论文标题

严重的塑性变形可调磁性耐磁力

Tuneable Magneto-Resistance by Severe Plastic Deformation

论文作者

Wurster, Stefan, Weissitsch, Lukas, Stueckler, Martin, Knoll, Peter, Krenn, Heinz, Pippan, Reinhard, Bachmaier, Andrea

论文摘要

使用严重的塑性变形从不同的二元粉末混合物中合成大量金属样品。铁磁相的小颗粒源于导电CU相,无论是不完整的溶解还是通过在变形过程中的隔离现象。已知这些小颗粒会产生颗粒状的巨磁磁性。利用简单的生产过程,可以对加工参数和材料组成对磁耐药的影响进行系统研究。此外,可以根据标本化学组成的函数调整磁磁性行为是可行的。发现低铁磁含量的标本显示磁场中的电阻几乎降低。随着铁磁含量的增加,渗透铁磁阶段会导致磁路震荡的各向异性。通过更改高压扭转过程的参数,即样本尺寸,变形温度和应变速率,可以量身定制巨型磁耐药性的大小。室温电阻率的降低约为。对于含有CO和CU的大约等待分数的散装标本发现了3.5%。

Bulk metallic samples were synthesized from different binary powder mixtures consisting of elemental Cu, Co, and Fe using severe plastic deformation. Small particles of the ferromagnetic phase originate in the conductive Cu phase, either by incomplete dissolution or by segregation phenomena during the deformation process. These small particles are known to give rise to granular giant magnetoresistance. Taking advantage of the simple production process, it is possible to perform a systematic study on the influence of processing parameters and material compositions on the magneto-resistance. Furthermore, it is feasible to tune the magnetoresistive behavior as a function of the specimens chemical composition. It was found that specimens of low ferromagnetic content show an almost isotropic drop in resistance in a magnetic field. With increasing ferromagnetic content, percolating ferromagnetic phases cause an anisotropy of the magnetoresistance. By changing the parameters of the high pressure torsion process, i.e., sample size, deformation temperature, and strain rate, it is possible to tailor the magnitude of giant magneto-resistance. A decrease in room temperature resistivity of approx. 3.5% was found for a bulk specimen containing an approximately equiatomic fraction of Co and Cu.

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