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ZK60和ZK60-1.0Er镁合金热压缩变形和加工图

王忠军 付学丹 朱晶 周乐 王洪斌

材料工程2017,Vol.45Issue(3):102-111,10.
材料工程2017,Vol.45Issue(3):102-111,10.DOI:10.11868/j.issn.1001-4381.2016.000505

ZK60和ZK60-1.0Er镁合金热压缩变形和加工图

Hot Compressive Deformation and Processing Maps of ZK60 and ZK60-1.0Er Magnesium Alloy

王忠军 1付学丹 1朱晶 1周乐 1王洪斌1

作者信息

  • 1. 辽宁科技大学材料与冶金学院,辽宁鞍山114051
  • 折叠

摘要

Abstract

The hot compressive deformation behavior of ZK60 and ZK60-1.0Er magnesium alloy occurring homogenization was investigated by Gleeble-1500D thermal simulator,analyzing the characteristics of the flow stress changes of the two kinds of magnesium alloys at the temperature 160-420℃,the strain rate 0.0001-1.0s-1.The experimental results show that the two kinds of magnesium alloys are deformation temperature and strain rate sensitive materials,with the decrease of deformation temperature and the increase of strain rate,the flow stress increases;meanwhile,flow stress value tends to be constant after flow stress reaches peak value.Rare earth Er reduces the average deformation activation energy from 183kJ/mol to 153kJ/mol,and the stress index n value is improved from 6 to 8;dynamical recrystallization critical stress σc value decreases,with the increase of deformation temperature and the decrease of strain rate,and at 420℃/1.0s-1,rare earth Er reduces the critical stress σc value of occurring dynamic recrystallization from 76MPa to 50MPa.According to the obtained processing map by material dynamic model,combining with microstructure observations,rare earth Er reduces instability areas of ZK60 magnesium alloy,and increases power dissipation efficiency value ηmax from 35 % to 45 % at safety zone,promotes dynamic recrystallization grain nucleation,but inhibits recrystallization grain growth.

关键词

ZK60/Er/热压缩变形/本构方程/热加工图

Key words

ZK60/Er/hot compressive deformation/constitutive equation/processing map

分类

矿业与冶金

引用本文复制引用

王忠军,付学丹,朱晶,周乐,王洪斌..ZK60和ZK60-1.0Er镁合金热压缩变形和加工图[J].材料工程,2017,45(3):102-111,10.

基金项目

国家自然科学基金项目(51404137,51374128) (51404137,51374128)

材料工程

OA北大核心CSCDCSTPCD

1001-4381

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