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On some aspects of compressive properties and serrated flow in Mg-Y-Nd-Zr alloy 被引量:6

On some aspects of compressive properties and serrated flow in Mg-Y-Nd-Zr alloy
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摘要 The deformation behavior of the Mg-Y-Nd-Zr (WE54) alloy at temperatures between 25 and 400 ℃ was investigated by uniaxial and plans strain compression tests at strain rate values of 10-2 and 10^-4 s^-1. The results showed that the flow stress had a strong dependency on the loading condition. Yield stress and peak stress decreased with increasing deformation temperature and with decrease in the strain rate for both deformation types. The serration flow behavior was observed markedly at high temperatures and under a strain rate of 10^-4S^-1. The serration amplitude for samples deformed by plans strain compression was larger than that by uni- axial compression. Serrated flow was attributed to the interaction of dislocations with precipitates at 300 ℃ and to dynamic discon- tinuous recrystallization effects at 400 ℃. The deformation behavior of the Mg-Y-Nd-Zr (WE54) alloy at temperatures between 25 and 400 ℃ was investigated by uniaxial and plans strain compression tests at strain rate values of 10-2 and 10^-4 s^-1. The results showed that the flow stress had a strong dependency on the loading condition. Yield stress and peak stress decreased with increasing deformation temperature and with decrease in the strain rate for both deformation types. The serration flow behavior was observed markedly at high temperatures and under a strain rate of 10^-4S^-1. The serration amplitude for samples deformed by plans strain compression was larger than that by uni- axial compression. Serrated flow was attributed to the interaction of dislocations with precipitates at 300 ℃ and to dynamic discon- tinuous recrystallization effects at 400 ℃.
机构地区 Faculty of Physics
出处 《Journal of Rare Earths》 SCIE EI CAS CSCD 2013年第8期804-810,共7页 稀土学报(英文版)
关键词 Mg-Y-Nd-Zr (WE54) alloy serrated flow dynamic precipitation hot deformation rare earths Mg-Y-Nd-Zr (WE54) alloy serrated flow dynamic precipitation hot deformation rare earths
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