Analysis of stresses in notched solids under tension and shear

Fracture mechanics is the study of the propagation of cracks in materials. In the framework of linear elastic fracture mechanics, the stress fields and displacement field at the crack tips of notched solids are of concern. Analysing all the three modes of fracture, it is crucial to identify how the...

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Main Author: Kumaran, S
Other Authors: Wu Mao See
Format: Final Year Project
Language:English
Published: 2017
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Online Access:http://hdl.handle.net/10356/72242
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-722422023-03-04T18:39:04Z Analysis of stresses in notched solids under tension and shear Kumaran, S, Wu Mao See School of Mechanical and Aerospace Engineering DRNTU::Engineering::Mechanical engineering Fracture mechanics is the study of the propagation of cracks in materials. In the framework of linear elastic fracture mechanics, the stress fields and displacement field at the crack tips of notched solids are of concern. Analysing all the three modes of fracture, it is crucial to identify how the stress fields and displacement field varies. Following that, spotting the maximum stress and displacement along the radial coordinate could be vital as well. This study can also then be used for any linear elastic material (first order). One such example is gels usage for tissue engineering. The motivation of this study is to identify the stress fields and displacement field patterns to observe the points along the radial coordinate of a notch crack. Since the governing equations are highly non-linear and are very difficult to solve analytically or even numerically, a computational software, Wolfram Mathematica, was employed to generate graphs and thus aid in the analysis. This report studies the 3 types of stress fields for Modes I and II respectively. They are namely, , and which are the polar stress components. As for Mode III, the report studies and which are the shear stresses in the radial and circumferential directions respectively. Also for Mode III, the displacement field, , is analysed. Results from the simulations will be discussed in this report and recommendations for future works will be advised according to the results obtained. Bachelor of Engineering (Mechanical Engineering) 2017-05-30T08:37:25Z 2017-05-30T08:37:25Z 2017 Final Year Project (FYP) http://hdl.handle.net/10356/72242 en Nanyang Technological University 61 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Mechanical engineering
spellingShingle DRNTU::Engineering::Mechanical engineering
Kumaran, S,
Analysis of stresses in notched solids under tension and shear
description Fracture mechanics is the study of the propagation of cracks in materials. In the framework of linear elastic fracture mechanics, the stress fields and displacement field at the crack tips of notched solids are of concern. Analysing all the three modes of fracture, it is crucial to identify how the stress fields and displacement field varies. Following that, spotting the maximum stress and displacement along the radial coordinate could be vital as well. This study can also then be used for any linear elastic material (first order). One such example is gels usage for tissue engineering. The motivation of this study is to identify the stress fields and displacement field patterns to observe the points along the radial coordinate of a notch crack. Since the governing equations are highly non-linear and are very difficult to solve analytically or even numerically, a computational software, Wolfram Mathematica, was employed to generate graphs and thus aid in the analysis. This report studies the 3 types of stress fields for Modes I and II respectively. They are namely, , and which are the polar stress components. As for Mode III, the report studies and which are the shear stresses in the radial and circumferential directions respectively. Also for Mode III, the displacement field, , is analysed. Results from the simulations will be discussed in this report and recommendations for future works will be advised according to the results obtained.
author2 Wu Mao See
author_facet Wu Mao See
Kumaran, S,
format Final Year Project
author Kumaran, S,
author_sort Kumaran, S,
title Analysis of stresses in notched solids under tension and shear
title_short Analysis of stresses in notched solids under tension and shear
title_full Analysis of stresses in notched solids under tension and shear
title_fullStr Analysis of stresses in notched solids under tension and shear
title_full_unstemmed Analysis of stresses in notched solids under tension and shear
title_sort analysis of stresses in notched solids under tension and shear
publishDate 2017
url http://hdl.handle.net/10356/72242
_version_ 1759853129502818304