A novel automated thickness measurement method and device for nuclear fuel plates

The Nuclear and Energy Research Institute (IPEN-CNEN/SP) currently employs manual external u-shape frame micrometers with non-rotating spindles, and chamfered measuring anvils at 21 pre-defined points to control the thickness of its fuel plates. However, it is acknowledged that this method introduce...

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Veröffentlicht in:Progress in nuclear energy (New series) 2024-10, Vol.175, p.105332, Article 105332
Hauptverfasser: Kobayoshi, Marcelo, Leal Neto, Ricardo Mendes, Urano de Carvalho, Elita Fontenele, Restivo, Thomaz Augusto Guisard, Durazzo, Michelangelo
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Sprache:eng
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Zusammenfassung:The Nuclear and Energy Research Institute (IPEN-CNEN/SP) currently employs manual external u-shape frame micrometers with non-rotating spindles, and chamfered measuring anvils at 21 pre-defined points to control the thickness of its fuel plates. However, it is acknowledged that this method introduces the human element into the measurement process, potentially compromising result accuracy and the integrity of the fuel plates' surfaces. This research introduces a novel thickness measurement method and an accompanying automated device featuring precise movement mechanisms, data capture, transcription, and processing. Our findings emphasize the effectiveness of this new measurement system and the structural integrity of the equipment, highlighting its potential to significantly enhance both the speed and metrological reliability of dimensional control processes for nuclear fuel plates manufactured at IPEN-CNEN/SP. [Display omitted] •Automated thickness measurement method for nuclear fuel plates.•Significant enhancement of both the speed and metrological reliability of dimensional control processes.•An advanced approach for measuring the thickness of fuel plates.•A new precision technique for measuring fuel plate thickness.•Precise movement mechanisms and data capture, transcription, and processing.
ISSN:0149-1970
DOI:10.1016/j.pnucene.2024.105332