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高速列车车轴钢30NiCrMoV12的热变形行为
引用本文:陈楚,何毅,黄军波,霍洁.高速列车车轴钢30NiCrMoV12的热变形行为[J].特殊钢,2014,35(5):57-60.
作者姓名:陈楚  何毅  黄军波  霍洁
作者单位:中国一重能源装备材料科学研究所,天津 300457
摘    要:通过Φ250 mm锻件切取的试样在Gleeble-3500热模拟机于850~1150℃以应变速率0.01~10s-1对高速列车车轴钢30NiCrMoV12(/%:0.26C,0.33Si,0.62Mn,3.01Ni,0.82Cr,0.56Mo,0.10V)进行了热压缩试验。研究了车轴钢在热变形过程中奥氏体变形行为及再结晶规律,确定了车轴钢的热变形方程,建立应变量ε为0.5和0.9的热加工图。结果表明,在应变速率一定时,温度越高,变形量越大,则越有利于动态再结晶的发生;随着温度升高以及应变速率降低,能量耗散效率η逐渐升高;当真应变0.5,温度1100℃,应变速率0.01 s-1时,变形能量耗散效率达到最大值0.41。该车轴钢在1000~1150℃,应变速率0.01~1.0s-1时,具有较好的可锻性。

关 键 词:髙速列车车轴  30NiCrMoV12钢  热变形激活能  热加工图  可锻性  
收稿时间:2014-04-23

Behavior of Hot Deformation of Steel 30NiCrMoV12 for High-Speed Train Axles
Chen Chu,He Yi,Huang Junbo,Huo Jie.Behavior of Hot Deformation of Steel 30NiCrMoV12 for High-Speed Train Axles[J].Special Steel,2014,35(5):57-60.
Authors:Chen Chu  He Yi  Huang Junbo  Huo Jie
Affiliation:Materials Research Institute for Energy Equipment, China First Heavy Industries, Tianjin 300457
Abstract:The hot compression test on steel 30NiCrMoV12 for high speed train axles (/% : 0.26C, 0.33Si, 0.62Mn, 3.01 Ni, 0.82Cr, 0.56Mo, 0.10V) with strain rate 0.01-10 s-1 at 850-1150 ℃ has been carried out by using Gleeble-3500 thermal simulation machine with specimen cutting from 0250 mm forges. The austenite deformation behavior and rule of recrystallization of steel for axles during hot deformation process are studied to define the hot deformation equation of steel for axles and establish its hot working map with true strain s 0.5 and 0. 9. Results show that at definite strain rate, the higher temperature and the heavier deformation, the more beneficial to occurrence of dynamic recrystallization of steel; with raising temperature and decreasing strain rate, the efficiency of energy dissipation η gradually increases ; and with true strain 0.5 and strain rate 0. 01 s-1 at 1100 ℃ the efficiency of energy dissipation is up to max value- 0.41. At 1000-1150 ℃ with strain rate 0.01 ?10 s-1 the steel for axles has better forgeability.
Keywords:High Speed Train Axles  Steel 30NiCrMoV12  Hot Deformation Activation Energy  Hot Working Diagram  Forgeability  
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