Study on the Recrystallization Behaviour of Hot Deformed Austenite in GCr15 Bearing Steel

Author:

Xiong Guang Yao1,Wang Yan Lin2,He Bo Lin1,Zhao Long Zhi1

Affiliation:

1. East China Jiaotong University

2. Fangda Special Steel Technology Company Limited

Abstract

Along with the rapid development of the science and technology, the requirements of microstructure and properties for the bearing steel are more and more strict. The recrystallization behavior of hot deformed austenite in GCr15 bearing steel was systematically studied under the different deformation amount, deformation temperature and dwell time after rolling, the changes of microstructure and recrystallization percentage was analyzed. The research results show that the recrystallization behavior of hot deformed austenite in GCr15 bearing steel is more and more obvious as the deformation amount, deformation temperature and dwell time after rolling increase, the microstructure is more uniform, and the recrystallization percentage increases; When the deformation amount is 20%, the deformation temperature is 850°C and the dwell time after rolling is 10s, the recrystallization percentage is 32.09%, when the deformation amount is 45%, the deformation temperature is 950°C and the dwell time after rolling is 60s, the recrystallization percentage is 64.31%, comparing it to 32.09%, it increases 100.4%.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference6 articles.

1. B. Wang, Z.H. Jiang: The Chinese Journal of Nonferrous Metals Vol. 16 (2006), p.35.

2. W.X. Song: Metallography (Metallurgical industry press, Beijing 1989).

3. L.J. Zhu, D. Wu and X.M. Zhao: Materials Science and Technology Vol. 15 (2007), p.746.

4. X.Y. Chen, Z.H. Jiang and M.Y. Zhu: Special Steel Vol. 30 (2009), p.46.

5. H.J. Li, H.B. Wu, D. Tang: Material and heat treatment Vol. 38 (2009), p.7.

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Effect of deformation on deformation-induced carbides and spheroidization in bearing steel;Journal of Materials Science;2018-10-05

2. Steels for bearings;Progress in Materials Science;2012-02

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