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首页> 外文期刊>Journal of Materials Engineering and Performance >A New Constitutive Model for the Plastic Flow of Metals at Elevated Temperatures
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A New Constitutive Model for the Plastic Flow of Metals at Elevated Temperatures

机译:高温下金属塑性流动的本构模型

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A new constitutive model based on the combination of the Garofalo and Hensel-Spittel equations has been used to describe the plastic flow behavior of an AA6005 aluminum alloy tested in torsion. The analysis of the experimental data by the constitutive model resulted in an excellent description of the flow curves. The model equation was then rewritten to explicitly include the Arrhenius term describing the temperature dependence of plastic deformation. The calculation indicated that the activation energy for hot working slowly decreased with increasing strain, leading to thermally activated flow softening. The combined use of the new equation and torsion testing led to the development of a constitutive model which can be safely adopted in a computer code to simulate forging or extrusion.
机译:基于Garofalo和Hensel-Spittel方程组合的新本构模型已被用来描述AA6005铝合金在扭转状态下的塑性流动行为。通过本构模型对实验数据进行分析,可以很好地描述流动曲线。然后将模型方程式重写为明确包含描述塑性变形的温度依赖性的Arrhenius项。计算表明,热加工的活化能随着应变的增加而缓慢降低,从而导致热活化的流动软化。新方程式和扭转试验的结合使用,导致了本构模型的开发,可以在计算机代码中安全地采用本构模型来模拟锻造或挤压。

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