Stress concentration in composites laminates

This paper presents the result of a stress analysis conducted on orthotropic composite laminae with multiple holes subjected to static loads. The hole configurations include two circular holes with different radii in a finite-width lamina. Numerical analysis using Boundary Element Method has been pe...

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Main Author: Lau, Cindy Sin Yee
Other Authors: Ang Hock Eng
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2023
Subjects:
Online Access:https://hdl.handle.net/10356/168274
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1682742023-06-10T16:49:58Z Stress concentration in composites laminates Lau, Cindy Sin Yee Ang Hock Eng School of Mechanical and Aerospace Engineering MHEANG@ntu.edu.sg Engineering::Mechanical engineering This paper presents the result of a stress analysis conducted on orthotropic composite laminae with multiple holes subjected to static loads. The hole configurations include two circular holes with different radii in a finite-width lamina. Numerical analysis using Boundary Element Method has been performed on three types of composite laminae: HMS Carbon Epoxy, Kevlar- 49 Epoxy, and Boron Epoxy. The variations of stress concentrations, general stress distributions, and failure stress around the perimeter of the holes for different fibre orientations concerning different geometric parameters are presented in graphical form and discussed. Geometric parameters varied include the relative size of the holes, the distance between the circular holes, and the distance between the hole edges to lamina edges. Compared to isotropic materials, it is observed that the position of failure in an orthotropic lamina does not always coincide with areas of maximum stress concentration. Bachelor of Engineering (Mechanical Engineering) 2023-06-09T11:43:29Z 2023-06-09T11:43:29Z 2023 Final Year Project (FYP) Lau, C. S. Y. (2023). Stress concentration in composites laminates. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/168274 https://hdl.handle.net/10356/168274 en B002 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
Lau, Cindy Sin Yee
Stress concentration in composites laminates
description This paper presents the result of a stress analysis conducted on orthotropic composite laminae with multiple holes subjected to static loads. The hole configurations include two circular holes with different radii in a finite-width lamina. Numerical analysis using Boundary Element Method has been performed on three types of composite laminae: HMS Carbon Epoxy, Kevlar- 49 Epoxy, and Boron Epoxy. The variations of stress concentrations, general stress distributions, and failure stress around the perimeter of the holes for different fibre orientations concerning different geometric parameters are presented in graphical form and discussed. Geometric parameters varied include the relative size of the holes, the distance between the circular holes, and the distance between the hole edges to lamina edges. Compared to isotropic materials, it is observed that the position of failure in an orthotropic lamina does not always coincide with areas of maximum stress concentration.
author2 Ang Hock Eng
author_facet Ang Hock Eng
Lau, Cindy Sin Yee
format Final Year Project
author Lau, Cindy Sin Yee
author_sort Lau, Cindy Sin Yee
title Stress concentration in composites laminates
title_short Stress concentration in composites laminates
title_full Stress concentration in composites laminates
title_fullStr Stress concentration in composites laminates
title_full_unstemmed Stress concentration in composites laminates
title_sort stress concentration in composites laminates
publisher Nanyang Technological University
publishDate 2023
url https://hdl.handle.net/10356/168274
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