Effect of overloads on fatigue crack growth in aluminum alloy

The objective of this project is to investigate the fatigue crack growth behavior of 7075-T651 aluminum alloy. In many structural components that experience cyclic stresses, variable amplitude loading is more common than constant amplitude loading. Thus, fatigue tests containing periodic multiply ov...

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Main Author: Khoo, Guo Rui
Other Authors: Li Peifeng
Format: Final Year Project
Language:English
Published: 2015
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Online Access:http://hdl.handle.net/10356/64596
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-645962023-03-04T18:33:20Z Effect of overloads on fatigue crack growth in aluminum alloy Khoo, Guo Rui Li Peifeng School of Mechanical and Aerospace Engineering DRNTU::Engineering::Aeronautical engineering The objective of this project is to investigate the fatigue crack growth behavior of 7075-T651 aluminum alloy. In many structural components that experience cyclic stresses, variable amplitude loading is more common than constant amplitude loading. Thus, fatigue tests containing periodic multiply overloads were carried out. The type of specimen used is middle-tension specimen which was designed according to the ASTM E647 standards. The effect of overload ratio on fatigue crack growth was studied. Optical methods were used to measure and calculate the fatigue crack growth rate under different overload ratios. These fatigue crack growth rates from periodic overloading were compared to constant amplitude loading. All periodic overload tests showed faster crack growth. The crack growth rate further increased when the overload ratio was increased. Microscopic features of the fracture surface such as marker bands and striations were analyzed using a scanning electron microscope. Based on the baseline striations distances found from different loading, it was predicted that the mechanism to cause crack acceleration is strain hardening at crack tip due to the overload cycles. The large ratio of overload cycles to baseline cycles is another factor that contributed to the crack growth acceleration. The stress at failure for different loadings were calculated and found to be consistent at about close to yield stress of the material. Bachelor of Engineering (Aerospace Engineering) 2015-05-28T08:22:11Z 2015-05-28T08:22:11Z 2015 2015 Final Year Project (FYP) http://hdl.handle.net/10356/64596 en Nanyang Technological University 122 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::Aeronautical engineering
spellingShingle DRNTU::Engineering::Aeronautical engineering
Khoo, Guo Rui
Effect of overloads on fatigue crack growth in aluminum alloy
description The objective of this project is to investigate the fatigue crack growth behavior of 7075-T651 aluminum alloy. In many structural components that experience cyclic stresses, variable amplitude loading is more common than constant amplitude loading. Thus, fatigue tests containing periodic multiply overloads were carried out. The type of specimen used is middle-tension specimen which was designed according to the ASTM E647 standards. The effect of overload ratio on fatigue crack growth was studied. Optical methods were used to measure and calculate the fatigue crack growth rate under different overload ratios. These fatigue crack growth rates from periodic overloading were compared to constant amplitude loading. All periodic overload tests showed faster crack growth. The crack growth rate further increased when the overload ratio was increased. Microscopic features of the fracture surface such as marker bands and striations were analyzed using a scanning electron microscope. Based on the baseline striations distances found from different loading, it was predicted that the mechanism to cause crack acceleration is strain hardening at crack tip due to the overload cycles. The large ratio of overload cycles to baseline cycles is another factor that contributed to the crack growth acceleration. The stress at failure for different loadings were calculated and found to be consistent at about close to yield stress of the material.
author2 Li Peifeng
author_facet Li Peifeng
Khoo, Guo Rui
format Final Year Project
author Khoo, Guo Rui
author_sort Khoo, Guo Rui
title Effect of overloads on fatigue crack growth in aluminum alloy
title_short Effect of overloads on fatigue crack growth in aluminum alloy
title_full Effect of overloads on fatigue crack growth in aluminum alloy
title_fullStr Effect of overloads on fatigue crack growth in aluminum alloy
title_full_unstemmed Effect of overloads on fatigue crack growth in aluminum alloy
title_sort effect of overloads on fatigue crack growth in aluminum alloy
publishDate 2015
url http://hdl.handle.net/10356/64596
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