Determination Overlapping Interface Structure in the ξ´-Al-Ni-Rh Approximant Phase

The structure of the overlapping interface in ξ´-Al-Ni-Rh was determined by calculating the total energy of super lattices containing defect structures using the modified analytic embedded-atom method (MAEAM). The structure analyses indicated that only two equivalent types of interfaces exist, which...

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Main Authors: Yanhui CHEN, Yadi ZHAI, Wenhan ZHANG
Format: Article
Language:English
Published: Kaunas University of Technology 2021-01-01
Series:Medžiagotyra
Subjects:
Online Access:https://matsc.ktu.lt/index.php/MatSc/article/view/24519
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spelling doaj-19210f61689948d4acd25125f27a2c602021-01-22T04:53:01ZengKaunas University of TechnologyMedžiagotyra1392-13202029-72892021-01-01271131710.5755/j02.ms.2451920942Determination Overlapping Interface Structure in the ξ´-Al-Ni-Rh Approximant PhaseYanhui CHENYadi ZHAIWenhan ZHANGThe structure of the overlapping interface in ξ´-Al-Ni-Rh was determined by calculating the total energy of super lattices containing defect structures using the modified analytic embedded-atom method (MAEAM). The structure analyses indicated that only two equivalent types of interfaces exist, which are defined as the PF and PI types. Calculation of the PF- and PI-type super cells indicated that the interface between the close-packed P layer and the slightly puckered I layer has a lower energy and may be a static interface. Although the PI-type overlapping interface may seriously corrupt decagonal cluster columns in the approximant phase, it causes relatively less corruption of the metallic bonds than the PF mode. The total energies of the three types of super lattices caused by different displacement vectors between the two domains found in ξ´-Al-Ni-Rh were also calculated. The domain boundary translated with a vector of r =a + c is the most static state among the three type super lattices from energy perspective.https://matsc.ktu.lt/index.php/MatSc/article/view/24519al-ni-rh approximant phaseinterfacetotal energymaeamdecagonal cluster column
collection DOAJ
language English
format Article
sources DOAJ
author Yanhui CHEN
Yadi ZHAI
Wenhan ZHANG
spellingShingle Yanhui CHEN
Yadi ZHAI
Wenhan ZHANG
Determination Overlapping Interface Structure in the ξ´-Al-Ni-Rh Approximant Phase
Medžiagotyra
al-ni-rh approximant phase
interface
total energy
maeam
decagonal cluster column
author_facet Yanhui CHEN
Yadi ZHAI
Wenhan ZHANG
author_sort Yanhui CHEN
title Determination Overlapping Interface Structure in the ξ´-Al-Ni-Rh Approximant Phase
title_short Determination Overlapping Interface Structure in the ξ´-Al-Ni-Rh Approximant Phase
title_full Determination Overlapping Interface Structure in the ξ´-Al-Ni-Rh Approximant Phase
title_fullStr Determination Overlapping Interface Structure in the ξ´-Al-Ni-Rh Approximant Phase
title_full_unstemmed Determination Overlapping Interface Structure in the ξ´-Al-Ni-Rh Approximant Phase
title_sort determination overlapping interface structure in the ξ´-al-ni-rh approximant phase
publisher Kaunas University of Technology
series Medžiagotyra
issn 1392-1320
2029-7289
publishDate 2021-01-01
description The structure of the overlapping interface in ξ´-Al-Ni-Rh was determined by calculating the total energy of super lattices containing defect structures using the modified analytic embedded-atom method (MAEAM). The structure analyses indicated that only two equivalent types of interfaces exist, which are defined as the PF and PI types. Calculation of the PF- and PI-type super cells indicated that the interface between the close-packed P layer and the slightly puckered I layer has a lower energy and may be a static interface. Although the PI-type overlapping interface may seriously corrupt decagonal cluster columns in the approximant phase, it causes relatively less corruption of the metallic bonds than the PF mode. The total energies of the three types of super lattices caused by different displacement vectors between the two domains found in ξ´-Al-Ni-Rh were also calculated. The domain boundary translated with a vector of r =a + c is the most static state among the three type super lattices from energy perspective.
topic al-ni-rh approximant phase
interface
total energy
maeam
decagonal cluster column
url https://matsc.ktu.lt/index.php/MatSc/article/view/24519
work_keys_str_mv AT yanhuichen determinationoverlappinginterfacestructureinthexalnirhapproximantphase
AT yadizhai determinationoverlappinginterfacestructureinthexalnirhapproximantphase
AT wenhanzhang determinationoverlappinginterfacestructureinthexalnirhapproximantphase
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