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Deformation behavior ofAZ31 magnesium alloy at different strain rates and temperatures
作者姓名:谭成文  胥珊娜  王鲁  陈志永  王富耻  才鸿年  马红磊
作者单位:[1]Joint-Laboratory of Armament Materials Impact Property, Beijing Institute of Technology, Beijing 100081, China [2]Joint-Laboratory of Armament Materials Impact Property, Institute of Space Medico-Engineering, Beijing 100081, China
摘    要:

关 键 词:镁合金  隔热技术  成型技术  制造方法
收稿时间:2007-07-15
修稿时间:2007-09-10

Deformation behavior ofAZ31 magnesium alloy at different strain rates and temperatures
TAN Cheng-wen, XU Shan-na, WANG Lu, CHEN Zhi-yong, WANG Fu-chl, CAI Hong-nian, MA Hong-lei.Deformation behavior ofAZ31 magnesium alloy at different strain rates and temperatures[J].Transactions of Nonferrous Metals Society of China,2007,17(A01):347-352.
Authors:TAN Cheng-wen  XU Shan-na  WANG Lu  CHEN Zhi-yong  WANG Fu-chl  CAI Hong-nian  MA Hong-lei
Abstract:The deformation behavior of AZ31 was examined by compression and tension testes over a wide strain rate and temperature range, strain rate from 10^-3 to 10^3 s^-1, temperature from 300 to 623 K. Analysis of flow behavior and microstructural observations indicate that in tension tests dislocation glide is the most important deformation mechanism in the test strain rate and temperature range, while in compression tests twinning deformation mechanism is important at lower temperature when the strain rate ranges from 10^-3 to 10 s^-1. At 10^3 s^-1 strain rate, dislocation glide and twinning are present at the same time. At the strain rate of 2 964 s^-1, adiabatic shear band can be found easily, even at the strain rate of 1 537 s^-1 adiabatic shear localization zone can be found. In adiabatic shear localization zone, there are fine recrystallization grains. But in adiabatic shear band, the grains cannot be identified by optical microscopy.
Keywords:AZ31 magnesium alloy  compression  tension  twinning  adiabatic shear band
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