A Computational Investigation into the Effect of Equal Channel Angular Processing on the Mechanical Properties of Severely Deformed ZK 60 Alloy Validated by Experiments

Omar Almenaif, Yaqoub Alhumaydani, M. Alnafisah, M. Aldhalaan, A. I. Alateyah, W. El-Garaihy
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引用次数: 11

Abstract

In this study, the response surface method and finite-element analysis were employed to model the ECAP processing for biodegradable magnesium alloy ZK 60 behavior at 250°C. Using Finite-Element (FE) analysis data was extracted and compared to the what was found by experimenting in order to investigate the effects of the ECAP processing parameters on the plastic deformation behavior of the ECAPed samples. The effective strain and stresses as a function of the number of passes were investigated. Hardness contour maps perpendicular to ECAP direction were plotted. Compressive properties of the billets were also examined. The FE analysis revealed that the maximum stresses were displayed at the corner and peripheral areas compared to the central areas. Moreover, straining through two passes of route Bc displayed maximum effective strain of 2.75 recorded in the top peripheral regions, whereas the central regions displayed 1.25. In addition, ECAP processing via 2-Bc correlated with rises in Hv values in the samples peripheries by 125.4% respectively, when compared with the as-annealed conditions. The compression findings showed also significant enhancement of the compressive strength compared to the as-annealed counterparts.
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等通道角加工对zk60合金严重变形力学性能影响的计算研究,并经实验验证
本研究采用响应面法和有限元分析方法,对250℃下可生物降解镁合金zk60的ECAP工艺行为进行了模拟。利用有限元分析方法提取数据,并与实验结果进行对比,探讨了ECAP工艺参数对ECAP试样塑性变形行为的影响。研究了有效应变和应力随孔道次的变化规律。绘制垂直于ECAP方向的硬度等值线图。并对坯料的压缩性能进行了测试。有限元分析表明,与中心区域相比,最大应力出现在角落和周边区域。此外,通过2次Bc路线应变,顶部外围区域的最大有效应变为2.75,而中部区域的最大有效应变为1.25。此外,与退火条件相比,经过2-Bc的ECAP处理与样品外围的Hv值分别上升了125.4%。压缩结果表明,与退火后的材料相比,压缩强度也有显著提高。
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