Probability of detection analysis of round robin test results performed by flash thermography

Author:

Rothbart Nick1,Maierhofer Christiane1,Goldammer Matthias2,Hohlstein Felix3,Koch Joachim4,Kryukov Igor5,Mahler Guido6,Stotter Bernhard7,Walle Günter8,Oswald-Tranta Beate9,Sengebusch Martin10

Affiliation:

1. Federal Institute for Materials Research and Testing (BAM), Berlin, Germany

2. Siemens AG Corporate Technology, München, Germany

3. Block Materialprüfung GmbH, Berlin, Germany

4. edevis GmbH, Stuttgart, Germany

5. Production Technology and Logistics, University of Kassel, Kassel, Germany

6. InfraTec GmbH Infrarotsensorik und Messtechnik, Dresden, Germany

7. Engineering, University of Applied Science Upper Austria, Wels, Austria

8. Fraunhofer Institute for Nondestructive Testing IZFP, Saarbrücken, Germany

9. Institute for Automation, University of Leoben, Leoben, Austria

10. Deutsches Institut für Normung e. V., Berlin, Germany

Funder

Innovations with Norms and Standards (INS 1255) by the German Federal Ministry of Economics and Energy

Publisher

Informa UK Limited

Subject

Electrical and Electronic Engineering,Instrumentation

Reference14 articles.

1. Validation of flash thermography using computed tomography for characterizing inhomogeneities and defects in CFRP structures

2. Review of pulsed thermal NDT: Physical principles, theory and data processing

3. Deutsches Institut für Normung e. V. prEN 16714-1:2014; Non-destructive testing – thermographic testing – part 1: general principles; prEN 16714-2:2014; Non-destructive testing – thermographic testing – part 2: equipment; prEN 16714-3:2014; Non-destructive testing – thermographic testing – part 3: terms and definitions; 2014.

4. Eddy-current induced thermography—probability of detection study of small fatigue cracks in steel, titanium and nickel-based superalloy

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