EventsThe 18th Advanced Infrared Technology and Applications (AITA2025)
Published
This submission belongs to the session Session 4. Session 4 of the event The 18th Advanced Infrared Technology and Applications (AITA2025)
Published date
29 Aug, 2025
Academic Editor
author-avatarHirotsugu Inoue
Citation
Paolo Bison, Active IR thermography for assessing Moisture Content in Porous Building Materials: application of the Thermal Inertia Method, in Proceedings of The 18th Advanced Infrared Technology and Applications (AITA2025), Kobe, Hyogo, 15 September–19 September 2025, MDPI: Basel, Switzerland
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Active IR thermography for assessing Moisture Content in Porous Building Materials: application of the Thermal Inertia Method

1. National Research Council of Italy, Italy
Abstract

Moisture in building materials, particularly in cultural heritage structures, can cause reduction of mechanical strength, decrease of indoor comfort and alteration of thermal properties, aesthetic decay, and even material loss. To non-invasively quantify moisture content in porous materials, Active Infrared Thermography was used. The method was applied in the laboratory on brick sample with different moisture contents, as well as on a reference stone sample with known thermophysical properties, to evaluate the thermal inertia as a function of water content using a comparative approach. A heat flux was applied to the sample using a lamp, and thermal inertia was derived from the absorbed heat, influenced by the material's absorption coefficient. An indirect optical calibration enables estimation of this coefficient without applying high-emissivity or high-absorption coatings, preserving the integrity of sensitive heritage materials.

Keywords
Active IR thermography
Moisture Content
Thermophysical properties
Building materials
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