Autonomous in-process inspection of plasma cutting for nuclear decommissioning using air-coupled ultrasonic A0 Lamb wave
Anderson, James Christian and Galbraith, Walter and MacLeod, Charles and Loukas, Charalampous and Agnew, Keiran and Mohamed, Aasim and Price, Joshua (2026) Autonomous in-process inspection of plasma cutting for nuclear decommissioning using air-coupled ultrasonic A0 Lamb wave. Nuclear Engineering and Design, 457. 115085. ISSN 0029-5493 (https://doi.org/10.1016/j.nucengdes.2026.115085)
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Abstract
During decommissioning, there is a requirement to reduce the physical size of the range of components that are used within nuclear facilities, allowing for their safe recycling or disposal as waste. Laser and plasma cutting systems are routinely used for size reduction tasks within the nuclear decommissioning sector, and within the nuclear industry, are often robotically deployed to remove workers from radioactive environments. However, issues arise where cutting operations fail to completely sever a joint or materials, rendering further challenges related to item movement and storage. This requirement to ensure that cutting operations are fully complete drives research into in-process monitoring that can provide data on the quality of the cut, the veracity, and total severance of structures being decommissioned, such as gloveboxes. This paper introduces a robotically deployed air-coupled ultrasound in-process monitoring system that inspects cut severance during plasma cutting of 3 mm-thick 316 stainless steel plates representative of nuclear glovebox material. In this work, a plasma cutting robot is equipped with non-contact ultrasonic transducers and associated electronics to generate and detect an A0 Lamb wave mode in these metals and provide cut quality monitoring and screening. Experiments demonstrated that fully cut and uncut plate segments, as well as small uncut sections as narrow as 10 mm wide can be successfully detected. The results also show that Lamb waves remain detectable when inspecting cuts that do not fully penetrate the material.
ORCID iDs
Anderson, James Christian, Galbraith, Walter
ORCID: https://orcid.org/0000-0002-5620-7807, MacLeod, Charles
ORCID: https://orcid.org/0000-0003-4364-9769, Loukas, Charalampous, Agnew, Keiran, Mohamed, Aasim
ORCID: https://orcid.org/0009-0002-6102-2716 and Price, Joshua;
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Item type: Article ID code: 96760 Dates: DateEvent1 October 2026Published8 July 2026Published Online27 June 2026AcceptedSubjects: Technology > Electrical engineering. Electronics Nuclear engineering Department: Faculty of Engineering > Electronic and Electrical Engineering
Strategic Research Themes > Advanced Manufacturing and MaterialsDepositing user: Pure Administrator Date deposited: 09 Jul 2026 14:59 Last modified: 06 Sep 2026 00:42 URI: https://strathprints.strath.ac.uk/id/eprint/96760
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