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Updated: May 2, 2026

Subsurface Defect Localization by Structured Heating Using Laser Projected Photothermal Thermography
Published on: May 15, 2017
Use of dynamic electronic speckle pattern interferometry with the Hilbert transform method to investigate thermal
Violeta Dimitrova Madjarova1, Hirofumi Kadono, Satoru Toyooka
1Department of Environmental Science and Human Engineering, Graduate School of Science and Engineering, Saitama University, Japan. vmadjarova@yahoo.com
Abstract:
A dynamic electronic speckle pattern interferometry method is applied to investigate thermal expansion of a joint material (ceramic-stainless steel) as a practical industrial object. The speckle interference signal is considered in the temporal domain and the phase is analyzed by the Hilbert transform method. Errors caused by the bias and modulation variations over the phase values are first examined by numerical simulation. Two experiments are performed with in-plane and out-of-plane sensitive systems to study the 3D deformation field thoroughly. The deformation field showed clearly the difference between the thermal expansions of the stainless steel and ceramic. It was also revealed that the boundary of materials and its vicinity suffer very large thermal strain due to the significantly large difference in the linear coefficient of thermal expansions.

