Elastic and plastic stress analysis of an interface crack between two dissimilar layers

In the present paper, the mixed-mode Dugdale model is applied to investigate the plastic zone size and the crack tip opening displacement of an interface crack between two dissimilar layers. In the analysis, both normal and shear stresses are assumed to exist in the plastic zones and satisfy the Von...

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Main Authors: Zhuang, J., Tan, S. K., Xiao, Zhong Min., Yi, Dake.
Other Authors: School of Civil and Environmental Engineering
Format: Article
Language:English
Published: 2013
Online Access:https://hdl.handle.net/10356/85443
http://hdl.handle.net/10220/12355
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-854432020-03-07T13:19:24Z Elastic and plastic stress analysis of an interface crack between two dissimilar layers Zhuang, J. Tan, S. K. Xiao, Zhong Min. Yi, Dake. School of Civil and Environmental Engineering School of Mechanical and Aerospace Engineering In the present paper, the mixed-mode Dugdale model is applied to investigate the plastic zone size and the crack tip opening displacement of an interface crack between two dissimilar layers. In the analysis, both normal and shear stresses are assumed to exist in the plastic zones and satisfy the Von Mises yield criterion. The plastic zone sizes can be determined on condition that the stress intensity factors caused by the stresses in the plastic zones and applied loading are zero. Then, the crack tip opening displacement can be obtained by dislocation theories. In numerical examples, the plane stress condition is considered. The plastic zone size and the crack tip opening displacement of an interface crack between two dissimilar layers under a uniform load are examined. The effects of Dundurs’ parameters and the thickness of materials on the plastic zone size and the crack tip opening displacement are investigated in detail. Numerical results show that in the case of small thickness, the values of the normalized plastic zone size and the normalized crack tip opening displacement decrease with increasing Dundurs’ parameters, α and β, while, in the case of infinite thickness, the value of the normalized plastic zone size is independent of α, and the value is symmetric about the axis on which β = 0. 2013-07-26T03:07:25Z 2019-12-06T16:03:46Z 2013-07-26T03:07:25Z 2019-12-06T16:03:46Z 2012 2012 Journal Article Yi, D. K., Zhuang, J., Xiao, Z. M., & Tan, S. K. (2012). Elastic and plastic stress analysis of an interface crack between two dissimilar layers. Acta Mechanica, 223(11), 2287-2301. https://hdl.handle.net/10356/85443 http://hdl.handle.net/10220/12355 10.1007/s00707-012-0698-9 en Acta mechanica © 2012 Springer-Verlag.
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
description In the present paper, the mixed-mode Dugdale model is applied to investigate the plastic zone size and the crack tip opening displacement of an interface crack between two dissimilar layers. In the analysis, both normal and shear stresses are assumed to exist in the plastic zones and satisfy the Von Mises yield criterion. The plastic zone sizes can be determined on condition that the stress intensity factors caused by the stresses in the plastic zones and applied loading are zero. Then, the crack tip opening displacement can be obtained by dislocation theories. In numerical examples, the plane stress condition is considered. The plastic zone size and the crack tip opening displacement of an interface crack between two dissimilar layers under a uniform load are examined. The effects of Dundurs’ parameters and the thickness of materials on the plastic zone size and the crack tip opening displacement are investigated in detail. Numerical results show that in the case of small thickness, the values of the normalized plastic zone size and the normalized crack tip opening displacement decrease with increasing Dundurs’ parameters, α and β, while, in the case of infinite thickness, the value of the normalized plastic zone size is independent of α, and the value is symmetric about the axis on which β = 0.
author2 School of Civil and Environmental Engineering
author_facet School of Civil and Environmental Engineering
Zhuang, J.
Tan, S. K.
Xiao, Zhong Min.
Yi, Dake.
format Article
author Zhuang, J.
Tan, S. K.
Xiao, Zhong Min.
Yi, Dake.
spellingShingle Zhuang, J.
Tan, S. K.
Xiao, Zhong Min.
Yi, Dake.
Elastic and plastic stress analysis of an interface crack between two dissimilar layers
author_sort Zhuang, J.
title Elastic and plastic stress analysis of an interface crack between two dissimilar layers
title_short Elastic and plastic stress analysis of an interface crack between two dissimilar layers
title_full Elastic and plastic stress analysis of an interface crack between two dissimilar layers
title_fullStr Elastic and plastic stress analysis of an interface crack between two dissimilar layers
title_full_unstemmed Elastic and plastic stress analysis of an interface crack between two dissimilar layers
title_sort elastic and plastic stress analysis of an interface crack between two dissimilar layers
publishDate 2013
url https://hdl.handle.net/10356/85443
http://hdl.handle.net/10220/12355
_version_ 1681043779966992384