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7075铝合金在热变形过程中主要发生连续动态再结晶,在温度为250~450℃、应变速率为0.1~1 s?1的条件下,对多组圆柱试样进行热模拟压缩实验。采用金相定量法对热变形后材料的显微组织晶粒度进行测量,建立7075铝合金热变形时动态再结晶晶粒度演化模型。结果表明:根据唯象理论的指数模型,利用线性回归方法求得7075铝合金热塑性变形组织晶粒度的演化模型;将该模型导入到有限元软件中能够预报7075铝合金热变形过程的连续动态再结晶晶粒度;预报结果与实验结果非常接近,说明将该演化模型导入有限元软件中可以较为准确地预测7075铝合金热变形过程动态再结晶晶粒度。

Continuous dynamic recrystallization (CDRX) of 7075 aluminum alloy occurs during hot deformation. The thermal compression experiment about the group of cylindrical specimen was done at the temperature of 250?450 ℃and the strain rate of 0.1?1 s?1. The microstructure grain size of 7075 aluminum alloy was measured by the metallographic quantitative method, the microstructure grain size evolution model of 7075 aluminum alloy. The result shows that, according to the exponential model of phenomenological theory and the linear regression method, the microstructure grain size evolution model of 7075 aluminum alloy during the thermoplastic deformation can be worked out. And then, by the finite element software with the evolution model continuous dynamic recrystallization grain size of 7075 aluminum alloy during hot deformation was predicted. The forecasting result is very close to the experimental one. Therefore, by finite element software with the evolution model, dynamic recrystallization grain size of 7075 aluminum alloy during the hot deformation process can be accurately predicted.

参考文献

[1] S. Gourdet;F. Montheillet .A model of continuous dynamic recrystallization[J].Acta materialia,2003(9):2685-2699.
[2] 王少阳,陈文琳,李志杰,杨栋,周瑞.金属热变形组织晶粒度预报的应用现状[J].热加工工艺,2012(06):165-167.
[3] SAKAI T .Continuous dynamic recrystallization during the transient severe deformation of aluminum 7475[J].Acta Material A,2009,57:153-162.
[4] YANG Yong-biao;ZHANG Zhi-min;MENG Mu .Microstructure characterization of hot extruded 7075 Al bar with different passes and temperatures[J].Advanced Materials Research,2011,217:1679-1682.
[5] 颜文煅,傅高升,陈贵清.1235铝合金动态再结晶动力学模型及氧化夹杂的影响[J].材料热处理学报,2012(02):149-153.
[6] SELLARS C M .Modeling microstructural development during hot rolling[J].Material Science Technology,1990,16(11):1072-1078.
[7] SHEN J;GOTTSTEN G .Modelling of microstructure evolution of aluminium alloy during thermomechanical processing[J].Materials Science and Technology,2001,9(03):329-333.
[8] 李周兵,沈健,闫亮明,李俊鹏,闫晓东,毛柏平.应变速率对7055铝合金显微组织和力学性能的影响[J].稀有金属,2010(05):643-647.
[9] LI Jun-peng,SHEN Jian,YAN Xiao-dong,MAO Bai-ping,YAN Liang-ming.Microstructure evolution of 7050 aluminum alloy during hot deformation[J].中国有色金属学报(英文版),2010(02):189-194.
[10] 李俊鹏,沈健,闫晓东,毛柏平,闫亮明.温度对7075铝合金热变形显微组织演化的影响[J].中国有色金属学报,2008(11):1951-1957.
[11] QUAN Guo-zheng;LIU Ke-wei;ZHOU Jie;CHEN Bin .Dynamic softening behaviors of 7075 aluminum alloy[J].Transactions of Nonferrous Metals Society of China,2009,19(z3):s537-s541.
[12] Liangming Yan;Jian Shen;Junpeng Li;Zhoubing Li;Zhenlei Tang.Dynamic Recrystallization of 7055 Aluminum Alloy During Hot Deformation[J].Materials Science Forum,2010:295-301.
[13] 徐庆军,张治民,杨勇彪.7075铝合金高温热变形性能的研究[J].热加工工艺,2012(07):33-35.
[14] 王煜,孙志超,李志颖,杨合.齐压态7075铝合金高温流变行为及神经网络本构模型[J].中国有色金属学报,2011(11):2880-2887.
[15] Li van Fratini;Gianluca Buffa .CDRX modelling in friction stir welding of aluminium alloys[J].International Journal of Machine Tools & Manufacture: Design, research and application,2005(10):1188-1194.
[16] 杨智春,李斌,马光来.7075高强度铝合金锻造晶粒细化原理的数值仿真研究[J].稀有金属材料与工程,2006(04):642-646.
[17] G. Buffa;L. Fratini;R. Shivpuri .CDRX modelling in friction stir welding of AA7075-T6 aluminum alloy: Analytical approaches[J].Journal of Materials Processing Technology,2007(1/3):356-359.
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