The present paper demonstrates the applicability of a laser-ultrasonic procedure to improve the performances of train axle ultrasonic inspection. The method exploits an air-coupled ultrasonic probe that detects the ultrasonic waves generated by a high-power pulsed laser. As a result, the measurement chain is completely non-contact, from generation to detection, this making it possible to considerably speed up inspection time and make the set-up more flexible. The main advantage of the technique developed is that it works in thermo-elastic regime and it therefore can be considered as a non-destructive method. The laser-ultrasonic procedure investigated has been applied for the inspection of a real high speed train axle provided by the Ita...
Laser-Air Hybrid Ultrasonic Technique (LAHUT) combines laser generation with air-coupled detection o...
The ever increasing railway transport demand results in higher stress and damages to the train vehic...
Over the years, there is a peak in demand for railroad transportation. The increased usage of high-s...
The present paper demonstrates the applicability of a laser-ultrasonic procedure to improve the perf...
This scientific paper focuses on the application of an advanced non-destructive technique for an eff...
The integrity of the wheel is very important for the safety of railway. In this paper a laser ultras...
Passengers’ safety and in-service life of wheelset axles play an important role in railway vehicles....
In the railway field, the safety of passengers and the service life of train components are a crucia...
The objective of the research is to find a methodology to test the train axle for possible surface d...
Laser-Ultrasonics Testing (LUT) is a Non-Destructive Technique (NDT) with good potential for applica...
Train loads and travel speeds have increased over time, requiring more efficient non-destructive ins...
Non-destructive inspection of railroad wheels is performed in maintenance shops, where wheels are re...
The Laser-Air Hybrid Ultrasonic Technique (LAHUT) combines laser generation with air-coupled detecti...
Alahakoon, S ORCiD: 0000-0002-5802-7869; Cole, CR ORCiD: 0000-0001-8840-7136; Spiryagin, M ORCiD: 00...
Laser-Air Hybrid Ultrasonic Technique (LAHUT) combines laser generation with air-coupled detection o...
The ever increasing railway transport demand results in higher stress and damages to the train vehic...
Over the years, there is a peak in demand for railroad transportation. The increased usage of high-s...
The present paper demonstrates the applicability of a laser-ultrasonic procedure to improve the perf...
This scientific paper focuses on the application of an advanced non-destructive technique for an eff...
The integrity of the wheel is very important for the safety of railway. In this paper a laser ultras...
Passengers’ safety and in-service life of wheelset axles play an important role in railway vehicles....
In the railway field, the safety of passengers and the service life of train components are a crucia...
The objective of the research is to find a methodology to test the train axle for possible surface d...
Laser-Ultrasonics Testing (LUT) is a Non-Destructive Technique (NDT) with good potential for applica...
Train loads and travel speeds have increased over time, requiring more efficient non-destructive ins...
Non-destructive inspection of railroad wheels is performed in maintenance shops, where wheels are re...
The Laser-Air Hybrid Ultrasonic Technique (LAHUT) combines laser generation with air-coupled detecti...
Alahakoon, S ORCiD: 0000-0002-5802-7869; Cole, CR ORCiD: 0000-0001-8840-7136; Spiryagin, M ORCiD: 00...
Laser-Air Hybrid Ultrasonic Technique (LAHUT) combines laser generation with air-coupled detection o...
The ever increasing railway transport demand results in higher stress and damages to the train vehic...
Over the years, there is a peak in demand for railroad transportation. The increased usage of high-s...