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- W2973666151 abstract "Abstract This paper presents an investigation into structure and magnetic properties of Fe–50%Ni permalloy bulk samples manufactured from the powder of the same chemical composition by selective laser melting (SLM). The relations of microstructure, heat treatment parameters, maximum relative permeability (μmax) and coercivity (Hc) were established. Fine fcc crystallographic structure with elongated grains in building direction was observed. In as-built state the mode angle of misorientation which characterizes the degree of internal stresses was close to 0.5° that was near the lowest reliably determined misorientation. After heat treatment it was shifted to the bigger angles at the region of 1°, meanwhile the microhardness lowered from 275 HV down to 190 HV after annealing and it was still rather high for this type of alloys. The coercivity decreased after the annealing in comparison with as-built state from 200 to 100 A/m that is rather high for soft magnetic alloys however it is lower than that one of magnetic alloys produced by additive manufacturing methods and published elsewhere. The relative maximum permeability in this case rised from 1000 to 5000. The obtained results for μmax and Hc were discussed in terms of microstructure features which might be some kind of restriction for SLM technology of soft magnetic alloys manufacture." @default.
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- W2973666151 date "2020-01-01" @default.
- W2973666151 modified "2023-09-27" @default.
- W2973666151 title "Magnetic properties of Fe–Ni permalloy produced by selective laser melting" @default.
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- W2973666151 doi "https://doi.org/10.1016/j.jallcom.2019.152315" @default.
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