@inproceedings{85a25fdb760a49d4b33e9c1e061725b3,
title = "Austenite grain evolution mechanism of high carbon rail based on thermal technology",
abstract = "In view of the special requirements of rails to ensure the safe and stable operation of Railways in China, the formation characteristics of austenite grains in high carbon rail are revealed through industrial exploration, the process of industrial rail heating and rolling is simulated, innovative experimental research methods such as different heating and heat treatment are carried out on the actual rails in the laboratory. Transfer characteristics of austenite grain size, microstructures and key properties of high carbon rail during the process are also revealed. The results show that the austenite grain size of industrial produced U75V rail is about 9.0 grade. When the holding temperature is increased from 800 C to 1300 C, the austenite grain size of high carbon rail steel decreases, the austenite grain are gradually coarsened, and the tensile strength increases slightly. The tensile strength is affected by the heating temperature. With the increase of heating temperature, the elongation and impact toughness of high carbon rail decrease. The heating temperature of high carbon rail combined with austenite grain size shows that the heating temperature has a great influence on austenite grain size, and has the most obvious influence on the toughness of high carbon rail.",
keywords = "Austenite grain, High carbon rail, Thermal technology, U75V rail steel",
author = "Yuan Jun and Han Zhenyu and Deng Yong and Yang Dawei",
note = "Publisher Copyright: {\textcopyright} 2020 Trans Tech Publications Ltd, Switzerland.; 6th International Conference on Material Science and Engineering, ICMSE 2019 ; Conference date: 21-12-2019 Through 23-12-2019",
year = "2020",
language = "英语",
isbn = "9783035716092",
series = "Key Engineering Materials",
publisher = "Trans Tech Publications Ltd",
pages = "74--80",
editor = "Xinyu Hu and Marcellina Chijoriga and Lv, \{Xiao Lian\} and Zhiyong Zhang",
booktitle = "Material Science and Engineering",
address = "瑞士",
}