Boundary element analysis of interactions of a bi-material interface crack with inclusions

This project will investigate the interactions between a circular hole/inclusion and an interface crack in a bi-material plate with negligible thickness (plane stress condition) subjected to remote uniaxial tensile stresses. Stresses acting in the perpendicular direction are considered only. A...

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Main Author: Niew, Kheng Peng
Other Authors: Ang Hock Eng
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2020
Subjects:
Online Access:https://hdl.handle.net/10356/142056
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1420562023-03-04T19:46:22Z Boundary element analysis of interactions of a bi-material interface crack with inclusions Niew, Kheng Peng Ang Hock Eng School of Mechanical and Aerospace Engineering MHEANG@ntu.edu.sg Engineering::Mechanical engineering This project will investigate the interactions between a circular hole/inclusion and an interface crack in a bi-material plate with negligible thickness (plane stress condition) subjected to remote uniaxial tensile stresses. Stresses acting in the perpendicular direction are considered only. An analysis on the stress intensity factors (SIF) at the crack tips is performed using the Boundary Element Method (BEM) in the multi-domain context. Quadratic quarter-point crack tip elements are employed as a solution to stress singularities. It is believed that the interaction can have significant influences on the SIF at the crack tips, with either enhancement or shielding effects. The extent of influence varies depending on parameters such as relative location of the circular hole/inclusion, its geometry and the relative elastic properties of the bi-material plate. Bachelor of Engineering (Mechanical Engineering) 2020-06-15T06:12:49Z 2020-06-15T06:12:49Z 2020 Final Year Project (FYP) https://hdl.handle.net/10356/142056 en B101 application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Mechanical engineering
spellingShingle Engineering::Mechanical engineering
Niew, Kheng Peng
Boundary element analysis of interactions of a bi-material interface crack with inclusions
description This project will investigate the interactions between a circular hole/inclusion and an interface crack in a bi-material plate with negligible thickness (plane stress condition) subjected to remote uniaxial tensile stresses. Stresses acting in the perpendicular direction are considered only. An analysis on the stress intensity factors (SIF) at the crack tips is performed using the Boundary Element Method (BEM) in the multi-domain context. Quadratic quarter-point crack tip elements are employed as a solution to stress singularities. It is believed that the interaction can have significant influences on the SIF at the crack tips, with either enhancement or shielding effects. The extent of influence varies depending on parameters such as relative location of the circular hole/inclusion, its geometry and the relative elastic properties of the bi-material plate.
author2 Ang Hock Eng
author_facet Ang Hock Eng
Niew, Kheng Peng
format Final Year Project
author Niew, Kheng Peng
author_sort Niew, Kheng Peng
title Boundary element analysis of interactions of a bi-material interface crack with inclusions
title_short Boundary element analysis of interactions of a bi-material interface crack with inclusions
title_full Boundary element analysis of interactions of a bi-material interface crack with inclusions
title_fullStr Boundary element analysis of interactions of a bi-material interface crack with inclusions
title_full_unstemmed Boundary element analysis of interactions of a bi-material interface crack with inclusions
title_sort boundary element analysis of interactions of a bi-material interface crack with inclusions
publisher Nanyang Technological University
publishDate 2020
url https://hdl.handle.net/10356/142056
_version_ 1759856167985610752