Study of rotational defects and failure of plastically deformed nanocrystals

This paper aims to study crack nucleation in nanocrystals due to a twist disclination dipole. Additionally, the critcal twist disclination strength and critical equilibrium crack length upon crack nucleation were also observed. Crack nucleation was predicted by comparing the energy states of uncrack...

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Main Author: Muhammad Irfan Jupri
Other Authors: Wu Mao See
Format: Final Year Project
Language:English
Published: 2019
Subjects:
Online Access:http://hdl.handle.net/10356/78512
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-785122023-03-04T19:03:31Z Study of rotational defects and failure of plastically deformed nanocrystals Muhammad Irfan Jupri Wu Mao See School of Mechanical and Aerospace Engineering DRNTU::Engineering::Mechanical engineering This paper aims to study crack nucleation in nanocrystals due to a twist disclination dipole. Additionally, the critcal twist disclination strength and critical equilibrium crack length upon crack nucleation were also observed. Crack nucleation was predicted by comparing the energy states of uncracked and cracked solids. On the other hand, the critical equilibrium crack length could also be determined. This happens when the equilibrium stable and the equilibrium unstable crack lengths are equal to each other. Computational methods for energy analysis and a Zener crack model were used to conduct this study. According to the energy analysis conducted, cracks can only be nucleated in favourable energy conditions. Furthermore, it was proven in the that both stable and unstable cracks exist. It was hypothesised that crack nucleation, critical twist disclination strength and critical equilibrium crack length are dictated by material, geometrical and loading parameters. The findings of this study suggest that the critical twisting strength decreases with the increasing grain size. On the other hand, the critical equilibrium crack length increases with the grain size. It was also observed that the critical twisting strength increases with the disclination core size. However, the critical equilibrium crack length decreases as the disclination core size increases. It can be argued that the grain size of the crack solid and the disclination core size are inversely proportionate to one another since they have opposing effects on critical twist disclination strength and critical equilibrium crack length. Bachelor of Engineering (Mechanical Engineering) 2019-06-21T01:15:20Z 2019-06-21T01:15:20Z 2019 Final Year Project (FYP) http://hdl.handle.net/10356/78512 en Nanyang Technological University 79 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
Muhammad Irfan Jupri
Study of rotational defects and failure of plastically deformed nanocrystals
description This paper aims to study crack nucleation in nanocrystals due to a twist disclination dipole. Additionally, the critcal twist disclination strength and critical equilibrium crack length upon crack nucleation were also observed. Crack nucleation was predicted by comparing the energy states of uncracked and cracked solids. On the other hand, the critical equilibrium crack length could also be determined. This happens when the equilibrium stable and the equilibrium unstable crack lengths are equal to each other. Computational methods for energy analysis and a Zener crack model were used to conduct this study. According to the energy analysis conducted, cracks can only be nucleated in favourable energy conditions. Furthermore, it was proven in the that both stable and unstable cracks exist. It was hypothesised that crack nucleation, critical twist disclination strength and critical equilibrium crack length are dictated by material, geometrical and loading parameters. The findings of this study suggest that the critical twisting strength decreases with the increasing grain size. On the other hand, the critical equilibrium crack length increases with the grain size. It was also observed that the critical twisting strength increases with the disclination core size. However, the critical equilibrium crack length decreases as the disclination core size increases. It can be argued that the grain size of the crack solid and the disclination core size are inversely proportionate to one another since they have opposing effects on critical twist disclination strength and critical equilibrium crack length.
author2 Wu Mao See
author_facet Wu Mao See
Muhammad Irfan Jupri
format Final Year Project
author Muhammad Irfan Jupri
author_sort Muhammad Irfan Jupri
title Study of rotational defects and failure of plastically deformed nanocrystals
title_short Study of rotational defects and failure of plastically deformed nanocrystals
title_full Study of rotational defects and failure of plastically deformed nanocrystals
title_fullStr Study of rotational defects and failure of plastically deformed nanocrystals
title_full_unstemmed Study of rotational defects and failure of plastically deformed nanocrystals
title_sort study of rotational defects and failure of plastically deformed nanocrystals
publishDate 2019
url http://hdl.handle.net/10356/78512
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