Influence of illuminance on indication detectability during visual testing

Author:

Blankschän Michel1,Kanzler Daniel2,Bertovic Marija3,Rosenthal Martina3,Liebich Robert4

Affiliation:

1. DGZfP Ausbildung und Training GmbH , Max-Planck-Str. 6, 12489 , Berlin , Germany

2. Applied Validation of NDT , Berlin , Germany

3. 8.4 Acoustic and Electromagnetic Methods , Bundesanstalt für Materialforschung und -prüfung , Berlin , Germany

4. Technische Universität Berlin , Berlin , Germany

Abstract

Abstract Visually detecting irregularities on components is a complex process, influenced by physical, technical, and human factors. Current standards mainly focus on illuminance, demanding highest accuracy for it, without providing scientific justification. In this research, 63 inspectors visually inspected forgings, with and without crack-like indications. The influence of illuminance on probability of detection was investigated. Therefore, illuminance was varied in three steps (200 lx, 350 lx, 500 lx). Human factors (e.g., experience, motivation) were recorded by using questionnaires. The results show no significant difference in probability of detection between the three illuminance levels. Equal probability of detection rates could be achieved at illuminances below and at the required threshold (500 lx). A difference in illuminance was found between the measurement point and the test area of the respective participant. This leads to higher assumed illuminance than present on the component. Compared with the measurement accuracy of the used illuminance meter, none of these deviations could be used to explain the similar results at different illuminance. The fact that illuminance has a significant influence in detecting indications has been disproven for this case. Whether human factors can provide explanation for the results remains unclear. This will be investigated in further research.

Publisher

Walter de Gruyter GmbH

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference26 articles.

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2. A. Çakir, Basis der Festlegung von Beleuchtungsstärkewerten in Beleuchtungsnormen, Berlin, Germay, Ergonomic Institute, 2006.

3. “Licht und Beleuchtung – grundlegende Begriffe und Kriterien für die Festlegung von Anforderungen an die Beleuchtung,” DIN EN 12665:2018, Aug. 2018.

4. “Zerstörungsfreie Prüfung – Sichtprüfung – Allgemeine Grundlagen,” DIN EN 13018:2016, Jun. 2016.

5. H. R. Blackwell, “Contrast tresholds of the human eye,” J. Opt. Soc. Am., vol. 36, no. 11, pp. 624–643, 1946, https://doi.org/10.1364/JOSA.36.000624.

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