首页|Hot deformation behavior and hot-metal-gas-forming process of V micro-alloyed high manganese steel

Hot deformation behavior and hot-metal-gas-forming process of V micro-alloyed high manganese steel

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The hot deformation behavior of a newly designed V micro-alloyed high manganese steel(HMnS)was investigated in order to guide the development of the hot-metal-gas-forming process.Single-pass hot compression experiments were conducted in the temperature range of 950-1100℃ and the strain rate range of 0.05-10 s-1,and the stress-strain curves and the corresponding softening mechanism of the V micro-alloyed HMnS were analyzed.Results show that two types of stress-strain curves,representing the work hardening(WH)-dynamic recovery(DRV)-dynamic recrystallization(DRX)mechanism and the WH-DRV mechanism,respectively,occur during the deformation process.Moreover,the WH-DRV-DRX mechanism gradually transforms into the WH-DRV mechanism with the increasing strain rate and decreasing deformation temperature.Two types of constitutive models considering the softening mechanism difference were estab-lished and verified by additional hot-deformation experiments.Hot processing map of the HMnS was established and correlated well with the microstructure evolution result.Based on the constitutive models and processing map,the optimal processing parameter range and flow stress of HMnS for the hot-metal-gas-forming were determined.

High manganese steelHot-metal-gas-formingDeformation behaviorMicrostructureSoftening mechanism

Yong-gang Yang、Wang-nan Zuo、Mei Xu、Chang-hui Yuan、Jiang Chang、Lei Qi、Zhen-li Mi

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National Engineering Research Center for Advanced Rolling and Intelligent Manufacturing,University of Science and Technology Beijing,Beijing 100083,China

State Key Laboratory of Advanced Stainless Steel Materials,Taiyuan Iron and Steel(Group)Co.,Ltd.,Taiyuan 030003,Shanxi,China

Shandong Taishan Steel Group Co.,Ltd.,Jinan 271100,Shandong,China

National Natural Science Foundation of ChinaNational Natural Science Foundation of ChinaNational Key R&D Program of ChinaFundamental Research Funds for the Central Universities

52201101522743722021YFB3702404FRF-TP-22-013A1

2024

钢铁研究学报(英文版)
钢铁研究总院

钢铁研究学报(英文版)

CSTPCD
影响因子:0.584
ISSN:1006-706X
年,卷(期):2024.31(9)