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A Study on the Heat Transfer Characteristics of Steel Plate in the Matrix Laminar Cooling Process
Accurate prediction and control of the steel plate temperature in the laminar cooling process are very challenging. In this research, an experimental platform was built to measure the heat transfer characteristics of the steel plate in the process of matrix laminar spray cooling when the steel plate...
Autores principales: | , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8510041/ https://www.ncbi.nlm.nih.gov/pubmed/34640073 http://dx.doi.org/10.3390/ma14195680 |
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author | Xu, Jing Chen, Guang Bao, Xiangjun He, Xin Duan, Qingyue |
author_facet | Xu, Jing Chen, Guang Bao, Xiangjun He, Xin Duan, Qingyue |
author_sort | Xu, Jing |
collection | PubMed |
description | Accurate prediction and control of the steel plate temperature in the laminar cooling process are very challenging. In this research, an experimental platform was built to measure the heat transfer characteristics of the steel plate in the process of matrix laminar spray cooling when the steel plate is one millimeter away from the upper surface. The “buried couple method” was used, including the cooling temperature and cooling rate. Then, the temperature and the integrated heat transfer coefficient at the steel plate surface were calculated by the time-sequential function method (TSFM). The obtained results show that the fast cooling stage under the water cooling condition occurred in the first 1.5 s, and the measuring point temperature decreased by 8%. The “re-reddening” phenomenon of the steel plate appeared with time, and the measuring point temperature increased by 37%. Second, the maximum calculated difference between the surface temperature and the measuring point temperature was 0.75 °C, and the integrated heat transfer coefficient conformed to the periodic boundary features. The comprehensive convective heat transfer coefficient on the surface was in agreement with the periodic boundary characteristics, and its value exhibited oscillatory attenuation with the cooling process, and the oscillatory peak period was about 6 seconds. Two methods, sequential function method (SFM) and finite difference method (FDM), were used to verify the correctness of TSFM. |
format | Online Article Text |
id | pubmed-8510041 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-85100412021-10-13 A Study on the Heat Transfer Characteristics of Steel Plate in the Matrix Laminar Cooling Process Xu, Jing Chen, Guang Bao, Xiangjun He, Xin Duan, Qingyue Materials (Basel) Article Accurate prediction and control of the steel plate temperature in the laminar cooling process are very challenging. In this research, an experimental platform was built to measure the heat transfer characteristics of the steel plate in the process of matrix laminar spray cooling when the steel plate is one millimeter away from the upper surface. The “buried couple method” was used, including the cooling temperature and cooling rate. Then, the temperature and the integrated heat transfer coefficient at the steel plate surface were calculated by the time-sequential function method (TSFM). The obtained results show that the fast cooling stage under the water cooling condition occurred in the first 1.5 s, and the measuring point temperature decreased by 8%. The “re-reddening” phenomenon of the steel plate appeared with time, and the measuring point temperature increased by 37%. Second, the maximum calculated difference between the surface temperature and the measuring point temperature was 0.75 °C, and the integrated heat transfer coefficient conformed to the periodic boundary features. The comprehensive convective heat transfer coefficient on the surface was in agreement with the periodic boundary characteristics, and its value exhibited oscillatory attenuation with the cooling process, and the oscillatory peak period was about 6 seconds. Two methods, sequential function method (SFM) and finite difference method (FDM), were used to verify the correctness of TSFM. MDPI 2021-09-29 /pmc/articles/PMC8510041/ /pubmed/34640073 http://dx.doi.org/10.3390/ma14195680 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Xu, Jing Chen, Guang Bao, Xiangjun He, Xin Duan, Qingyue A Study on the Heat Transfer Characteristics of Steel Plate in the Matrix Laminar Cooling Process |
title | A Study on the Heat Transfer Characteristics of Steel Plate in the Matrix Laminar Cooling Process |
title_full | A Study on the Heat Transfer Characteristics of Steel Plate in the Matrix Laminar Cooling Process |
title_fullStr | A Study on the Heat Transfer Characteristics of Steel Plate in the Matrix Laminar Cooling Process |
title_full_unstemmed | A Study on the Heat Transfer Characteristics of Steel Plate in the Matrix Laminar Cooling Process |
title_short | A Study on the Heat Transfer Characteristics of Steel Plate in the Matrix Laminar Cooling Process |
title_sort | study on the heat transfer characteristics of steel plate in the matrix laminar cooling process |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8510041/ https://www.ncbi.nlm.nih.gov/pubmed/34640073 http://dx.doi.org/10.3390/ma14195680 |
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