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A study on compressive anisotropy and nonassociated flow plasticity of the AZ31 Magnesium Alloy in hot rolling

机译:热轧AZ31镁合金的压缩各向异性和非缔合流动塑性的研究

摘要

Effect of anisotropy in compression is studied on hot rolling of AZ31 magnesium alloy with a three-dimensional constitutive model based on the quadratic Hill48 yield criterion and nonassociated flow rule (non-AFR). The constitutive model is characterized by compressive tests of AZ31 billets since plastic deformations of materials are mostly caused by compression during rolling processes. The characterized plasticity model is implemented into ABAQUS/Explicit as a user-defined material subroutine (VUMAT) based on semi-implicit backward Euler\u27s method. The subroutine is employed to simulate square-bar rolling processes. The simulation results are compared with rolled specimens and those predicted by the von Mises and the Hill48 yield function under AFR. Moreover, strip rolling is also simulated for AZ31 with the Hill48 yield function under non-AFR. The strip rolling simulation demonstrates that the lateral spread generated by the non-AFR model is in good agreement with experimental data. These comparisons between simulation and experiments validate that the proposed Hill48 yield function under non-AFR provides satisfactory description of plastic deformation behavior in hot rolling for AZ31 alloys in case that the anisotropic parameters in the Hill48 yield function and the non-associated flow rule are calibrated by the compressive experimental results.
机译:基于二次Hill48屈服准则和非关联流规则(non-AFR),利用三维本构模型研究了各向异性对压缩对AZ31镁合金热轧的影响。本构模型的特征在于对AZ31钢坯进行压缩试验,因为材料的塑性变形主要是由轧制过程中的压缩引起的。基于半隐式后向Euler方法,将特征可塑性模型作为用户定义的材料子例程(VUMAT)实施到ABAQUS / Explicit中。该子例程用于模拟方坯轧制过程。将模拟结果与轧制试样以及由AFR下的von Mises和Hill48屈服函数预测的结果进行比较。此外,还模拟了在非AFR下具有Hill48屈服函数的AZ31的带钢轧制。带材轧制模拟表明,非AFR模型产生的横向扩展与实验数据非常吻合。通过仿真和实验之间的比较,验证了在校正了Hill48屈服函数中的各向异性参数和非关联流规则的情况下,在非AFR下提出的Hill48屈服函数可提供令人满意的AZ31合金热轧塑性变形行为的描述。通过压缩实验结果。

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