取向;沉積初期,在大角度晶界占比80%以上,隨著沉積進行,大小晶界的比例在沉積層不同位置出現(xiàn)差異;鎳沉積層中大量相鄰晶粒間以∑3、∑9、∑27孿晶界為界,其中∑3晶界頻率達到65%以上。在始極片不同表面形成的鎳沉積層長大方式不同,細晶粒表面按照形核長大方式生長,在自由生長的表面鎳原子直接并入晶格,沒有經(jīng)歷形核過程。"/>

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大面積EBSD方法對電解鎳板的研究
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蘭州理工大學(xué)

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鎳鈷資源綜合利用國家重點實驗室基金資助


Research on Industrial Electrolytic Nickel Plate by Large Area EBSD Method
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    摘要:

    本文利用大面積EBSD拼接技術(shù),對電解鎳板在生長方向上的晶粒形貌及尺寸、擇優(yōu)取向、晶界特征分布等隨著沉積的變化進行了研究,并通過SEM觀察鎳板的微觀形貌。結(jié)果表明:鎳晶粒隨著沉積的進行由細小的等軸晶粒轉(zhuǎn)變?yōu)榇执蟮闹鶢罹В叽绯饰⒓{米級;晶體取向在沉積初始沒有強的擇優(yōu)取向,最終轉(zhuǎn)變?yōu)?001>取向;沉積初期,在大角度晶界占比80%以上,隨著沉積進行,大小晶界的比例在沉積層不同位置出現(xiàn)差異;鎳沉積層中大量相鄰晶粒間以∑3、∑9、∑27孿晶界為界,其中∑3晶界頻率達到65%以上。在始極片不同表面形成的鎳沉積層長大方式不同,細晶粒表面按照形核長大方式生長,在自由生長的表面鎳原子直接并入晶格,沒有經(jīng)歷形核過程。

    Abstract:

    In this paper, large-area EBSD splicing technology was used to study the crystal grain morphology and size, preferred orientation, and grain boundary feature distribution of the electrolytic nickel plate in the growth direction, and the microstructure of the nickel plate is observed by SEM. The results show that the nickel crystal grains change from small equiaxed crystal grains to coarse columnar crystals with the size of micro-nano scale as the deposition progresses; the crystal orientation does not have a strong preferred orientation at the beginning of the deposition, and finally changes to the <001> orientation. In the initial stage of deposition, the large-angle grain boundaries accounted for more than 80%; as the deposition progresses, the proportions of large and small grain boundaries vary in different positions of the deposition layer; a large number of adjacent grains in the nickel deposition layer are separated by ∑3, ∑9, ∑27 twin boundaries, and the ∑3 grain boundary frequency reaches more than 65%. The nickel deposition layer formed on the different surfaces of the starting sheet grows in different ways. The surface of the fine grains grows in the nucleation and growth way, and the nickel atoms on the free-growing surface are directly incorporated into the crystal lattice without undergoing the nucleation process.

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徐仰濤,劉志健,王超.大面積EBSD方法對電解鎳板的研究[J].稀有金屬材料與工程,2021,50(12):4372~4380.[Xu Yangtao, Liu Zhijian, Wang Chao. Research on Industrial Electrolytic Nickel Plate by Large Area EBSD Method[J]. Rare Metal Materials and Engineering,2021,50(12):4372~4380.]
DOI:10.12442/j. issn.1002-185X.20210004

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  • 收稿日期:2021-01-04
  • 最后修改日期:2021-02-05
  • 錄用日期:2021-03-17
  • 在線發(fā)布日期: 2022-01-09
  • 出版日期: 2021-12-24