@article{cb2265aec58d404c8053d907c0fd836a,
title = "Determination of thermal diffusivity/conductivity of oxide scale formed on steel plate by laser flash method through thermal effusivity measurement by transient hot-strip method",
abstract = "Thermal diffusivity and conductivity were determined for oxide scale formed on steel plate by the laser flash method in combination with thermal effusivity measurement by the transient hot-strip method. The thermal effusivity measurement technique was confirmed by measurement of silica glass, and the value was determined to be 2.52 kJ m-2 s-1/2 K-1 for the oxide scale formed on an ultra-low-carbon steel plate by oxidation in air at 900°C for 3 600 s. Thermal diffusivity measurements were also conducted for 1 mm-thick steel plates oxidized in air at 900°C for 770-3 600 s by the laser flash method. The apparent thermal diffusivity of samples provided the thermal diffusivity of the oxide scale based on three-layered analysis by inputting the measured value of the thermal effusivity. The measured values suggested that no significant boundary resistance exists between the oxide scale and the steel plate. The thermal conductivity and diffusivity of the oxide scale were calculated to be 1.6 W m-1 K-1 and 4.0 × 10-7 m2 s-1, respectively.",
keywords = "Fe1 - xO scale, Oxide scale, Thermal conductivity, Thermal diffusivity, Thermal effusivity",
author = "Rie ENDO and Hiroki HAYASHI and Mu LI and Megumi AKOSHIMA and Hikaru OKADA and Hiroshi TANEI and Miyuki HAYASHI and Masahiro SUSA",
note = "Funding Information: This work has been conducted as one of the projects in Research Group II for “Investigation on Factors Controlling Heat Transfer Characteristics of Scales” in Rolling Theory Committee, The Iron and Steel Institute of Japan. The authors would like to express their appreciation to the members for useful advice. Grant for General Research and Development of Grant by the Amada foundation is also acknowledged, and the corresponding author thanks the foundation. The authors would like to thank enago (www. enago.jp) for the English language review. Publisher Copyright: {\textcopyright} 2020 The Iron and Steel Institute of Japan.",
year = "2020",
month = dec,
day = "15",
doi = "10.2355/isijinternational.ISIJINT-2020-163",
language = "English",
volume = "60",
pages = "2773--2779",
journal = "ISIJ International",
issn = "0915-1559",
publisher = "Iron and Steel Institute of Japan",
number = "12",
}