Badan Riset dan Inovasi Nasional
07-11-2022
12-08-2024
41471027-1737-4b61-bc52-276bb0edd352
Multi pass high energy milling dilakukan untuk memotong dan mendispersikan suspe...
It has been carried out synthesis and characterization of thermal and magnetic p...
Isu utama dalam pengembangan nanoteknologi adalah bagaimana membuat/sintesa part...
Superconducting Bi1.6Pb0.4Sr2Ca2Cu3O7 wasprepared by a solid-state reaction usin...
Superconducting Bi1.6Pb0.4Sr2Ca2Cu3O7 was prepared by a solid-state reaction usi...
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Magnetic properties of barrium ferrite after milling by high energy milling (HEM)
Magnetic properties of barium ferrite that were mashed by High Energy Milling (HEM) has been characterized. The starting iron oxide powder (Fe2O3) and barium carbonate (BaCO3) were prepared by powder metallurgy technique by the stages of mixing, calcining, milling, compacting, and sintering. Weight ratio of Fe2O3: BaCO3 was 88.74 wt persen : 17.52 wt persen. Some additives such as calcium oxide (CaO), silicon dioxide (SiO2), and polyvinyl alcohol (PVA) were added after calcining process. Milling by HEM was varied at 30, 60, 90, 120, and 150 minutes. The ball and container of HEM were made of stainless steel. Characterization micro structure by SEM showed that the milling time affect the grain size of the magnetic powder. The longer of milling time, the grain size was smaller and uniform. Characterization by using magnetic instrument Permagraph showed that the grain size will affect the magnetic properties of barium ferrite. Induction of remanence (Br), coercivity (HcJ), and product energy maximum (BHmax) values increased with increasing milling time. The optimal magnetic properties were obtained at the time of milling 120 minutes with value of Hc = 1.97 kG, HcJ = 2.314 kOe, and BHmax = 0.64 MGOe. MATEC Web Conf. Volume 101, 2017 Sriwijaya International Conference on Engineering, Science and Technology (SICEST 2016)