GCr15热变形行为与流变应力模型的研究

廖舒纶, 张立文, 岳重祥, 郭书奇, 甄玉

材料工程 ›› 2008, Vol. 0 ›› Issue (4) : 8-10,14.

PDF(1469 KB)
PDF(1469 KB)
材料工程 ›› 2008, Vol. 0 ›› Issue (4) : 8-10,14.
论文

GCr15热变形行为与流变应力模型的研究

  • 廖舒纶1, 张立文1, 岳重祥1, 郭书奇2, 甄玉2
作者信息 +

Research on Thermal Deformation Behavior and Model of Flow Stress of GCr15 Steel

  • LIAO Shu-lun1, ZHANG Li-wen1, YUE Chong-xiang1, GUO Shu-qi2, ZHEN Yu2
Author information +
文章历史 +

摘要

在热力模拟实验机Gleeble-3800上,对GCr15钢进行了单道次压缩实验,研究了其热变形行为.变形温度从950℃到1150℃范围变化,应变率从1s-1到10s-1范围变化.采用双曲正弦方程描述了GCr15钢的峰值流变应力与Ze-ner-Hollomon参数的关系,方程中变形激活能的大小和其他常数采用回归分析得到.同时还得到了峰值应变方程以及流变应力模型,流变应力模型模拟结果与实验结果吻合较好.

Abstract

The behavior of thermal deformation of GCr15 steel had been investigated by single-stage compression tests on Gleeble-3800 thermal-mechanical simulator.The deformation temperature ranged from 950℃ to 1150℃,and the strain rate ranged from 1s-1 to 10s-1.A hyperbolic sine equation was employed to describe the relationship between the peak stress and Zener-Hollomon parameter,in which the activation energy of deformation and other constants were obtained using regression analysis.Meanwhile,the equation for peak strain and the model of flow stress were also obtained.It is shown that the predicted results of the flow stress equation are good agreement with the experimental data.

关键词

流变应力 / 峰值应变 / 热变形 / 轴承钢

Key words

flow stress / peak strain / thermal deformation / bearing steel

引用本文

导出引用
廖舒纶, 张立文, 岳重祥, 郭书奇, 甄玉. GCr15热变形行为与流变应力模型的研究[J]. 材料工程, 2008, 0(4): 8-10,14
LIAO Shu-lun, ZHANG Li-wen, YUE Chong-xiang, GUO Shu-qi, ZHEN Yu. Research on Thermal Deformation Behavior and Model of Flow Stress of GCr15 Steel[J]. Journal of Materials Engineering, 2008, 0(4): 8-10,14
中图分类号: TG115.5+3   

参考文献

[1] 潘崇超,李殿国,凌刚,等.Fe-15Cr-25Ni高温合金热压缩变形条件下的流变应力模型[J].材料工程,2005,(6):7-10,30.
[2] 李红英,欧玲,张建飞,等.一种新型Al-Cu-Li系合金的热压缩流变应力[J].北京科技大学学报,2006,(8):750-754.
[3] 李洪波,骆俊廷,黄木,等.铸态AZ31镁合金的超塑性性能及流变应力[J].塑性工程学报,2006,13(5);19-21.
[4] 王战锋,张辉,张昊,等.喷射沉积5A06铝合金热压缩变形的流变应力行为[J].中国有色金属学报,2006,16(11):1938-1944.
[5] 尹绍江,辛凤英,齐长发,等.高强低合金T510L的热模拟工艺研究[J].金属世界,2006,4:62-67.
[6] 李雄,张鸿冰,阮雪榆,等.40Cr钢流变应力的分析及模拟[J].材料工程,2004,(11):41-44,49.
[7] 潘维国,曹起骧,马喜腾,等.20MnMoNiCr低合金钢恒温压缩动态软化及流变应力模型研究[J].塑性工程学报,1999,6(4);106-108.
[8] 韩冰,刘文娟,袁鸽成.7055铝合金高温压缩变形的流变应力[J].广东工业大学学报,2004,21(2):16-19.
[9] 陈良生,徐有容,王德英,等.高钼不锈钢热加工特性与综合流变应力模型[J].钢铁,2000,35(5):55-59.
[10] 李正升,樊志礼,张关云,等.高碳铬轴承钢GCr15的热加工性能[J].钢铁,1996,31(supp.):61-66.
[11] LAASRAOUI A,JONAS J J.Prediction of steel flow stresses at high temperatures and strain rates[J].Metallurgical Transactions A,1991,22:1545-1558.
[12] 刘战英,陈连生,周满春,等.变形条件对30MnSiV钢动态再结晶行为的影响[J].钢铁研究学报,2004,16(1):49-52.
[13] SERAJZADEH S,MIRBAGHERI H,KARIMITAHERI A.Modelling the temperature distribution and microstructural changes during hot rod rolling of a low carbon steel[J].Jounal of Materials Processing Technology,2002,125-126:89-96.

基金

大连市优秀青年科技人才基金(2001-122)
PDF(1469 KB)

Accesses

Citation

Detail

段落导航
相关文章

/