Stress and fracture analysis of straight attachment lugs using boundary element method
Boundary Element Method (BEM) was used to carry out stress and fractures mechanics analysis for a pin loaded straight attachment lug. The effect of geometric parameter variations such as the outer-to-inner radius ratio and orientation of the loading on the lug were investigated. The location of the...
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sg-ntu-dr.10356-678292023-03-04T18:56:14Z Stress and fracture analysis of straight attachment lugs using boundary element method Yeoh, Kai Hoong Ang Hock Eng School of Mechanical and Aerospace Engineering DRNTU::Engineering Boundary Element Method (BEM) was used to carry out stress and fractures mechanics analysis for a pin loaded straight attachment lug. The effect of geometric parameter variations such as the outer-to-inner radius ratio and orientation of the loading on the lug were investigated. The location of the highest stress concentration factor was noted from the tangential stress distribution along the edge of hole of the lug. The crack was modeled at those critical locations and the stress intensity factor was obtained using BEM. It was noted that the direction of the loading and the outer-to-inner radius ratio has an influence on the locations of the highest stress concentration factor. Bachelor of Engineering (Mechanical Engineering) 2016-05-21T06:46:44Z 2016-05-21T06:46:44Z 2016 Final Year Project (FYP) http://hdl.handle.net/10356/67829 en Nanyang Technological University 77 p. application/pdf |
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DRNTU::Engineering Yeoh, Kai Hoong Stress and fracture analysis of straight attachment lugs using boundary element method |
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Boundary Element Method (BEM) was used to carry out stress and fractures mechanics analysis for a pin loaded straight attachment lug. The effect of geometric parameter variations such as the outer-to-inner radius ratio and orientation of the loading on the lug were investigated. The location of the highest stress concentration factor was noted from the tangential stress distribution along the edge of hole of the lug. The crack was modeled at those critical locations and the stress intensity factor was obtained using BEM. It was noted that the direction of the loading and the outer-to-inner radius ratio has an influence on the locations of the highest stress concentration factor. |
author2 |
Ang Hock Eng |
author_facet |
Ang Hock Eng Yeoh, Kai Hoong |
format |
Final Year Project |
author |
Yeoh, Kai Hoong |
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Yeoh, Kai Hoong |
title |
Stress and fracture analysis of straight attachment lugs using boundary element method |
title_short |
Stress and fracture analysis of straight attachment lugs using boundary element method |
title_full |
Stress and fracture analysis of straight attachment lugs using boundary element method |
title_fullStr |
Stress and fracture analysis of straight attachment lugs using boundary element method |
title_full_unstemmed |
Stress and fracture analysis of straight attachment lugs using boundary element method |
title_sort |
stress and fracture analysis of straight attachment lugs using boundary element method |
publishDate |
2016 |
url |
http://hdl.handle.net/10356/67829 |
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1759855422740627456 |