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为研究变速变形对镁合金微观组织和硬度的影响,采用1100 kN机械伺服压力机,对AZ31镁合金在曲柄匀速驱动和曲柄单向减速驱动两种模式下进行了室温压缩实验,分析了两种速度模式不同变形量下试样的微观组织与硬度演化规律。研究表明:两种变速模式下,在压缩初始阶段,均有少量平行孪晶产生于粗大晶粒内,且孪晶宽度大;随着变形量增大,孪晶密度增大且呈细长化。在曲柄匀速驱动模式下,孪晶长而细且分布散乱,无规则交错;而曲柄单向减速驱动模式下孪晶由宽大转变为细长,多组平行孪晶相互交叉,均匀分布且孪晶密度增大。不同变形量下,曲柄单向减速驱动模式下的试样硬度均小于曲柄匀速驱动模式,但在接近极限压缩量(25%)时,其硬度值又趋于相同。

This paper is to study the influences of loading speed on the microstructure and hardness of magnesium alloy formed at room temperature. AZ31 magnesium alloy was compressed using a 1 100 kN servo presser under the crank at constant speed mode and unidirectional deceleration mode and the microstructure evolution and hardness change during the two processes were examined. The results showed that small amount of parallel and thicktwins can be observed in large sized grains at the beginning of both deformation processes. With the increase of strain,the density of the twins increases correspondingly and the twins tend to be stretched. When the metal was deformed in constant speed mode, the twin was long and thin and the distribution was non?uniform with the irregularity of interlacing. In contrast, when the metal was formed in the unidirectional deceleration mode, the twin was initially wide but was gradually transformed to long and thin, and the twin distributions were relatively more uniform and intersected. The density of twin increased and the overall hardness decreased when the metal was formed in the unidirectional decelerated mode. However, the hardness of the formed metal became very close under two speed modes when the reduction was approaching 25%.

参考文献

[1] Xinxing Wu;Xuyue Yang;Jijun Ma;Qinghuan Huo;Jun Wang;Huan Sun .Enhanced stretch formability and mechanical properties of a magnesium alloy processed by cold forging and subsequent annealing[J].Materials & design,2013(Jan.):206-212.
[2] Sung Hyuk Park;Ha Sik Kim;Jun Ho Bae .Improving the mechanical properties of extruded Mg-3Al-lZn alloy by cold pre-forging[J].Scripta materialia,2013(3):250-253.
[3] Ryo MATSUMOTO.Ductility improvement methods for commercial AZ31B magnesium alloy in cold forging[J].中国有色金属学报(英文版),2010(07):1275-1281.
[4] 黄洪涛,刘伟,A.Godfrey,唐瑞鹤,刘庆.AZ31镁合金单轴压缩中孪生行为研究[J].金属学报,2012(03):357-362.
[5] 夏伟军,杨春花,黄长清,陈振华.变形量和变形速率对AM60铸锭压缩过程中孪晶的影响[J].机械工程材料,2006(08):13-15,56.
[6] 刘天模,袁晗琦,彭天成,刘建忠.变形条件对AZ31镁合金冷压缩过程中孪生的影响[J].重庆大学学报,2010(10):37-41.
[7] K. Osakada;K. Mori;T. Altan;P. Groche .Mechanical servo press technology for metal forming[J].CIRP Annals,2011(2 CD/ROM):651-672.
[8] Ryo Matsumoto;Kazunori Hayashi;Hiroshi Utsunomiya .Experimental and numerical analysis of friction in high aspect ratio combined forward-backward extrusion with retreat and advance pulse ram motion on a servo press[J].Journal of Materials Processing Technology,2014(4):936-944.
[9] Ryo Matsumoto;Kozo Osakada .Ductility of a magnesium alloy in warm forging with controlled forming speed using a CNC servo press[J].Journal of Materials Processing Technology,2010(14):2029-2035.
[10] 程永奇,郭强,刘易凡,许仕宁.基于伺服压力机的AZ31镁合金反挤压成形[J].塑性工程学报,2012(04):68-73.
[11] 陈名涛,肖小亭,程永奇,徐高翅,刘海军.变速加载模式下镁合金微观组织演变规律研究[J].热加工工艺,2014(07):1-4.
[12] 陈振华,杨春花,黄长清,夏伟军,严红革.镁合金塑性变形中孪生的研究[J].材料导报,2006(08):107-113.
[13] Chino, Y;Kimura, K;Mabuchi, M .Twinning behavior and deformation mechanisms of extruded AZ31 Mg alloy[J].Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing,2008(1/2):481-488.
[14] Khosravani, A.;Scott, J.;Miles, M.P.;Fullwood, D.;Adams, B.L.;Mishra, R.K..Twinning in magnesium alloy AZ31B under different strain paths at moderately elevated temperatures (Conference Paper)[J].International Journal of Plasticity,2013:160-173.
[15] 詹美燕;李春明;尚俊玲 .镁合金的塑性变形机制和孪生变形研究[J].材料导报,2011,25(2):1-7.
[16] 胡伟辉 .AZ31镁合金锻造变形时组织与性能的研究[D].重庆大学,2007.
[17] J. Bohlen;F. Chmelfk;P. Dobron .Orientation effects on acoustic emission during tensile deformation of hot rolled magnesium alloy AZ31[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2004(1/2):207-213.
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