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首页> 外文期刊>High temperature materials and processes >Complex Flow Stress Model for a Magnesium Alloy AZ31 at Hot Forming
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Complex Flow Stress Model for a Magnesium Alloy AZ31 at Hot Forming

机译:镁合金AZ31热成形时的复合流动应力模型

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摘要

Compression tests of magnesium alloy Mg-3 Al-lZn (AZ31) at different temperatures and strain rate were made on plastometer Gleeble 3800. Deformation behaviour and particularly shape of stress-strain curves of the alloy AZ31 differ significantly at low and high values of Zener-Hollomon parameter Z. The border between these areas was determined mathematically as Z = 2.9E+13 s"1. While the calculated activation energy Q was for both these areas practically identical (157 or 155 kJmol"1), mathematical description of coordinates of the peak stress differs considerably. Regression and statistical analysis of experimental data have confirmed unequivocally, that it was impossible to describe by a uniform equation the whole set of data (i.e. traditional stress-strain curves, as well as those with atypical initial stage, given by the massive twinning). That's why two mathematical models were developed enabling prediction of the flow stress of investigated magnesium alloy in dependence on temperature, strain and strain rate, with inclusion of the influence of dynamic re-crystallisation.
机译:在塑性仪Gleeble 3800上对镁合金Mg-3 Al-lZn(AZ31)进行了不同温度和应变速率下的压缩测试。在齐纳河的低值和高值下,AZ31合金的变形行为,尤其是应力-应变曲线的形状都存在显着差异。 -Hollomon参数Z。数学上确定这些区域之间的边界为Z = 2.9E + 13 s“ 1。尽管对于这两个区域,计算出的活化能Q几乎相同(157或155 kJmol” 1),但坐标的数学描述的峰值应力差异很大。对实验数据的回归和统计分析已明确证实,不可能用统一的方程式描述整个数据集(即传统的应力-应变曲线以及由大孪晶给出的非典型初始应变曲线)。这就是为什么要开发两个数学模型,以便能够根据温度,应变和应变率预测所研究镁合金的流应力,并考虑动态再结晶的影响。

著录项

  • 来源
    《High temperature materials and processes》 |2011年第2期|p.63-69|共7页
  • 作者单位

    VSB - Technical University of Ostrava, Faculty of Met-allurgy and Materials Engineering, Czech Republic;

    VSB - Technical University of Ostrava, Faculty of Met-allurgy and Materials Engineering, Czech Republic;

    VSB - Technical University of Ostrava, Faculty of Met-allurgy and Materials Engineering, Czech Republic;

    VSB - Technical University of Ostrava, Faculty of Met-allurgy and Materials Engineering, Czech Republic;

    VSB - Technical University of Ostrava, Faculty of Met-allurgy and Materials Engineering, Czech Republic;

    VSB - Technical University of Ostrava, Faculty of Met-allurgy and Materials Engineering, Czech Republic;

    Silesian University of Technology, Faculty of Materials Science and Metallurgy, Poland;

    Silesian University of Technology, Faculty of Materials Science and Metallurgy, Poland;

    Silesian University of Technology, Faculty of Materials Science and Metallurgy, Poland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    magnesium alloy az31; stress-strain curves; activation energy; hot flow stress model;

    机译:镁合金az31;应力-应变曲线;活化能;热流应力模型;

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