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首页> 外文期刊>Electrochimica Acta >Magnetothermal study of nanocrystalline particle formation in amorphous electroless Ni-P and Ni-Me-P alloys
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Magnetothermal study of nanocrystalline particle formation in amorphous electroless Ni-P and Ni-Me-P alloys

机译:非晶化学镀Ni-P和Ni-Me-P合金中纳米晶体颗粒形成的磁热研究

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摘要

The microstructure of amorphous Ni-P and Ni-Me-P materials and especially its change during the heat treatment is of great importance for their magnetic, mechanical and corrosion behavior. A new magnetic phase analysis method (magnetothermal) is presented that reveals the precipitation of nanoparticles with strong magnetic properties during phase transformation upon heat treatment. It is applied to electroless Ni-P, Ni-Cu-P and Ni-Sn-P amorphous alloys. The results acquired by this method are compared with data obtained by differential scanning calorimetry, as well as by microhardness measurements using identical heat treatment in all three cases. Due to the high sensitivity of the magnetothermal method a more detailed picture of the precipitation processes in Ni-P alloys is obtained and the new information is discussed. Magnetothermal measurements reveal several stages of precipitation of a phase with strong magnetic properties. This phase is Ni in the Ni-P alloy, and Ni(Me) solid solution in the Ni-Me-P alloys. Though Sn has a stronger effect on the Ni magnetization, Cu is more effective in preventing the appearance of high magnetization in a thermally treated Ni-Cu-P alloy. This is due to Cu incorporation in Ni particles in a quantity above four times larger than Sn.
机译:非晶态Ni-P和Ni-Me-P材料的微观结构,尤其是热处理过程中的变化,对它们的磁,机械和腐蚀行为具有重要意义。提出了一种新的磁相分析方法(磁热),该方法揭示了热处理过程中相变过程中具有强磁性的纳米颗粒的沉淀。它适用于化学镀Ni-P,Ni-Cu-P和Ni-Sn-P非晶态合金。将通过此方法获得的结果与通过差示扫描量热法以及在所有三种情况下使用相同热处理的显微硬度测量获得的数据进行比较。由于磁热方法的高灵敏度,可以获得有关Ni-P合金中析出过程的更详细的图片,并讨论了新的信息。磁热测量揭示了具有强磁性质的相的几个析出阶段。该相为Ni-P合金中的Ni和Ni-Me-P合金中的Ni(Me)固溶体。尽管Sn对Ni的磁化强度具有更强的作用,但是Cu在防止热处理的Ni-Cu-P合金中出现高磁化强度方面更有效。这是由于以大于Sn的四倍的量将Cu掺入Ni颗粒中。

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