Investigation of GMR Eddy Current Permanent Magnet System for Carbon Steel Corrosion Identification using IoT Unmanned Aerial Vehicles Drone Platform
Aircraft detection; Antennas; Deterioration; Drones; Eddy current testing; Inspection; Internet of things; Pipeline corrosion; Steel corrosion; Accurate testing; Aerial vehicle; Carbon steel corrosion; Change in thickness; Current test; Eddy-current; Leaking pipes; Magnet systems; Measurement of def...
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Institute of Physics
2023
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my.uniten.dspace-271212023-05-29T17:39:50Z Investigation of GMR Eddy Current Permanent Magnet System for Carbon Steel Corrosion Identification using IoT Unmanned Aerial Vehicles Drone Platform Ali K. Joraimee Mohamad A. Rifai D. Hazim Aizuddin Othman M. Mohamed Ayub M.A. Hussian A.H. Paw K.S. Phing C.C. Yaw C.T. Ding T.J. 36130958600 57883506300 56167376800 57884003900 57883506400 57225082077 57884252700 57884999200 36560884300 57883757200 Aircraft detection; Antennas; Deterioration; Drones; Eddy current testing; Inspection; Internet of things; Pipeline corrosion; Steel corrosion; Accurate testing; Aerial vehicle; Carbon steel corrosion; Change in thickness; Current test; Eddy-current; Leaking pipes; Magnet systems; Measurement of defects; Voltage amplitude; Permanent magnets Eddy current test (ECT) is one of the techniques for accurate testing as well as widely used in the aircraft and nuclear industry. Changes in thickness due to corrosion will affect the measurement of defects on pipes or plates. This will make an irrelevant decision as to whether the defect that occurs on the work piece is the thickness of the paint or corrosion. This problem can lead to the occurrence of leaking pipes, apart from the deterioration of the company's productivity and most importantly endangering the safety of employees. Meanwhile, eddy current testing is one of the methods in NDT used to detect cracks or corrosion on the surface of carbon steel. In this work, GMR Eddy Current sensor is used to measure the corrosion on carbon steel pipes, and a permanent magnet is used to generate the magnetic field for corrosion detection. Also, this system is configured with an IoT Unmanned Aerial Vehicles (UAV) drone platform to facilitate access at different heights during the inspection process. The change of voltage amplitude at the GMR sensor on the test material proves the conditioning of the material either normal or corrosive. The result shows that when corrosion occurs on the pipe, the voltage amplitude increases up to 0.5% higher than normal. Finally, the metal loss is higher when the corrosion area is larger and at the same time it is directly proportional to the voltage amplitude � Published under licence by IOP Publishing Ltd. Final 2023-05-29T09:39:50Z 2023-05-29T09:39:50Z 2022 Conference Paper 10.1088/1742-6596/2319/1/012001 2-s2.0-85137727595 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85137727595&doi=10.1088%2f1742-6596%2f2319%2f1%2f012001&partnerID=40&md5=14685d7381d61e52ad186bcc842b500d https://irepository.uniten.edu.my/handle/123456789/27121 2319 1 12001 All Open Access, Gold Institute of Physics Scopus |
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Aircraft detection; Antennas; Deterioration; Drones; Eddy current testing; Inspection; Internet of things; Pipeline corrosion; Steel corrosion; Accurate testing; Aerial vehicle; Carbon steel corrosion; Change in thickness; Current test; Eddy-current; Leaking pipes; Magnet systems; Measurement of defects; Voltage amplitude; Permanent magnets |
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36130958600 |
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36130958600 Ali K. Joraimee Mohamad A. Rifai D. Hazim Aizuddin Othman M. Mohamed Ayub M.A. Hussian A.H. Paw K.S. Phing C.C. Yaw C.T. Ding T.J. |
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Conference Paper |
author |
Ali K. Joraimee Mohamad A. Rifai D. Hazim Aizuddin Othman M. Mohamed Ayub M.A. Hussian A.H. Paw K.S. Phing C.C. Yaw C.T. Ding T.J. |
spellingShingle |
Ali K. Joraimee Mohamad A. Rifai D. Hazim Aizuddin Othman M. Mohamed Ayub M.A. Hussian A.H. Paw K.S. Phing C.C. Yaw C.T. Ding T.J. Investigation of GMR Eddy Current Permanent Magnet System for Carbon Steel Corrosion Identification using IoT Unmanned Aerial Vehicles Drone Platform |
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Ali K. |
title |
Investigation of GMR Eddy Current Permanent Magnet System for Carbon Steel Corrosion Identification using IoT Unmanned Aerial Vehicles Drone Platform |
title_short |
Investigation of GMR Eddy Current Permanent Magnet System for Carbon Steel Corrosion Identification using IoT Unmanned Aerial Vehicles Drone Platform |
title_full |
Investigation of GMR Eddy Current Permanent Magnet System for Carbon Steel Corrosion Identification using IoT Unmanned Aerial Vehicles Drone Platform |
title_fullStr |
Investigation of GMR Eddy Current Permanent Magnet System for Carbon Steel Corrosion Identification using IoT Unmanned Aerial Vehicles Drone Platform |
title_full_unstemmed |
Investigation of GMR Eddy Current Permanent Magnet System for Carbon Steel Corrosion Identification using IoT Unmanned Aerial Vehicles Drone Platform |
title_sort |
investigation of gmr eddy current permanent magnet system for carbon steel corrosion identification using iot unmanned aerial vehicles drone platform |
publisher |
Institute of Physics |
publishDate |
2023 |
_version_ |
1806423429282267136 |
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13.211869 |