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Article

Metadynamic Recrystallization Behavior of Cr-Ni-Mo Alloy Steel

1
School of Materials and Metallurgy, University of Science and Technology Liaoning, Anshan 114051, China
2
Technology Center, Henan Zhongyuan Special Steel Equipment Manufacturing Co., Ltd., Jiyuan 459008, China
3
Technology Innovation Center for High Quality Cold Heading Steel of Hebei Province, Hebei University of Engineering, Handan 056038, China
4
Technology Innovation Center for Wear Resistant Steel Plate of High Plasticity and High Toughness of Hebei Province, Hebei Puyang Iron and Steel Co., Ltd., Handan 056305, China
*
Authors to whom correspondence should be addressed.
Metals 2023, 13(4), 696; https://doi.org/10.3390/met13040696
Submission received: 16 February 2023 / Revised: 28 March 2023 / Accepted: 31 March 2023 / Published: 3 April 2023

Abstract

In order to study the metadynamic recrystallization behavior of 34CrNi3MoV steel, a double-pass isothermal compression experiment and a single-pass thermal interval experiment were designed and conducted to obtain the stress–strain curves under different deformation conditions and to explore the action law of deformation parameters during the compression process. The softening rate was calculated by the compensation method, and the grain size in the recrystallization region was measured. Based on the obtained data, the effects of deformation temperature (T), interval time (t), and strain rate (ε˙) on the softening rate and grain size of 34CrNi3MoV steel during metadynamic recrystallization were analyzed. The results show that increasing the deformation temperature, extending the interval time, and increasing the strain rate are all beneficial to the improvement of the metadynamic recrystallization softening rate and that fine and uniform new grains can be obtained under a high strain rate. However, in high-temperature conditions, mixed crystallization can easily occur, which is not conducive to grain refinement. Based on the true stress–strain data and experimental data on the grain size, a relevant model for metadynamic recrystallization of 34CrNi3MoV steel was established using mathematical analysis of regression equations. The average relative error AARE between the constructed dynamic model and the grain size model and the experimental results are 6.48% and 1.30%, respectively. This indicates that the model has high predictability.
Keywords: Cr-Ni-Mo steel; metadynamic recrystallization; softening rate; kinetics models; grain size Cr-Ni-Mo steel; metadynamic recrystallization; softening rate; kinetics models; grain size

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MDPI and ACS Style

Zheng, B.; Zou, Z.; Xu, D.; Wang, Y.; Wang, X.; Zhao, H.; Ju, D. Metadynamic Recrystallization Behavior of Cr-Ni-Mo Alloy Steel. Metals 2023, 13, 696. https://doi.org/10.3390/met13040696

AMA Style

Zheng B, Zou Z, Xu D, Wang Y, Wang X, Zhao H, Ju D. Metadynamic Recrystallization Behavior of Cr-Ni-Mo Alloy Steel. Metals. 2023; 13(4):696. https://doi.org/10.3390/met13040696

Chicago/Turabian Style

Zheng, Bing, Zhipeng Zou, Dong Xu, Yiqun Wang, Xuexi Wang, Hongyang Zhao, and Dongying Ju. 2023. "Metadynamic Recrystallization Behavior of Cr-Ni-Mo Alloy Steel" Metals 13, no. 4: 696. https://doi.org/10.3390/met13040696

APA Style

Zheng, B., Zou, Z., Xu, D., Wang, Y., Wang, X., Zhao, H., & Ju, D. (2023). Metadynamic Recrystallization Behavior of Cr-Ni-Mo Alloy Steel. Metals, 13(4), 696. https://doi.org/10.3390/met13040696

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