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Mg-3Al-6Zn-2Y合金的动态压缩性能研究
引用本文:梁 浩,潘复生,王敬丰,张方举,胡文军,谭 云.Mg-3Al-6Zn-2Y合金的动态压缩性能研究[J].稀有金属材料与工程,2013,42(2):278-281.
作者姓名:梁 浩  潘复生  王敬丰  张方举  胡文军  谭 云
作者单位:1. 重庆大学,重庆400044;中国工程物理研究院总体工程研究所,四川绵阳621900
2. 重庆大学,重庆,400044
3. 中国工程物理研究院总体工程研究所,四川绵阳,621900
基金项目:中国工程物理研究院科学技术发展基金(2010B0302041)
摘    要:在0.001、900、1300 s-13个应变率下,研究了Mg-3Al-6Zn-2Y合金的压缩性能及微细观变化.结果表明:随应变率增大,合金应变硬化率增大,极限强度与屈服强度增大;强化相Al2Y、Al12Mg17与过渡相MgZn2含量减少;合金产生{10 1 2}<10 1 0>孪生,位错密度增大,出现缠结,并在孪生界面塞集.强化相减少对强度的弱化作用与高密度位错塞集的强化作用相互竞争.

关 键 词:镁合金  应变率  动态压缩  微观组织
收稿时间:2012/2/20 0:00:00

Research on the Properties of Mg-3Al-6Zn-2Y Alloy under Dynamic Compression
Liang Hao,Pan Fusheng,Wang Jinfeng,Zhang Fangju,Hu Wenjun and Tan Yun.Research on the Properties of Mg-3Al-6Zn-2Y Alloy under Dynamic Compression[J].Rare Metal Materials and Engineering,2013,42(2):278-281.
Authors:Liang Hao  Pan Fusheng  Wang Jinfeng  Zhang Fangju  Hu Wenjun and Tan Yun
Affiliation:Chongqing University, Chongqing 400044, China;Chongqing University, Chongqing 400044, China;Chongqing University, Chongqing 400044, China;Institute of System Engineering, China Academy of Engineering and Physics, Mianyang 621900, China;Institute of System Engineering, China Academy of Engineering and Physics, Mianyang 621900, China;Institute of System Engineering, China Academy of Engineering and Physics, Mianyang 621900, China
Abstract:The compressive property and microstructure of Mg-3Al-6Zn-2Y alloy at the strain rates of 0.001, 900, 1300 s-1 were studied. The hardening rate, ultimate strength, and yield strength increased with strain rate increasing, while the reinforcement phases of Al2Y and Al12Mg17 and the transition phase MgZn2 decreased. The {102}<100> twinning occurred with higher density of dislocation which tangled and piled up on the interface of crystal twin. The weakening effect on intensity caused by decreasing of reinforcement phases competes with the intensifying effect caused by the higher density of dislocation piling up on the interface of crystal twin.
Keywords:magnesium alloy  strain rate  dynamic compression  microstructures
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