surface area by reducing the particle size of the iron powder, the rate and performance of oxygen reduction will be improved significantly. In addition, the porosity of iron powder also contributes considerably. The iron powder can be fabricated using many methods: chemical deposition, powder metallurgy and mechanical milling. The technique of milling has certain advantages, especially for the formation of technical iron powder. The experimental equipment used was a Fritsch P-6 planetary ball mill. The iron powder was prepared with different milling times, from 1 up to 30 h in acetone as a protective environment. The powder products obtained were analyzed using field emission scanning electron microscope (FE-SEM), energy dispersive x-ray (EDX), x-ray diffraction (XRD), dynamic laser scattering (DLS), Brunauer–Emmett–Teller (BET) techniques and also magnetic characterization by vibrating sample magnetometer (VSM). The results show a correlation between the milling time and the crystallite and particle size, specific surface area, magnetic properties and nanoscale porosity of the iron powder. The iron powders obtained were a kind of mesoporous materials. The properties of the iron powder were examined with respect to their oxygen reducing kinetics.
机译:金属粉末在许多领域都有应用。在防腐和抗氧化的应用中,铁粉已被用作空气中的氧气还原剂,它能够在密闭的微型环境中降低微气候中的氧气浓度。在此作用下,如果我们通过减小铁粉的粒径来增加比表面积,则氧的还原速率和性能将得到显着改善。另外,铁粉的孔隙率也有很大贡献。可以使用许多方法来制造铁粉:化学沉积,粉末冶金和机械研磨。研磨技术具有某些优点,特别是对于工业铁粉的形成。使用的实验设备是Fritsch P-6行星式球磨机。以不同的研磨时间制备铁粉,在丙酮中1到30 h作为保护环境。使用场发射扫描电子显微镜(FE-SEM),能量色散X射线(EDX),X射线衍射(XRD),动态激光散射(DLS),Brunauer-Emmett-Teller(BET)分析获得的粉末产品振动样品磁强计(VSM)进行磁技术表征和磁性表征。结果表明,研磨时间与铁粉的晶粒,粒径,比表面积,磁性和纳米级孔隙率之间存在相关性。所得的铁粉是一种介孔材料。就铁粉的氧还原动力学进行了研究。

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