Effect of electric field direction on the interdiffusion of Ni-Al binary alloys

The effect of electric field direction on atomic diffusion in NiAl binary alloy was investigated using molecular dynamics simulation method. Different interfacial diffusion models for NiAl binary alloy were simulated, and an electric field was applied on the Ni(110)//Al(110) interface diffusion mode...

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Bibliografski detalji
Glavni autori: Wang Shuai, Wang DongJun, Wang ZhiNan
Format: Članak
Jezik:English
Izdano: EDP Sciences 2024-01-01
Serija:MATEC Web of Conferences
Online pristup:https://www.matec-conferences.org/articles/matecconf/pdf/2024/13/matecconf_icmr2024_03006.pdf
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author Wang Shuai
Wang DongJun
Wang ZhiNan
author_facet Wang Shuai
Wang DongJun
Wang ZhiNan
author_sort Wang Shuai
collection DOAJ
description The effect of electric field direction on atomic diffusion in NiAl binary alloy was investigated using molecular dynamics simulation method. Different interfacial diffusion models for NiAl binary alloy were simulated, and an electric field was applied on the Ni(110)//Al(110) interface diffusion model to study the effect of electric field direction on the diffusion behavior of Ni and Al atoms. The results indicated that, due to the difference in activation energies for Ni and Al atom inter-diffusion, applying an electric field in the same direction as the inter-diffusion of Ni atoms facilitates the inter-diffusion of Ni and Al atoms.
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spelling doaj.art-4f95e09ccc8146a1b207f3db8c8dadb12024-08-28T13:57:40ZengEDP SciencesMATEC Web of Conferences2261-236X2024-01-014010300610.1051/matecconf/202440103006matecconf_icmr2024_03006Effect of electric field direction on the interdiffusion of Ni-Al binary alloysWang Shuai0Wang DongJun1Wang ZhiNan2School of Materials Science and Engineering, Harbin Institute of TechnologySchool of Materials Science and Engineering, Harbin Institute of TechnologySchool of Materials Science and Engineering, Harbin Institute of TechnologyThe effect of electric field direction on atomic diffusion in NiAl binary alloy was investigated using molecular dynamics simulation method. Different interfacial diffusion models for NiAl binary alloy were simulated, and an electric field was applied on the Ni(110)//Al(110) interface diffusion model to study the effect of electric field direction on the diffusion behavior of Ni and Al atoms. The results indicated that, due to the difference in activation energies for Ni and Al atom inter-diffusion, applying an electric field in the same direction as the inter-diffusion of Ni atoms facilitates the inter-diffusion of Ni and Al atoms.https://www.matec-conferences.org/articles/matecconf/pdf/2024/13/matecconf_icmr2024_03006.pdf
spellingShingle Wang Shuai
Wang DongJun
Wang ZhiNan
Effect of electric field direction on the interdiffusion of Ni-Al binary alloys
MATEC Web of Conferences
title Effect of electric field direction on the interdiffusion of Ni-Al binary alloys
title_full Effect of electric field direction on the interdiffusion of Ni-Al binary alloys
title_fullStr Effect of electric field direction on the interdiffusion of Ni-Al binary alloys
title_full_unstemmed Effect of electric field direction on the interdiffusion of Ni-Al binary alloys
title_short Effect of electric field direction on the interdiffusion of Ni-Al binary alloys
title_sort effect of electric field direction on the interdiffusion of ni al binary alloys
url https://www.matec-conferences.org/articles/matecconf/pdf/2024/13/matecconf_icmr2024_03006.pdf
work_keys_str_mv AT wangshuai effectofelectricfielddirectionontheinterdiffusionofnialbinaryalloys
AT wangdongjun effectofelectricfielddirectionontheinterdiffusionofnialbinaryalloys
AT wangzhinan effectofelectricfielddirectionontheinterdiffusionofnialbinaryalloys