期刊论文详细信息
Materials Research
The improved arrhenius model with variable parameters of flow behavior characterizing for the as-cast AZ80 magnesium alloy
Guo-zheng Quan1  Yu Shi1  Chun-tang Yu1  Jie Zhou1 
[1] ,Chongqing University School of Material Science and Engineering Chongqing,China
关键词: magnesium alloy;    flow stress;    activation energy;    constitutive equation;   
DOI  :  10.1590/S1516-14392013005000070
来源: SciELO
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【 摘 要 】

In order to study the hot working behaviour of as-cast AZ80 magnesium alloy, a series of isothermal upsetting tests with height reduction of 60% were performed at the temperature range of 523-673 K and the strain rate range of 0.01-10 s-1 on a servo-hydraulic Gleeble-1500 machine simulator. Based on the regression analysis for Arrhenius type equation of flow stress, the activation energy of deformation was determined to be Q = 168.6606 KJ·mol-1, and material constants , n and α in the equation also were calculated respectively to predict the peak stress during hot deformation. A 7th order polynomial was used to represent the influence of strain on these parameters (i.e Q, ln, n and α). The Arrhenius equation was further developed by taking account of the effect of strain on the flow stress to describe the flow behavior during the whole experimental temperature and strain rate range. Then comparison between the predicted results and test results shows that the correlation coefficient and average absolute relative error is 0.99 and 6.63%, respectively. The flow stress predicted by developed equation can give an accurate and precise description of the flow behaviour for AZ80 magnesium alloy.

【 授权许可】

CC BY   
 All the contents of this journal, except where otherwise noted, is licensed under a Creative Commons Attribution License

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