Stress characterisation using lamb waves on nickel alloys
This study investigates the optimum operating frequency for guided waves in characterising stress in Al6061 and IN718. This was performed using a setup that could generate a guided wave of different frequencies within specimens of both materials, while applying varying levels of stress at the same t...
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2020
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sg-ntu-dr.10356-1413882023-03-04T19:44:48Z Stress characterisation using lamb waves on nickel alloys Ng, Jack Zhu Juan Fan Zheng, David School of Mechanical and Aerospace Engineering ZFAN@ntu.edu.sg Engineering::Aeronautical engineering This study investigates the optimum operating frequency for guided waves in characterising stress in Al6061 and IN718. This was performed using a setup that could generate a guided wave of different frequencies within specimens of both materials, while applying varying levels of stress at the same time. From the received waveforms, a change in phase velocity against stress relationship was derived. Simulation models from other studies were also utilised to validate the accuracy of the experimental results. This study finds that for both materials analysed, lower frequencies are preferred for stress characterisation using guided waves, as lower frequencies suffer less from noise effects, with minimal trade-off in the ∆c_p against stress slope. Bachelor of Engineering (Aerospace Engineering) 2020-06-08T04:33:29Z 2020-06-08T04:33:29Z 2020 Final Year Project (FYP) https://hdl.handle.net/10356/141388 en B312 application/pdf Nanyang Technological University |
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Engineering::Aeronautical engineering Ng, Jack Zhu Juan Stress characterisation using lamb waves on nickel alloys |
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This study investigates the optimum operating frequency for guided waves in characterising stress in Al6061 and IN718. This was performed using a setup that could generate a guided wave of different frequencies within specimens of both materials, while applying varying levels of stress at the same time. From the received waveforms, a change in phase velocity against stress relationship was derived. Simulation models from other studies were also utilised to validate the accuracy of the experimental results. This study finds that for both materials analysed, lower frequencies are preferred for stress characterisation using guided waves, as lower frequencies suffer less from noise effects, with minimal trade-off in the ∆c_p against stress slope. |
author2 |
Fan Zheng, David |
author_facet |
Fan Zheng, David Ng, Jack Zhu Juan |
format |
Final Year Project |
author |
Ng, Jack Zhu Juan |
author_sort |
Ng, Jack Zhu Juan |
title |
Stress characterisation using lamb waves on nickel alloys |
title_short |
Stress characterisation using lamb waves on nickel alloys |
title_full |
Stress characterisation using lamb waves on nickel alloys |
title_fullStr |
Stress characterisation using lamb waves on nickel alloys |
title_full_unstemmed |
Stress characterisation using lamb waves on nickel alloys |
title_sort |
stress characterisation using lamb waves on nickel alloys |
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Nanyang Technological University |
publishDate |
2020 |
url |
https://hdl.handle.net/10356/141388 |
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1759853481905094656 |