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High-Pressure Double Torsion as a Severe Plastic Deformation Process: Experimental Procedure and Finite Element Modeling

机译:高压双扭转作为严重的塑性变形过程:实验程序和有限元建模

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摘要

In the present study, a severe plastic deformation process of high-pressure torsion (HPT) has been modified. The new process is called high-pressure double torsion (HPDT) as both anvils of the conventional HPT process rotate in opposite directions. We manufactured sets of aluminum and pure copper samples using both the HPT process and the newly developed HPDT process to compare between microstructures and microhardness values. Our investigations showed that the copper samples processed by HPDT exhibited larger gradients in microstructure and higher values of hardness. Subsequently, we carried out a set of finite element simulations in ABAQUS/explicit to better understand the differences between the HPT process and the HPDT process. A comparison of the strain distributions of the HPT and HPDT samples revealed a decreasing trend in strain values as the radius increased at the middle surface of the samples. Analysis of the equivalent stress values revealed that stress values for the HPDT samples were higher than those of the HPT samples. Finally, the comparison of the max principal stress values indicated that in the HPDT sample, the extent of the compressive stresses was larger than those in the HPT sample.
机译:在本研究中,高压扭转(HPT)的严重塑性变形过程已得到修改。这种新工艺称为高压双扭转(HPDT),因为传统HPT工艺的两个砧座都沿相反的方向旋转。我们使用HPT工艺和新开发的HPDT工艺制造了铝和纯铜样品,以比较微观结构和显微硬度值。我们的研究表明,HPDT处理的铜样品在微观结构中表现出较大的梯度,并且具有较高的硬度值。随后,我们在ABAQUS / explicit中进行了一组有限元模拟,以更好地了解HPT过程与HPDT过程之间的区别。 HPT和HPDT样品的应变分布比较表明,随着样品中表面半径的增加,应变值呈下降趋势。对等效应力值的分析显示,HPDT样品的应力值高于HPT样品的应力值。最后,最大主应力值的比较表明,在HPDT样品中,压应力的范围大于在HPT样品中。

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