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首页> 外文期刊>Key Engineering Materials >Influence of the milling time on Mechanical and Magnetic properties of Cu_(90)Co_5Ni_5 alloy obtained by Mechanical Alloying
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Influence of the milling time on Mechanical and Magnetic properties of Cu_(90)Co_5Ni_5 alloy obtained by Mechanical Alloying

机译:铣削时间对机械合金化Cu_(90)Co_5Ni_5合金力学性能和磁性能的影响

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摘要

The structure, mechanical and magnetic properties of Cu_(90)Co_5Ni_5 alloys produced by mechanical alloying and subsequent cold consolidation and sintering behavior, have been investigated. A system of small Co and Ni magnetic particles embedded in the non-magnetic copper matrix were prepared through a mechanical milling process by using a planetary ball mill under argon atmosphere for 20 to 60 h. The morphology and particles size, phase formation and chemical composition of the alloyed powder samples for each milling time were characterized by scanning electron microscope and powder X-ray diffraction techniques, respectively. After milling for 60 h, a supersaturated solid solution with coercive field H_c with maximum value of 235Oe was obtained. The continuous decreasing trend of saturation magnetization (M_s) with increasing of milling time can be explained by the reduction of copper oxide by (CoNi) oxide formation, confirmed by powder XRD patterns. The XRD analyses of the as-milled samples revealed that the Bragg peaks of FCC-Co changed partially to HCP-Co on increasing the milling time. Cu_(90)Co_5Ni_5 powders cold consolidated and sintered at 650℃ for 1h segregated mainly into two-phases of mixed (fcc,hc)-Co and fcc-CuNi. After sintering, the mechanical properties for 60h milling reached its optimum, 26HV in hardness corresponding to 250MPa as compressive strength. TEM microanalysis of sintered alloys revealed Co cluster of 2 to 5 nm in size separated each one by 10 to 20 ntn in size. The variation of magnetic properties and its dependence on structural-precipitation change with milling time are discussed.
机译:研究了通过机械合金化以及随后的冷固结和烧结行为制备的Cu_(90)Co_5Ni_5合金的结构,力学和磁性能。通过机械研磨工艺,使用行星式球磨机在氩气气氛下20到60 h,制备了嵌入在非磁性铜基体中的Co和Ni磁性小粒子的体系。通过扫描电子显微镜和粉末X射线衍射技术分别表征了每个研磨时间的合金粉末样品的形貌和粒度,相形成和化学组成。研磨60小时后,获得矫顽场H_c为最大值235Oe的过饱和固溶体。饱和磁化强度(M_s)随铣削时间的增加而连续降低的趋势可以通过粉末(XRD)图案证实,由于(CoNi)氧化物形成而使氧化铜减少。研磨后样品的X射线衍射分析表明,随着研磨时间的增加,FCC-Co的布拉格峰部分变为HCP-Co。 Cu_(90)Co_5Ni_5粉末在650℃下冷固和烧结1h,主要析出为(fcc,hc)-Co和fcc-CuNi混合两相。烧结后,铣削60h的机械性能达到最佳,硬度为26HV,相当于抗压强度为250MPa。烧结合金的TEM显微分析显示,Co簇的大小为2至5 nm,每个簇之间的间隔为10到20 ntn。讨论了磁性能随铣削时间的变化及其对结构沉淀变化的依赖性。

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  • 来源
    《Key Engineering Materials》 |2010年第2010期|119-124|共6页
  • 作者单位

    Departamento Ing. De Materiales, Universidad de Conception, Conception, Chile;

    Grupo de Peliculas Delgadas, Departamento De Fisica, Universidad del Valle, Cali, Colombia;

    Grupo de Peliculas Delgadas, Departamento De Fisica, Universidad del Valle, Cali, Colombia;

    Departamento Ing. De Materiales, Universidad de Conception, Conception, Chile;

    Departamento Ing. De Materiales, Universidad de Conception, Conception, Chile;

    Centra de Excelencia en Nuevos Materiales (CEIMM), Cali, Colombia;

    Departamento de Metalurgia Ffsica,CENIM-CSIC, Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    mechanical alloying; Cu-Co-Ni granular alloys; properties;

    机译:机械合金化;Cu-Co-Ni粒状合金;属性;

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