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8Cr5MoV冷轧工作辊用钢的热变形行为
英文标题:Hot deformation behavior of 8Cr5MoV steel for cold working roller
作者:朱元健 李亨 王汉 张振威 罗吉平 吴玉程 
单位:合肥工业大学 
关键词:8Cr5MoV合金钢 冷轧辊 热变形 本构方程 热加工图 
分类号:TG142.72
出版年,卷(期):页码:2020,45(9):171-176
摘要:

利用Gleeble-3500热模拟机在变形温度为850~1150 ℃、应变速率为0.005~5 s-1、最大变形量为60%的条件下,对8Cr5MoV冷轧工作辊用钢进行热压缩试验。通过研究试验获得的真应力-真应变曲线,获得了该合金的热变形行为及热加工特征,并采用双曲正弦模型来描述8Cr5MoV合金钢的热变形行为,建立了该试验条件下材料的本构方程和热加工图。研究结果表明:Arrhenius模型可以较好地表征8Cr5MoV合金钢的热变形行为,在本试验条件下热变形激活能为393.6075 kJ·mol-1;在不同应变条件下,8Cr5MoV合金钢的热加工图有显著差异,与动态再结晶软化有关。在变形温度为1075~1150 ℃、应变速率为0.0183~1 s-1时,能量耗散效率均在31%以上,能量耗散效率峰值可达38%,热加工性能最佳。

Thermal compression experiments of 8Cr5MoV steel for cold working roller were carried out by thermal simulation machine Gleeble-3500 under the deformation temperature of 850-1150 ℃, the strain rate of 0.005-5 s-1 and the maximum deformation of 60%, its hot deformation behavior and the hot processing characteristics were obtained by the true stress-true strain curve coming from the experiments. Then, the hot deformation behavior of 8Cr5MoV alloy steel was described by the hyperbolic sine model, and the constitutive equation and hot processing map of the material under the experimental conditions were established. The results show that the Arrhenius model characterizes the hot deformation behavior of 8Cr5MoV alloy steel precisely, and the thermal deformation activation energy under this experiment condition is 393.6075 kJ·mol-1. Furthermore, the hot processing maps of 8Cr5MoV alloy steel have significant differences under the different strains, which is related to dynamic recrystallization softening, and the best hot processing performance with more than 31% energy dissipation efficiency and 38% peak value of energy dissipation efficiency was obtained under the deformation temperature of 1075-1150 ℃ and the strain rate of 0.0183-1 s-1.

基金项目:
国家重点研发计划重点专项(2017YFB0701804,2017YFB0701803)
作者简介:
朱元健(1994-),男,硕士研究生 E-mail:zyjmota@163.com 通讯作者:李亨(1984-),男,博士,副研究员 E-mail:liheng0205@hfut.edu.cn
参考文献:


[1]徐咏梅. 锻造及热处理工艺对MC5冷轧辊坯缺陷与组织性能的影响
[D]. 哈尔滨:哈尔滨工业大学,2014.


Xu Y M. Effects of Forging and Heattreatment Process of MC5 Cold Roll Blank Defects and Structure Property
[D]. Harbin:Harbin Institute of Technology, 2014.



[2]陈锟. 控制Cr5钢冷轧辊坯质量的锻造变形工艺研究
[D]. 上海:上海大学,2011.


Chen K. Research on the Forging Process Controlling Quality of Cr5 Cold Roll Blank
[D]. Shanghai:Shanghai University, 2011.



[3]Zhang X X, Cui Z S, Chen W, et al. A criterion for void closure in large ingots during hot forging
[J]. Journal of Materials Processing Technology , 1950, 209(4):1950-1959.



[4]付强. 大型轴类锻件锻造过程的数值模拟研究
[D]. 上海:上海交通大学,2008.


Fu Q. Study on FE Simulation of Forging Process of Heavy Axial Forgings
[D]. Shanghai:Shanghai Jiao Tong University, 2008.



[5]Prasad Y, Gegel H, Doraivelu S, et al. Modeling of dynamic material behavior in hot deformation: Forging of Ti-6242
[J]. Metallurgical Transactions A, 1984, 15(10): 1883-1892.



[6]Sellars C. Modelling microstructural development during hot rolling
[J]. Materials Science and Technology, 1990, 6(11): 1072-1081.



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



[8]Prasad Y, Rao K, Sasidhar S. Hot Working Guide: A Compendium of Processing Maps
[M]. Almere:ASM International, 2015.



[9]陈龙, 司家勇, 刘松浩, 等.挤压态FGH4096合金的热变形行为及热加工图
[J]. 材料导报,2019,(12): 2047-2054.


Chen L, Si J Y, Liu S H, et al. Hot deformation behavior and hot processing map of extruded FGH4096 superalloy
[J]. Materials Review, 2019, (12): 2047-2054.



[10]卓秀秀, 徐桂芳,袁圆,等.0Cr17Mn17Mo3NiN奥氏体不锈钢的热变形行为及热加工图
[J]. 机械工程学报,2017,53(22):74-80.


Zhuo X X, Xu G F, Yuan Y, et al. Hot deformation behavior and processing map of 0Cr17Mn17Mo3NiN austenitic stainless steel
[J].  Journal of Mechanical Engineering, 2017, 53(22): 74-80.



[11]夏麒帆, 梁益龙,杨春林,等.TC4钛合金拉伸变形行为的研究
[J]. 稀有金属,2019,43(7):765-773.


Xia Q F, Liang Y L, Yang C L, et al. Tensile deformation behavior of TC4 titanium alloy
[J]. Chinese Journal of Rare Metals, 2019, 43(7): 765-773.



[12]马雪飞, 姜君,李红雷.基于动态材料模型的Cr8钢的热加工图
[J]. 锻压技术,2019,44(1):166-171.


Ma X F, Jiang J, Li H L. Hot processing map of Cr8 steel based on dynamic material model
[J]. Forging & Stamping Technology, 2019, 44(1):166-171.

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