磁致伸缩
丝带
材料科学
各向异性
磁滞
合金
磁化
微观结构
矫顽力
凝聚态物理
延展性(地球科学)
磁场
复合材料
冶金
光学
物理
量子力学
蠕动
作者
Yasubumi Furuya,Chihiro Saito,Teiko Okazaki
标识
DOI:10.2320/jinstmet1952.66.9_901
摘要
Rapid-solidification method was applied to make the Fe-15 at%Ga ribbon whose thickness was about 100 μm with improvement of ductility. The Fe-15 at%Ga ribbon sample showed a very large magnetostriction of εmax=−400×10−6 in comparison with εmax=−40×10−6 for the conventionally melt-worked bulk material at applied magnetic field, 955 kA/m. In the bulk material with random crystal orientation, the dependence of magnetostriction on magnetization direction (θ) to the surface of ribbon was scarcely recognized. On the contrary, in rapid-solidified ribbon, that dependence was extraordinarily enhanced and large magnetostriction was obtained in the thickness direction of ribbon (θ\fallingdotseq90°) where coercive force showed the maximum value. Based on these experimental results, it is considered that the large magnetostriction is strongly correlated with special metallic microstructures in the rapid-solidified Fe-15 at%Ga ribbon with very strong magnetic anisotropy. Fe-Ga rapid-solidified ribbon has the promising possibility as a new magnetostrictive material as it has large magnetostriction, ductility and very small magnetostriction hysteresis.
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