Prediction of crack propagation path in pin loaded lugs using boundary element method

Pin-loaded attachment lug joints are conventionally and widely used in many engineering industries, for their applications. In the aerospace and marine sector, there is heavy usage of pin-loaded attachment lug joints. They are used in general mechanical assemblies to connect major structural compone...

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Main Author: Seet, Raymond Chun Hao
Other Authors: Ang Hock Eng
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2021
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Online Access:https://hdl.handle.net/10356/149451
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1494512021-05-23T14:10:33Z Prediction of crack propagation path in pin loaded lugs using boundary element method Seet, Raymond Chun Hao Ang Hock Eng School of Mechanical and Aerospace Engineering MHEANG@ntu.edu.sg Engineering::Mechanical engineering Pin-loaded attachment lug joints are conventionally and widely used in many engineering industries, for their applications. In the aerospace and marine sector, there is heavy usage of pin-loaded attachment lug joints. They are used in general mechanical assemblies to connect major structural components and linkage mechanisms. In these components, cracks are often found at the edge of the pinholes because of high stress concentration. It is vital to understand & evaluate the fracture mechanics of these lug joints with cracks present. This is to detect any early signs of failure to prevent cataclysmal failure from taking place. Stress (stress concentration factor) and fracture (stress intensity factor) analysis are needed to predict the crack propagation path of pin-loaded attachment lug joints. In this report, Boundary Element Method (BEM) is utilized to carry out the investigation. Various parameter conditions such as the geometry of the lug (straight and tapered), loading orientations, outer-to-inner radius ratio of the lugs, and differing crack length sizes were analyzed on the pin-loaded attachment lug. The analysis showed that tapering of lugs and larger outer-to-inner radius ratio of the lugs were essential to slow down crack initiation and propagation. Loading orientations also played an important role in determining the occurrence of cracks. Bachelor of Engineering (Mechanical Engineering) 2021-05-23T14:10:33Z 2021-05-23T14:10:33Z 2021 Final Year Project (FYP) Seet, R. C. H. (2021). Prediction of crack propagation path in pin loaded lugs using boundary element method. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/149451 https://hdl.handle.net/10356/149451 en B021 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
Seet, Raymond Chun Hao
Prediction of crack propagation path in pin loaded lugs using boundary element method
description Pin-loaded attachment lug joints are conventionally and widely used in many engineering industries, for their applications. In the aerospace and marine sector, there is heavy usage of pin-loaded attachment lug joints. They are used in general mechanical assemblies to connect major structural components and linkage mechanisms. In these components, cracks are often found at the edge of the pinholes because of high stress concentration. It is vital to understand & evaluate the fracture mechanics of these lug joints with cracks present. This is to detect any early signs of failure to prevent cataclysmal failure from taking place. Stress (stress concentration factor) and fracture (stress intensity factor) analysis are needed to predict the crack propagation path of pin-loaded attachment lug joints. In this report, Boundary Element Method (BEM) is utilized to carry out the investigation. Various parameter conditions such as the geometry of the lug (straight and tapered), loading orientations, outer-to-inner radius ratio of the lugs, and differing crack length sizes were analyzed on the pin-loaded attachment lug. The analysis showed that tapering of lugs and larger outer-to-inner radius ratio of the lugs were essential to slow down crack initiation and propagation. Loading orientations also played an important role in determining the occurrence of cracks.
author2 Ang Hock Eng
author_facet Ang Hock Eng
Seet, Raymond Chun Hao
format Final Year Project
author Seet, Raymond Chun Hao
author_sort Seet, Raymond Chun Hao
title Prediction of crack propagation path in pin loaded lugs using boundary element method
title_short Prediction of crack propagation path in pin loaded lugs using boundary element method
title_full Prediction of crack propagation path in pin loaded lugs using boundary element method
title_fullStr Prediction of crack propagation path in pin loaded lugs using boundary element method
title_full_unstemmed Prediction of crack propagation path in pin loaded lugs using boundary element method
title_sort prediction of crack propagation path in pin loaded lugs using boundary element method
publisher Nanyang Technological University
publishDate 2021
url https://hdl.handle.net/10356/149451
_version_ 1701270497160855552