Home
Editorial Committee
Brief Instruction
Back Issues
Instruction to Authors
Submission on line
Contact Us
Chinese

  The journal resolutely  resists all academic misconduct, once found, the paper will be withdrawn immediately.

Title:Study on thermal deformation behavior and thermal processing map of as-cast Cr5 steel
Authors:  
Unit:  
KeyWords:  
ClassificationCode:TG142.5
year,vol(issue):pagenumber:2023,48(4):236-241
Abstract:

 For common material as-cast Cr5 steel for back-up rollers, based on the single-pass thermal compression test, its thermal deformation behavior and thermal processing map under different test parameters were analyzed and studied, and in the test, the deformation temperature was 850-1220 ℃, the deformation rate was 0.01-1 s-1, and the true strain was 0.7. Then, the true stress-true strain curve of as-cast Cr5 steel was drawn by the test data, and the factors affecting the rheological stress were obtained. Furthermore, the undetermined material coefficients were calculated by fitting the curves, and the rheological stress equation of as-cast Cr5 steel was given. Finally, based on the true stress-true strain curve, the thermal processing map in the strain range of 0.1-0.6 was drawn. The results show that increasing the deformation temperature and decreasing the strain rate can reduce the rheological stress of Cr5 steel, which is conductive to the occurrence of dynamic recrystallization. With the increasing of strain, the instability area and power dissipation factor become larger, and the optimum processing parameters range of Cr5 steel at high temperature is the deformation temperature of 1000-1200 ℃ and the strain rate of 0.03-0.37 s-1.

Funds:
国家重点研发计划资助项目(2020YFB2008400)
AuthorIntro:
作者简介:于保宁(1988-),男,学士,工程师 E-mail:citic1988@163.com 通信作者:何文武(1977-),男,博士,教授 E-mail:hwwssl@126.com
Reference:

 
[1]张萌. Cr3、Cr5钢锻造冷轧辊双频感应加热淬火工艺研究
[D].洛阳:河南科技大学,2020.


Zhang M. Research on Dual-frequency Induction Heating Quenching Process of Cr3 and Cr5 Steel Forging Cold Roll
[D]. Luoyang: Henan University of Science and Technology, 2020.


[2]罗玉立, 何亚军,赵秀清. 大型锻钢支承辊冶炼技术
[J].大型铸锻件,2008,(2):32-33.

Luo Y L, He Y J, Zhao X Q. Smelting technology of large forged steel support roll
[J]. Large Castings and Forgings, 2008,(2):32-33.


[3]于瑞芝, 刘成业. 我国支承辊材料的发展过程及热处理工艺简介
[J].大型铸锻件,2007,(5):46-48.

Yu R Z, Liu C Y. Development process and heat treatment process of China′s support roll material
[J]. Large Castings and Forgings, 2007, (5): 46-48.


[4]贺强, 徐济进. 大型锻钢支撑辊残余应力评估技术
[A].中国金属学会、宝钢集闭有限公司.第十届中国钢铁年会暨第六届宝钢学术年会
[C]. 北京:冶金工业出版社,2015.

He Q, Xu J J. Residual stress assessment technology of large forged steel support roll
[A]. China Metal Society, Baosteel Jiquan Co., Ltd. The 10th China Iron and Steel Annual Meeting and The sixth Baosteel Academic Annual Meeting
[C]. Beijing: Metallurgical Industry Press, 2015.


[5]张全新, 江海军,王春奕.4Cr5MoSiV1钢模块锻造开裂原因
[J].理化检验:物理分册,2020,56(7):66-68,72.

Zhang Q X, Jiang H J, Wang C Y. Forging cracking of 4Cr5MoSiV1 steel die block
[J]. Physical Testing and Chemical Analysis:Part A: Physical Testing, 2020, 56(7): 66-68, 72.


[6]邱宇, 袁飞,曾元松,等.4Cr5MoSiV1热作模具钢的热变形行为与热加工图
[J].机械工程材料,2021,45(2):71-77.

Qiu Y, Yuan F, Zeng Y S, et al. Hot deformation behavior and hot working diagram of 4Cr5MoSiV1 hot working die steel
[J]. Materials for Mechanical Engineering, 201, 45(2):71-77.


[7]Chen X,Si Y H,Bai R R,et al. Hot formability study of Cr5 alloy steel by integration of FEM and 3D processing maps
[J]. Materials, 2022, 15(14):4801.


[8]王永善, 胡志强,王开坤,等. 热作模具钢5CrNiMoV的亚动态再结晶行为研究
[J].塑性工程学报,2021,28(3):118-125.

Wang Y S, Hu Z Q, Wang K K, et al. Study on subdynamic recrystallization behavior of hot work die steel 5CrNiMoV
[J]. Journal of Plasticity Engineering, 2021, 28(3):118-125.


[9]周会军. 支承辊材料Cr5钢的热变形行为及微观组织仿真技术研究
[D].洛阳:河南科技大学,2015.

Zhou H J. Research on Thermal Deformation Behavior and Microstructure Simulation Technology of Cr5 Steel for Support Roll Material
[D]. Luoyang: Henan University of Science and Technology, 2015.


[10]Sellars C M, Whiteman J A. Recrystallization and grain growth in hot rolling
[J]. Metal Science, 1979, 13(3-4):187-194.


[11]任劲宇, 陈飞,张晓峰,等. 铸态ER8车轮钢的热变形行为及本构模型研究
[J]. 锻压技术,2021,46(1):202-207.

Ren J Y, Chen F, Zhang X F, et al. Study on hot deformation behavior and constitutive model of as-cast ER8 wheel steel
[J]. Forging & Stamping Technology, 2021, 46(1): 202-207.


[12]Zener C, Hollomon J H. Effect of strain rate upon plastic flow of steel
[J]. Journal of Applied Physics, 1944, 15(1): 22-32.


[13]周琳, 刘运玺,陈玮,等.Ti-4Al-5Mo-6Cr-5V-1Nb合金的热变形行为及热加工图
[J].稀有金属,2022,46(1):27-35.

Zhou L,Liu Y X,Chen W,et al. Thermal deformation behavior and processing map of Ti-4Al-5Mo-6Cr-5V-1Nb alloy
[J]. Chinese Journal of Rare Metals, 2022, 46(1):27-35.
Service:
This site has not yet opened Download Service】【Add Favorite
Copyright Forging & Stamping Technology.All rights reserved
 Sponsored by: Beijing Research Institute of Mechanical and Electrical Technology; Society for Technology of Plasticity, CMES
Tel: +86-010-62920652 +86-010-82415085     Fax:+86-010-62920652
Address: No.18 Xueqing Road, Beijing 100083, P. R. China
 E-mail: fst@263.net    dyjsgg@163.com