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Production of High-Resistivity Electrical Steel Alloys by Substitution of Si with Al and Cr

机译:用硅置换铝和铬制备高电阻电工钢合金

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Fe-3Si-3Al and Fe-4Si-4Cr (wt%) experimental alloys were processed to assess the electrical resistivity and workability effects of substituting Al and Cr for Si in high-Si electrical steel alloys. The experimental alloys were made by arc melting, and processed by hot rolling and cold rolling to produce strips. Samples were characterized by means of metallography, hardness, workability and resistivity. Results showed that the two alloys could be rolled down to 200 μm thickness (90% hot-rolled reduction and 80% cold rolled reduction) without crack formation in the strips. Hardness in the annealed condition and electrical resistivity were 228 HV/74 μΩ cm and 243 HV/85 μΩ cm, respectively, for the Fe-3Si-3Al and for Fe-4Si-4Cr alloys. The resistivity measured for Fe-4Si-4Cr was higher than the resistivity reported for the benchmark high-Si alloy, Fe-6.5Si. Both experimental alloys showed improvement on the workability compared to Fe-6.5Si since there was no edge cracking on the cold-rolled strips up to 80% reduction, and the hardness was approximately 35% lower.
机译:处理Fe-3Si-3Al和Fe-4Si-4Cr(wt%)实验合金,以评估用Al和Cr代替高硅电工钢合金中Si的电阻率和可加工性影响。实验合金是通过电弧熔化制成的,并通过热轧和冷轧进行处理以生产带材。通过金相,硬度,可加工性和电阻率对样品进行表征。结果表明,两种合金可以轧制至200μm的厚度(热轧压下量为90%,冷轧压下量为80%),而带材中没有裂纹形成。对于Fe-3Si-3Al和Fe-4Si-4Cr合金,退火条件下的硬度和电阻率分别为228 HV / 74μΩcm和243 HV / 85μΩcm。 Fe-4Si-4Cr的电阻率高于基准高硅合金Fe-6.5Si的电阻率。与Fe-6.5Si相比,这两种实验合金均显示出可加工性的提高,因为在冷轧钢带上没有边缘裂纹,降低率高达80%,硬度降低了约35%。

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