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Article

A New Insight on Phased Array Ultrasound Inspection in MIG/MAG Welding

1
Applied Physics Department, University of Cadiz, CASEM, Avda. Rep. Sah. s/n, 11510 Puerto Real, Cadiz, Spain
2
Ship Construction Department, University of Cadiz, CASEM, Avda. Rep. Sah. s/n, 11510 Puerto Real, Cadiz, Spain
3
InnerSpec, C. Sanglas, 13, 28890 Loeches, Madrid, Spain
*
Author to whom correspondence should be addressed.
Materials 2022, 15(8), 2793; https://doi.org/10.3390/ma15082793
Submission received: 4 March 2022 / Revised: 28 March 2022 / Accepted: 7 April 2022 / Published: 11 April 2022
(This article belongs to the Topic Metallurgical and Materials Engineering)

Abstract

Weldment inspection is a critical process in the metal industry. It is first conducted visually, then manually and finally using instrumental techniques such as ultrasound. We made one hundred metal inert/active gas (MIG/MAG) weldments on plates of naval steel S275JR+N with no defects, and inducing pores, slag intrusion and cracks. With the objective of the three-dimensional reconstruction of the welding defects, phased array ultrasound inspections were carried out. Error-free weldment probes were used to provide the noise level. The results can be summarized as follows. (i) The top view obtained from the phased array provided no conclusive information about the welding defects. The values of the echo amplitudes were about 70 mV for pores and cracks, and greater than 150 mV for slag intrusion, all of which showed great variability. (ii) The sectional data did not lie at the same depths and they needed to be interpolated. (iii) The interpolated sectional views, or C-scans, allowed the computation of top views at any depth, as well as the three-dimensional reconstruction of the defects. (iv) The use of the simplest tool, consisting of the frequency histogram and its statistical moments, was sufficient to classify the defects. The mean echo amplitudes were 33 mV for pores, 72.16 mV for slag intrusion and 43.19 mV for cracks, with standard deviations of 8.84 mV, 24.64 mV and 12.39 mV, respectively. These findings represent the first step in the automatic classification of welding defects.
Keywords: MIG/MAG welding; ultrasound inspection; phased array; digital images MIG/MAG welding; ultrasound inspection; phased array; digital images

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MDPI and ACS Style

Alonso, J.; Pavón, S.; Vidal, J.; Perdigones, J.; Carpena, I. A New Insight on Phased Array Ultrasound Inspection in MIG/MAG Welding. Materials 2022, 15, 2793. https://doi.org/10.3390/ma15082793

AMA Style

Alonso J, Pavón S, Vidal J, Perdigones J, Carpena I. A New Insight on Phased Array Ultrasound Inspection in MIG/MAG Welding. Materials. 2022; 15(8):2793. https://doi.org/10.3390/ma15082793

Chicago/Turabian Style

Alonso, José, Santiago Pavón, Juan Vidal, José Perdigones, and Isaac Carpena. 2022. "A New Insight on Phased Array Ultrasound Inspection in MIG/MAG Welding" Materials 15, no. 8: 2793. https://doi.org/10.3390/ma15082793

APA Style

Alonso, J., Pavón, S., Vidal, J., Perdigones, J., & Carpena, I. (2022). A New Insight on Phased Array Ultrasound Inspection in MIG/MAG Welding. Materials, 15(8), 2793. https://doi.org/10.3390/ma15082793

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