Three-Dimensional Viscoelastic Interactions of a Center of Dilatation with a Penny-Shaped Interfacial Crack
This paper presents a three-dimensional viscoelastic model to study the interactions of a penny-shaped interfacial crack and a center of dilatation in the infinite viscoelastic bimaterial, which can model the rock fracture subjected to stress and thermal dilatation during some engineering process. A...
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Published in | Applied Mechanics and Materials Vol. 117-119; pp. 471 - 475 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Zurich
Trans Tech Publications Ltd
01.01.2012
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Subjects | |
Online Access | Get full text |
ISBN | 9783037852804 3037852801 |
ISSN | 1660-9336 1662-7482 1662-7482 |
DOI | 10.4028/www.scientific.net/AMM.117-119.471 |
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Abstract | This paper presents a three-dimensional viscoelastic model to study the interactions of a penny-shaped interfacial crack and a center of dilatation in the infinite viscoelastic bimaterial, which can model the rock fracture subjected to stress and thermal dilatation during some engineering process. A distinct issue associated with the present work is the incorporation of viscoelastic behavior of bimaterial. The proposed problem is first transformed into the Laplace space, and the solution in the transform space is obtained by decomposing the original problem into two auxiliary problems: (I) a center of dilatation near a bimaterial interface (no crack); and (II) a penny-shaped interfacial crack subject to internal tractions that cancel out those induced in auxiliary problem (I). The mode I, II and III stress intensity factors (SIFs) in the time domain are obtained with the inverse Laplace transform. |
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AbstractList | This paper presents a three-dimensional viscoelastic model to study the interactions of a penny-shaped interfacial crack and a center of dilatation in the infinite viscoelastic bimaterial, which can model the rock fracture subjected to stress and thermal dilatation during some engineering process. A distinct issue associated with the present work is the incorporation of viscoelastic behavior of bimaterial. The proposed problem is first transformed into the Laplace space, and the solution in the transform space is obtained by decomposing the original problem into two auxiliary problems: (I) a center of dilatation near a bimaterial interface (no crack); and (II) a penny-shaped interfacial crack subject to internal tractions that cancel out those induced in auxiliary problem (I). The mode I, II and III stress intensity factors (SIFs) in the time domain are obtained with the inverse Laplace transform. |
Author | Sun, Yu Zhou Bian, Ya Dong Zhang, Zhong Guo |
Author_xml | – givenname: Ya Dong surname: Bian fullname: Bian, Ya Dong email: mobcoco@sina.com organization: Zhongyuan University of Technology : School of Civil Engineering and Architecture – givenname: Zhong Guo surname: Zhang fullname: Zhang, Zhong Guo email: zzg216123@163.com organization: Zhongyuan University of Technology : School of Civil Engineering and Architecture – givenname: Yu Zhou surname: Sun fullname: Sun, Yu Zhou email: yuzhousun@yahoo.com.cn organization: Zhongyuan University of Technology : School of Civil Engineering and Architecture |
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CitedBy_id | crossref_primary_10_1016_j_pepi_2020_106428 |
Cites_doi | 10.1023/A:1007513607635 10.1098/rspa.1991.0110 10.1201/9781420036114 |
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Copyright | 2012 Trans Tech Publications Ltd Copyright Trans Tech Publications Ltd. Oct 2011 |
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Keywords | Center of Dilatation Stress Intensity Factor (SIF) Viscoelastic Penny-Shaped Crack Facture |
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Title | Three-Dimensional Viscoelastic Interactions of a Center of Dilatation with a Penny-Shaped Interfacial Crack |
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