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Modeling of Plastic Deformation Effects in Ferromagnetic Thin Films

机译:铁磁薄膜塑性变形效应的建模

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To explain the magnetic behavior of plastic deformation of thin magnetic films (Fe and permalloy) on an elastic substrate (nitinol), it is noted that unlike in the bulk, the dislocation density does not increase dramatically because of the dimensional constraint. As a result, the resulting residual stress, even though strain hardening is limited, dominates the observed magnetic behavior. Thus, with the field parallel to the stress axis, the compressive residual stress resulting from plastic deformation causes a decrease in remanence and an increase in coercivity; and with the field perpendicular to the stress axis, the resulting compressive residual stress causes an increase in remanence and a decrease in coercivity. These elements have been inserted into the model previously developed for plastic deformation in the bulk, producing the aforementioned behavior, which has been observed experimentally in the films.
机译:为了解释弹性基板(镍钛诺)上的磁性薄膜(Fe和坡莫合金)的塑性变形的磁行为,应注意的是,与块状结构不同,由于尺寸限制,位错密度不会显着增加。结果,即使应变硬化受到限制,所产生的残余应力仍会主导观察到的磁行为。因此,在平行于应力轴的场中,由塑性变形产生的压缩残余应力会导致剩磁的减少和矫顽力的增加;在垂直于应力轴的情况下,产生的压缩残余应力会导致剩磁的增加和矫顽力的降低。这些元素已被插入到先前为大块塑性变形而开发的模型中,产生了上述行为,已在薄膜中进行了实验观察。

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