2013
DOI: 10.1016/j.electacta.2013.07.225
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Behavior of Fe/nano-Si particles composite electrodeposition with a vertical electrode system in a static parallel magnetic field

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Cited by 36 publications
(13 citation statements)
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“…At present the mass production of the 6.5 wt.%Si steel sheets by cold rolling is almost impossible due to the presence of different ordered phases like B2 (FeSi) and D0 3 (Fe 3 Si), and manufacture even by hot rolling becomes difficult when the Si content exceeds 4 wt.% [14]. To solve the problem about the strong brittle characteristic of the 6.5 wt.% silicon steels, many kinds of methods such as chemical vapor deposition, powder metallurgy and composite electro-deposition have been considered [15,10]. It is the key point for all these methods to realize and control the interdiffusion process of Fe-Si.…”
Section: Introductionmentioning
confidence: 99%
“…At present the mass production of the 6.5 wt.%Si steel sheets by cold rolling is almost impossible due to the presence of different ordered phases like B2 (FeSi) and D0 3 (Fe 3 Si), and manufacture even by hot rolling becomes difficult when the Si content exceeds 4 wt.% [14]. To solve the problem about the strong brittle characteristic of the 6.5 wt.% silicon steels, many kinds of methods such as chemical vapor deposition, powder metallurgy and composite electro-deposition have been considered [15,10]. It is the key point for all these methods to realize and control the interdiffusion process of Fe-Si.…”
Section: Introductionmentioning
confidence: 99%
“…At the same time, upward natural convection also can affect the deposition process [19]. Zhou et al [20] electroplated iron with nano-Si particles in a vertical electrode system under a parallel magnetic field and observed that the Si particles distributed on the coating surface in a striped pattern under the interaction of the MHD effect and natural convection. Unfortunately, the literature contains few accounts related to electrodeposition of iron with silicon under a magnetic field.…”
Section: Introductionmentioning
confidence: 99%
“…The role of parallel magnetic elds in the electrodeposition process is to form a regular pattern of Ni particle distribution on the substrate (Yamada and Asai, 2005). Thus the parallel magnetic eld can also a ect current e ciency, particle content of the coating, surface morphology, and the properties of the Ni coating (Zhou et al, 2013;Fattahi and Bahrololoom, 2015), increasing the mass transfer of metal ions signi cantly. The use of parallel elds is to magnetize electrolyte solutions.…”
Section: Introductionmentioning
confidence: 99%