材料科学技术(英文版)2022,Vol.106Issue(11) :41-48.

Inhomogeneous dealloying kinetics along grain boundaries during liquid metal dealloying

S.-H.Joo Y.B.Jeong T.Wada I.V.Okulov H.Kato
材料科学技术(英文版)2022,Vol.106Issue(11) :41-48.

Inhomogeneous dealloying kinetics along grain boundaries during liquid metal dealloying

S.-H.Joo 1Y.B.Jeong 2T.Wada 2I.V.Okulov 3H.Kato2
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作者信息

  • 1. Department of Materials Science and Engineering,Dankook University,119 Dandae-ro,Cheonan 31116,Korea;Institute for Materials Research,Tohoku University,Katahira 2-1-1,Sendai 980-8577,Japan
  • 2. Institute for Materials Research,Tohoku University,Katahira 2-1-1,Sendai 980-8577,Japan
  • 3. Institute for Materials Research,Tohoku University,Katahira 2-1-1,Sendai 980-8577,Japan;Institute of Natural Sciences and Mathematics,Ural Federal University,620000 Ekaterinburg,Russia;Faculty of Production Engineering,University of Bremen,Badgasteiner Str.1,28359 Bremen,Germany;Leibniz Institute for Materials Engineering-IWT,Badgasteiner Str.3,28359 Bremen,Germany
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Abstract

In this study,the inhomogeneous dealloying phenomenon during the liquid metal dealloying(LMD)was investigated using Fe50Ni50+Mg and(FeCo)50Ni50+Mg systems.For the Fe50Ni50+Mg system,the inhomo-geneous dealloying and wetting of Mg melt occurred along triple junction(TJ)and grain boundary(GB).Temperature increase enhances the inhomogeneous dealloying kinetics and leads to the formation of the plate-shaped abnormal ligaments at the GB region.The energy banlance between a GB energy(γGB)and solid-liquid interface energies(γsl)is the key factor governing the inhomogeneous dealloying and wetting.Particularly,the low-energy twin boundaries were unaffected by the inhomogeneous dealloying.Therefore,precursor microstructure is an important factor determining the final morphology of dealloyed material as well as its physical properties.In the case of the(FeCo)50Ni50 precursor,all TJ and GB were stable against the preferred penetration of Mg melt from 600℃to 800℃.It was concluded that a minor addition of alloying elements(V or Cr)changes GB characteristics as well as γsl of the precursor alloy.Consequently,this significantly influences dealloying mechanisms and final morphology of the dealloyed material.The current findings demonstrate the importance of GB engineering in the precursor materials for the technological application of liquid metal dealloying for the synthesis of advanced structural and functional materials.

Key words

Liquid metal dealloying/Inhomogeneous dealloying/Dealloying mechanism/Abnormal ligament/Porous material

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基金项目

National Research Foundation of KoreaNRF)grant funded by the Korea government(NRF-2021R1C1C1007645)

International Collaboration Center,Institute for Materials Research ICC-IMR()

Tohoku University,Japan and the German Science Foundation under the Leibniz Program(MA3333/13-1)

出版年

2022
材料科学技术(英文版)
中国金属学会 中国材料研究学会 中国科学院金属研究所

材料科学技术(英文版)

CSTPCDCSCDSCI
影响因子:0.657
ISSN:1005-0302
参考文献量41
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