Simplified Simulation Method of Round Steel Bar Cooling / Yudin Yuri Vjacheslavovich,Maisuradze Mikhail Vasiljevich,Ryzhkov Maxim Alexandrovich,Lebedev Pavel Dmitrievich,Musikhin Sergey Alexandrovich // ISIJ INTERNATIONAL. - 2015. - V. 55, l. 7. - P. 1538-1540.

ISSN/EISSN:
0915-1559 / 1347-5460
Type:
Article
Abstract:
Applying the finite difference method for numerical solution of one dimensional heat transfer equation provides a simple way for cooling process simulation of hypoeutectoid low alloy steel rod (round long length bar). The obtained results are comparable with ones calculated using finite element modeling commercial software. The temperature difference of the proposed model and literature experimental data for 50 ... 270 mm diameter bars cooled in still air and conventional oil does not exceed 25 degrees C for the whole examined time-temperature regions before the phase transformation.
Author keywords:
modeling and simulation; steels; finite difference method (FDM); quenching MN
DOI:
10.2355/isijinternational.55.1
Web of Science ID:
ISI:000358634800027
Соавторы в МНС:
Другие поля
Поле Значение
Publisher IRON STEEL INST JAPAN KEIDANREN KAIKAN
Address TEKKO KAIKAN-5F, 3-2-10, NIHONBASHI-KAYABACHO, TOKYO, CHUO-KU 103-0025, JAPAN
Language English
EISSN 1347-5460
Keywords-Plus MN
Research-Areas Metallurgy \& Metallurgical Engineering
Web-of-Science-Categories Metallurgy \& Metallurgical Engineering
Author-Email mt-243@mail.ru
ResearcherID-Numbers Maisuradze, Mikhail/E-4681-2017
Funding-Acknowledgement UrFU; Russian Science Foundation {[}15-11-10018]
Funding-Text This research project has been partially supported by UrFU under the Framework Programme of development of UrFU through the ``Young scientists UrFU{''} competition, by the Russian Science Foundation (project no. 15-11-10018). The authors would like to express their sincere thanks to Ph. D. O. G. Khadzhieva for English language editing and the reviewers for the useful comments concerning publication.
Number-of-Cited-References 18
Usage-Count-Last-180-days 4
Usage-Count-Since-2013 14
Journal-ISO ISIJ Int.
Doc-Delivery-Number CN7SR