8–12 Sept 2026
Europe/Vienna timezone

Ultrasonic imaging of internal defect incurred by corrosion in structural steel used in lattice tower

FA2026/495
10 Sept 2026, 15:40
20m
Saal 11A (Messe Congress Graz)

Saal 11A

Messe Congress Graz

A13 Physical Acoustics and Ultrasound A13.01 Guided waves for NDT & SHM applications

Speaker

Kim Ming NG (SATIE Lab - CYU)

Description

Electricity transmission towers situated in open environments are continuously exposed to atmospheric and industrial impacts. Corrosion occurs inevitably under the impacts of these external factors. This study discusses the methodology of detecting and quantifying the internal defect created by corrosion using ultrasonic wave technique. Experimental sample was part of an onsite tower and made of painted steel, it has a slide-shaped corrosion defect. Experimental results reveal that wave energy measured in a particular corroded area is at least 10 times higher than that measured in pristine area. Also, a shift in ultrasonic wave vibration to low frequency range is also recorded in that area. Then the corrosion geometry is profiled and imported to a finite element model for further investigation. However, there is no such effect observed from the simulation. This suggests the energy amplifying effect is not caused by the corrosion geometry, rather by the internal feature of the corrosion defect. Further finite element analysis suggests that by analyzing the frequency content of the signals, the size of the defect and its approximate internal features, for example its depth to the surface and its approximate shape can be revealed.

Authors

Kim Ming NG (SATIE Lab - CYU) Loic Martinez (SATIE Lab - CYU) Stéphane Heurtault (Réseau de transport d'électricité) Pascale Prieur (Réseau de transport d'électricité) Stéphane Serfaty (SATIE Lab - CYU) Zoubir Khatir (SATIE Lab - Gustave Eiffel University)

Presentation materials

There are no materials yet.