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首页> 外文期刊>Journal of Applied Physics >Magnetomechanical damping capacity of Tb_(0.36)Dy_(0.64)(Fe_(1-x)T_x)_2 (T=Co,Mn) alloys
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Magnetomechanical damping capacity of Tb_(0.36)Dy_(0.64)(Fe_(1-x)T_x)_2 (T=Co,Mn) alloys

机译:Tb_(0.36)Dy_(0.64)(Fe_(1-x)T_x)_2(T = Co,Mn)合金的磁机械阻尼能力

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摘要

The magnetomechanical damping capacity of the giant magnetostrictive Tb_(0.36)Dy_(0.64)(Fe_(1-x)T_x)_2 (x =0, 0.05, 0.10; T=Mn or Co) alloys has been calculated from quasistatic strain-stress hysteresis loops at room temperature. Stress ranges from 0 to 10, 20, 30, and 50 MPa were used in a series of applied fields between 0 and 3250 Oe. The largest damping capacities were obtained at zero field with values of 1.14 for Tb_(0.36)Dy_(0.64)Fe_2, 1.62 for Tb_(0.36)Dy_(0.64)(Fe_(0.95)Mn_(0.05))_2, and 1.84 for Tb_(0.36)Dy_(0.64)(Fe_(0.90)Co_(0.10))_2, respectively. In low fields, the damping capacity ΔW/W decreases drastically with the applied stress and magnetic field. However, in higher fields, ΔW/W decreases slightly with the magnetic field but only increases slightly with the applied stress. The results show that both Mn and Co as substitutes for Fe are beneficial for obtaining higher damping capacity.
机译:从准静态应变应力计算出了大型磁致伸缩Tb_(0.36)Dy_(0.64)(Fe_(1-x)T_x)_2(x = 0,0.05,0.10; T = Mn或Co)合金的磁机械阻尼能力室温下磁滞回线。在一系列介于0和3250 Oe之间的外加电场中使用了0到10、20、30和50 MPa的应力范围。在零场处获得最大的阻尼能力,Tb_(0.36)Dy_(0.64)Fe_2的值为1.14,Tb_(0.36)Dy_(0.64)(Fe_(0.95)Mn_(0.05))_ 2的值为1.62,Tb_的值为1.84 (0.36)Dy_(0.64)(Fe_(0.90)Co_(0.10))_ 2。在低场中,阻尼能力ΔW/ W随着施加的应力和磁场而急剧下降。但是,在较高的磁场中,ΔW/ W随磁场而略有减小,而仅随施加的应力而略微增加。结果表明,Mn和Co都可以替代Fe,有利于获得更高的阻尼能力。

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