Thermographic Assessment of the HAZ Properties and Structure of Thermomechanically Treated Steel

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Abstract

Thermomechanically processed steels are materials of great mechanical properties connected with more than good weldability. This mixture makes them interesting for different types of industrial applications. When creating welded joints, a specified amount of heat is introduced into the welding area and a so called heat-affected zone (HAZ) is formed. The key issue is to reduce the width of the HAZ, because properties of the material in the HAZ are worse than in the base material. In the paper, thermographic measurements of HAZ temperatures were presented as a potential tool for quality assuring the welding process in terms of monitoring and control. The main issue solved was the precise temperature measurement in terms of varying emissivity during a welding thermal cycle. A model of emissivity changes was elaborated and successfully applied. Additionally, material in the HAZ was tested to reveal its properties and connect changes of those properties with heating parameters. The obtained results prove that correctly modeled emissivity allows measurement of temperature, which is a valuable tool for welding process monitoring.

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Górka, J., Janicki, D., Fidali, M., & Jamrozik, W. (2017). Thermographic Assessment of the HAZ Properties and Structure of Thermomechanically Treated Steel. International Journal of Thermophysics, 38(12). https://doi.org/10.1007/s10765-017-2320-9

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