软磁Ni-Fe合金板材的成形性

Y. Yoo, D. N. Lee
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摘要

摘要通过测定Ni-Fe合金板材在轧制方向和织构不同方向上的抗拉强度、屈服强度、失效伸长率、应变硬化指数和塑性-应变各向异性比值R,评价了Ni-Fe合金板材的成形性能。高镍合金(75-82Ni-12-18Fe-Mo-Cr-Cu /Mn)板材的抗拉强度、伸长率和应变硬化指数均高于低镍合金(47Ni-53Fe)。高镍合金的成形极限曲线应变水平较高,其r值(0.67 ~ 0.93,低镍合金为0.38 ~ 1.1)和r值波动也较高。由于{358}< 835 >织构在45°处产生最大值,{001}< 100 >织构在45°处产生最小值,高镍合金板的r值在45°处达到最大值,而低镍合金板的r值在45°处达到最小值。因此,高……
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Formability of soft-magnetic Ni–Fe alloy sheet
AbstractThe formabilities of Ni–Fe alloy sheets were evaluated by measuring their tensile strengths, yield strengths, elongations to failure, strain-hardening exponents, and plastic-strain anisotropy ratios R at various directions to the rolling direction and for various textures. The higher-nickel alloy (75–82Ni–12–18Fe–Mo–Cr–Cu/Mn) sheets had higher tensile strengths, elongations, and strain-hardening exponents than did those of the lower-nickel alloy (47Ni–53Fe). The strain levels of the forming-limit curves were higher for the higher-nickel alloys, as, generally, were the R-values obtained (0·67−0·93, compared with 0·38−1·1 for the lower-nickel alloys) and the R-value fluctuations. The R-value maxima at 45−67° to the rolling direction for the higher-nickel alloy sheets and the minimum at 45° for the lower-nickel alloy sheets are attributed to the competitive contributions of the {358}〈835〉 texture, which gives a maximum at 45°, and the {001}〈100〉 texture, which produces a minimum at 45°. Thus, the hig...
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