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Magnetomechanical properties of epoxy-bonded Sm1-xNd xFe1.55 (0 ≤ x ≤ 0.56) pseudo-1-3 magnetostrictive particulate composites

机译:环氧键合Sm1-xNd xFe1.55(0≤x≤0.56)拟1-3磁致伸缩颗粒复合材料的磁机械性能

摘要

Pseudo-1-3 magnetostrictive particulate composites consisting of light rare earth (Sm and Nd)-based magnetostrictive Sm1-xNdxFe 1.55 particles with the Nd content x of 0-0.56 and randomly distributed sizes of 10-180 μm embedded and aligned in a passive epoxy matrix are fabricated using the particulate volume fraction of 0.5. The quasistatic magnetomechanical properties of the composites are investigated and the results are compared with their monolithic alloys for various x. The composites exhibit similar qualitative trends in properties with the alloys for all x. The Sm 0.92Nd0.08Fe1.55 composite shows a large unsaturated magnetostriction λ of -530 ppm at 500 kA/m and a high piezomagnetic coefficient d33 of -2.0 nm/A at 100 kA/m as a result of the magnetocrystalline anisotropy compensation between Sm3+ and Nd3+ ions in the Sm0.92Nd0.08Fe1.55 alloy.
机译:伪1-3磁致伸缩颗粒复合材料,由基于稀土(Sm和Nd)的轻磁致伸缩Sm1-xNdxFe 1.55颗粒组成,Nd含量x为0-0.56,无规分布尺寸为10-180μm,嵌入并排列在无源中使用0.5的颗粒体积分数制造环氧基质。研究了复合材料的准静态磁机械性能,并将结果与​​各种x的单片合金进行了比较。对于所有x,该复合材料在性能上都具有与合金相似的定性趋势。 Sm 0.92Nd0.08Fe1.55复合材料在500 kA / m时显示出-530 ppm的大不饱和磁致伸缩λ,在100 kA / m时显示出-2.0 nm / A的高压电磁系数d33,这是由于两者之间的磁晶各向异性补偿所致。 Sm0.92Nd0.08Fe1.55合金中的Sm3 +和Nd3 +离子。

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