在Gleeble-3800型热加工模拟实验机上,对BTi-62421S合金在变形程度70%、变形温度850~1 050 ℃、应变速率0.01~30 s-1范围内进行高温压缩实验.通过真应力-真应变曲线,分析流动应力随变形热力参数的变化规律.结果表明:BTi-62421S合金高温变形的流变应力随温度的升高和应变速率的降低而减小;随着应变的增大,合金的真应力-真应变曲线在经历了明显的加工硬化阶段后达到最大值,然后出现流变"软化"现象.以经典的双曲正弦形式模型为基础建立了BTi-62421S合金高温变形的本构方程,同时通过对数据回归处理计算了合金高温变形的应力指数n、应变激活能Q.
参考文献
[1] | 崔文芳,洪权,刘春明,周廉.Ti-1100/0.1Y高温钛合金等温热压缩变形行为[J].东北大学学报(自然科学版),2003(06):572-575. |
[2] | XU Wen-chen;SHAN De-bin;Lü Yan;LI Chun-feng .Effects of hot deformation parameters on flow stress and establishment of constitutive relationship system of BT20 titanium alloy[J].Transactions of Nonferrous Metals Society of China,2005,15(Special 2):167-172. |
[3] | CHEN Hui-qin,CAO Chun-xiao,GUO Ling,LIN Hai.Hot deformation mechanism and microstructure evolution of TC11 titanium alloy in β field[J].中国有色金属学会会刊(英文版),2008(05):1021-1027. |
[4] | 罗皎,李淼泉,李宏,于卫新.TC4钛合金高温变形行为及其流动应力模型[J].中国有色金属学报,2008(08):1395-1401. |
[5] | Odenberger, EL;Pederson, R;Oldenburg, M .Thermo-mechanical material response and hot sheet metal forming of Ti-6242[J].Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing,2008(1/2):158-168. |
[6] | SUN Shengdi,GUO Bin,SHAN Debin,ZHONG Yingying.Research on elevated temperature deformation behavior of Ti-6Al-4V sheets[J].稀有金属(英文版),2009(06):550-553. |
[7] | MOMENI A;ABBASI S M .Effect of hot working on flow behavior of Ti-6Al-4V alloy in single phase and two phase regions[J].Materials & Design,2010,31:3599-3604. |
[8] | Zhanglong Zhao;Hongzhen Guo;Xiaochen Wang;Zekun Yao .Deformation behavior of isothermally forged Ti-5Al-2Sn-2Zr-4Mo-4Cr powder compact[J].Journal of Materials Processing Technology,2009(15/16):5509-5513. |
[9] | NARAYANA MURTY S V S;NAGESWARA RAO B .On the flow localization concepts in the processing maps of titanium alloy Ti-24Al-20Nb[J].Journal of Materials Processing Technology,2000,104(1/2):103-109. |
[10] | P. Wanjara;M. Jahazi;H. Monajati;S. Yue .Influence of thermomechanical processing on microstructural evolution in near-α alloy IMI834[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2006(1/2):300-311. |
[11] | T. Seshacharyulu;S. C. Medeiros;W. G. Frazier;Y. V. R. K. Prasad .Hot working of commercial Ti-6Al-4V with an equiaxed α-β microstructure: materials modeling considerations[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2000(1/2):184-194. |
[12] | T. Seshacharyulu;S. C. Medeiros;J. T. Morgan;J. C. Malas;W. G. Frazier;Y. V. R. K. Prasad .Hot deformation and microstructural damage mechanisms in extra-low interstitial (ELI) grade Ti-6Al-4V[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2000(1/2):289-299. |
[13] | Seshacharyulu T.;Medeiros SC.;Frazier WG.;Prasad YVRK. .Microstructural mechanisms during hot working of commercial grade Ti-6Al-4V with lamellar starting structure[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2002(1/2):112-125. |
[14] | 赵为纲,李鑫,鲁世强,刘志和,王克鲁,李臻熙,曹春晓.TC11钛合金高温变形本构关系研究[J].塑性工程学报,2008(03):123-127. |
[15] | IMBERT C;RYAN N D;MCQEEN H J .Hot workability of three grade of tool steel[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1984,15(10):1855-1864. |
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