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应变诱导Ni原子在纳米晶Fe中的扩散行为研究
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重庆科技学院冶金与材料工程学院

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国家自然科学基金项目(面上项目,重点项目,重大项目)


Strain-induced Diffusion of Nickel in Nanocrystalline Fe Preduced by High Energy Shot Peening
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College of Metallurgy and Materials Engineering of Chongqing University of Science and Technology

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    摘要:

    利用高能喷丸法(HESP)在工业纯铁表面制备了一定厚度无污染、空位、杂质等缺陷的纳米晶层,其平均晶粒尺寸为50nm,厚度为100μm。在Gleebl 1500热模拟机上,采用脉冲加压扩散(PPD)和恒定加压扩散(CPD)对纳米晶铁在850℃下进行渗镍处理。结果表明,镍原子在纳米晶铁中的扩散系数比常规粗晶中高1个数量级;而采用脉冲加压扩散时,镍原子的扩散系数要比采用恒压扩散高1个数量级。镍原子扩散系数的提高主要包括三个方面的原因,一是脉冲加压能击碎扩撒界面上形成的阻碍镍原子扩散的金属件化合物;二是纳米晶铁中形成的大量三叉晶界以及大量的非平衡晶界。

    Abstract:

    By means of high energy shot peening (HESP) to a pure iron cylinder, a nanocrystalline surface layer without oxidation, porosity and contamination was obtained. The thickness of the nanocrystalline surface layer was more than 100μm and the average grain size was about 50nm. The pulse pressure diffusion (PPD) and constant pressure diffusion (CPD) were used to diffuse nickel into nanocrystalline iron at 850℃ on Gleebl 1500 . Experimental results showed that diffusivity of Ni in the nanocrystalline Fe is 1 orders of magnitude higher than that in coarse-grained Fe and 1 orders of magnitude higher than that using CPD. The enhanced diffusivity of Ni may originate from the following three reasons : (1) pulse pressure can break the metalic compound formed during diffusing which may block the diffusion of Ni to inner nanocrystalline Fe; (2) a considerable amount of triple junctions and (3) a large volume fraction of non-equilibrium grain boundarie(GBs) in the present nanocrystalline Fe sample processed by means of the HESP technique.

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孙建春.应变诱导Ni原子在纳米晶Fe中的扩散行为研究[J].稀有金属材料与工程,2017,46(3):596~600.[sun jian chun. Strain-induced Diffusion of Nickel in Nanocrystalline Fe Preduced by High Energy Shot Peening[J]. Rare Metal Materials and Engineering,2017,46(3):596~600.]
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  • 收稿日期:2014-11-19
  • 最后修改日期:2015-03-17
  • 录用日期:2015-06-11
  • 在线发布日期: 2017-05-18
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