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首页> 外文期刊>International Journal of Plasticity >An enhanced distortional-hardening-based constitutive model for hexagonal close-packed metals: Application to AZ31B magnesium alloy sheets at elevated temperatures
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An enhanced distortional-hardening-based constitutive model for hexagonal close-packed metals: Application to AZ31B magnesium alloy sheets at elevated temperatures

机译:基于六角形紧密填充金属的基于扭曲的硬化的基于扭曲 - 硬化的组成型模型:在高温下的AZ31B镁合金板上应用

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摘要

In this study, a new material model for hexagonal close-packed (HCP) metals for predicting their flow responses under monotonic/cyclic loadings at various temperatures is proposed. The temperature-dependent constitutive model is re-formulated using a continuum-based distortional hardening law, which affects the shape of the yield surface depending on the loading direction, and also uses the concept of the dominant deformation modes in magnesium alloys: twin, untwin, and slip-dominate modes, considering the role of the twins in plastic deformation. In terms of the material asymmetry in yield strength, the Cazacu-Barlat-Plunkett (CPB) '06 yield criterion is extended to include thermal effects. A numerical formulation of the material model has also been developed to allow its implementation into finite element analysis software via a user-defined material subroutine (UMAT). The predicted results of stress-strain response for monotonic and cyclic loadings are excellent agreement with the experimental data. Moreover, the simulated results show the strength differential (SD) effect and unusual flow responses of AZ31B magnesium alloy sheets at room temperature, as well as the variation in the SD effect and anisotropic hardening behavior at elevated temperatures.
机译:在该研究中,提出了一种用于预测各种温度下单调/循环负载下的六边形封闭式(HCP)金属的新材料模型。使用基于连续的扭曲硬化法重新配制温度依赖性本构模型,其根据负载方向影响屈服表面的形状,并且还使用镁合金中主导变形模式的概念:双,无晶以及考虑双胞胎在塑性变形中的作用。就屈服强度的材料不对称而言,Cazacu-Barlat-Plunkett(CPB)'06屈服标准扩展到包括热效应。还开发了材料模型的数值制剂,以允许其通过用户定义的材料子程序(UMAT)实现了有限元分析软件。单调和循环载荷的应力 - 应变响应的预测结果与实验数据很好。此外,模拟结果显示了在室温下AZ31B镁合金板的强度差分(SD)效应和异常流动响应,以及SD效应的变化和升高的温度下的各向异性硬化行为。

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