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Soft Magnetic Cu-Co-Ni Composite Materials Produced byMechanical Alloying, Cold Compaction, and Sintering

机译:机械合金化,冷压和烧结生产的软磁Cu-Co-Ni复合材料

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Nanostructured Cu-(90)Co-(10) and Cu-(85)Co-(10)Ni-5 soft magnetic alloys were obtained by mechanical alloying in a planetary mill. Ultrafine Co and (Co.Ni) particles were obtained and dispersed in the copper powder matrix, thus affecting the magnetic properties of the as-milled powder obtained from the non-equilibrium phases synthesis. The powder alloys were characterized by means of X-ray diffraction, SEM, HRTEM, and EPMA. The magnetic properties of the powder alloys measured at 300K as a function of milling time reveal that the Cu-Co-Ni alloys show a superparamagnetic behavior. The hardness and magnetic properties of Cu-Co and Cu-Co-Ni alloyed powders reached their optimum values after milling for 60h. Both of the alloy powder blends milled for 60h were cold compacted and sintered at 973K for 1h. The effect of nickel on the Ni-5Co-xCu-(95-x) system can be explained as Ni content inhibits the two-solid (Cu-Co) phases segregation in the alloys when annealed at high temperature, leading to a structure with less Co particles precipitation into an homogeneous Cu-Ni strengthened solid solution matrix, as evidenced by the 441 MPa hardness. The variation of magnetic properties and its dependence on the structure/ precipitation change with milling time for each alloy are discussed.
机译:通过在行星式轧机中机械合金化获得了纳米结构的Cu-(90)Co-(10)和Cu-(85)Co-(10)Ni-5软磁合金。获得了超细Co和(Co.Ni)颗粒,并将其分散在铜粉基质中,从而影响了从非平衡相合成获得的研磨后粉末的磁性。粉末合金通过X射线衍射,SEM,HRTEM和EPMA进行表征。在300K下测量的粉末合金的磁性能是铣削时间的函数,表明Cu-Co-Ni合金表现出超顺磁性能。研磨60h后,Cu-Co和Cu-Co-Ni合金粉末的硬度和磁性能达到最佳值。将两种研磨了60h的合金粉末混合物冷压并在973K烧结1h。可以解释镍对Ni-5Co-xCu-(95-x)体系的影响,因为镍含量在高温退火时会抑制合金中的两个固相(Cu-Co)偏析,从而导致结构441 MPa硬度证明,较少的Co颗粒沉淀到均匀的Cu-Ni强化固溶体基体中。讨论了每种合金的磁性能变化及其对结构/析出度随铣削时间的变化的依赖性。

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