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Research Articles

Thermal diffusivity of metals determined by lock-in thermography

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Pages 218-225 | Received 15 Nov 2016, Accepted 10 May 2017, Published online: 06 Jun 2017
 

Abstract

Lock-in infrared thermography is a well-established technique for measuring the thermal diffusivity of materials. A commonly-used method is to analyse the spread of a thermal wave along the surface of a thin sample or a filament, known as the slope method. In this work, an alternative technique is proposed, in which the phase delay of the thermal wave passing through sheets made of different metals is analysed using periodical laser heating. Different lock-in frequencies are used to obtain the frequency-dependent phase behaviour of thermal waves generated by the laser pulses. A subsequent curve fitting provides the coefficients required to determine the thermal diffusivity. To achieve a comparison with ambient conditions, the measurements are also performed in vacuum. A comparison with literature data substantiates that the proposed method is a robust approach for the determination of the thermal diffusivity in applications where the sample thickness exceeds the limits of the slope method.

Notes

No potential conflict of interest was reported by the authors.

Additional information

Funding

The authors would like to thank the ‘Ministerium für Innovation, Wissenschaft und Forschung des Landes Nordrhein-Westfalen’ for its financial support to the Fraunhofer Application Center for Inorganic Phosphors in Soest as well as to the South Westphalia University of Applied Sciences within the FH STRUKTUR 2014 project ‘LED-2020’.

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