The thermally induced interfacial behavior of a thin two-dimensional decagonal quasicrystal film

In this paper, the interfacial behavior of a thin two-dimensional decagonal quasicrystal (QC) film bonded on an elastic substrate is investigated due to a material mismatch strain under thermal variation. The non-slipping contact condition is assumed at interface. The Fourier transform technique is...

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Main Authors: Dang, H., Qi, D., Zhao, M., Fan, C., Lu, Chunsheng
Format: Journal Article
Published: 2024
Online Access:http://hdl.handle.net/20.500.11937/95907
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author Dang, H.
Qi, D.
Zhao, M.
Fan, C.
Lu, Chunsheng
author_facet Dang, H.
Qi, D.
Zhao, M.
Fan, C.
Lu, Chunsheng
author_sort Dang, H.
building Curtin Institutional Repository
collection Online Access
description In this paper, the interfacial behavior of a thin two-dimensional decagonal quasicrystal (QC) film bonded on an elastic substrate is investigated due to a material mismatch strain under thermal variation. The non-slipping contact condition is assumed at interface. The Fourier transform technique is used to transfer the problem as an integral equation in terms of the phonon interfacial shear stress, which can be numerically solved by introducing the series expansion of Chebyshev polynomials. The expressions are explicitly presented for the phonon interfacial shear and internal normal stresses, the horizontal displacement of QC film, and the stress intensity factors. In the numerical calculation, the effects of material mismatch, the geometry of QC film, and temperature variation on the stresses, displacement and stress intensity factors are briefly discussed. It is expected that the results will be helpful to the design and safety assessment of a QC film/substrate system in engineering applications.
first_indexed 2025-11-14T11:45:05Z
format Journal Article
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T11:45:05Z
publishDate 2024
recordtype eprints
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spelling curtin-20.500.11937-959072024-10-25T05:47:53Z The thermally induced interfacial behavior of a thin two-dimensional decagonal quasicrystal film Dang, H. Qi, D. Zhao, M. Fan, C. Lu, Chunsheng In this paper, the interfacial behavior of a thin two-dimensional decagonal quasicrystal (QC) film bonded on an elastic substrate is investigated due to a material mismatch strain under thermal variation. The non-slipping contact condition is assumed at interface. The Fourier transform technique is used to transfer the problem as an integral equation in terms of the phonon interfacial shear stress, which can be numerically solved by introducing the series expansion of Chebyshev polynomials. The expressions are explicitly presented for the phonon interfacial shear and internal normal stresses, the horizontal displacement of QC film, and the stress intensity factors. In the numerical calculation, the effects of material mismatch, the geometry of QC film, and temperature variation on the stresses, displacement and stress intensity factors are briefly discussed. It is expected that the results will be helpful to the design and safety assessment of a QC film/substrate system in engineering applications. 2024 Journal Article http://hdl.handle.net/20.500.11937/95907 10.1007/s10704-023-00698-8 restricted
spellingShingle Dang, H.
Qi, D.
Zhao, M.
Fan, C.
Lu, Chunsheng
The thermally induced interfacial behavior of a thin two-dimensional decagonal quasicrystal film
title The thermally induced interfacial behavior of a thin two-dimensional decagonal quasicrystal film
title_full The thermally induced interfacial behavior of a thin two-dimensional decagonal quasicrystal film
title_fullStr The thermally induced interfacial behavior of a thin two-dimensional decagonal quasicrystal film
title_full_unstemmed The thermally induced interfacial behavior of a thin two-dimensional decagonal quasicrystal film
title_short The thermally induced interfacial behavior of a thin two-dimensional decagonal quasicrystal film
title_sort thermally induced interfacial behavior of a thin two-dimensional decagonal quasicrystal film
url http://hdl.handle.net/20.500.11937/95907