The effective knowledge of emissivity is pivotal to obtain reliable temperature measurements through non-contact techniques like pyrometry and thermal imaging. This is fundamental in high-temperature applications since material emissivity strongly depends on temperature conditions. Given the recent attention in high-temperature applications, especially for replacing fossil-fuel-dependent heating with greener solutions in energy-intensive processes, renewed interest in characterizing materials radiant properties rose. This work presents a measurement procedure for characterizing the total emissivity of high-emissivity materials exploiting microwaves for heating the test material. The procedure grounds on a sequential approach, using a reference material of known emissivity (e.g., high-emissivity coating, already characterized sample holder, etc.) to derive the target material total emissivity. Uncertainty analysis is performed to provide a metrological characterization of the approach. The procedure is validated on target materials of known emissivity, focusing on high-emissivity materials commonly employed in microwave heating processes. Results are compatible with reference literature and material datasheets, demonstrating the validity of the proposed approach.

A Measurement Approach for Characterizing Temperature-Related Emissivity Variability in High-Emissivity Materials

Cosoli G.
;
2025-01-01

Abstract

The effective knowledge of emissivity is pivotal to obtain reliable temperature measurements through non-contact techniques like pyrometry and thermal imaging. This is fundamental in high-temperature applications since material emissivity strongly depends on temperature conditions. Given the recent attention in high-temperature applications, especially for replacing fossil-fuel-dependent heating with greener solutions in energy-intensive processes, renewed interest in characterizing materials radiant properties rose. This work presents a measurement procedure for characterizing the total emissivity of high-emissivity materials exploiting microwaves for heating the test material. The procedure grounds on a sequential approach, using a reference material of known emissivity (e.g., high-emissivity coating, already characterized sample holder, etc.) to derive the target material total emissivity. Uncertainty analysis is performed to provide a metrological characterization of the approach. The procedure is validated on target materials of known emissivity, focusing on high-emissivity materials commonly employed in microwave heating processes. Results are compatible with reference literature and material datasheets, demonstrating the validity of the proposed approach.
2025
Inglese
25
2
emissivity; high-emissivity materials; material characterization; microwave; uncertainty analysis
6
info:eu-repo/semantics/article
262
Cosoli, G.; Chiariotti, P.; Garcia-Banos, B.; Pandarese, G.; Penaranda-Foix, F. L.; Revel, G. M.
1 Contributo su Rivista::1.1 Articolo in rivista
none
   Development of an Efficient Microwave System for Material Transformation in  energy INtensive processes for an improved Yield
   DESTINY
   European Commission
   Horizon 2020 Framework Programme
   820783
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11389/65917
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