首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Deformation homogeneity in accumulative back extrusion processing of AZ31 magnesium alloy
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Deformation homogeneity in accumulative back extrusion processing of AZ31 magnesium alloy

机译:AZ31镁合金累积反向挤压加工的变形均匀性

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The ultra-fine grained materials produced by severe plastic deformation (SPD) methods have been widely investigated in the last decades due to the enhanced material properties such as improved tensile strength, hardness, toughness, fatigue life, and the optical and electrical related properties. The microstructure and mechanical properties of the deformed materials are strongly dependent on the amount and the homogeneity of strain achieved during the SPD processes. Accumulative back extrusion (ABE) method is a novel severe plastic deformation (SPD) technique which has been recently developed for fabrication of bulk ultra-fine structured materials. The knowledge of strain distribution and deformation behavior during ABE processing may assist the better understanding of the whole process. Therefore the present work has been conducted to examine the strain distribution and deformation behavior during ABE process through applying 3D finite element simulations with Abaqus/Explicit for different stages of deformation. In order to validate the simulation results, a grid method assessment was employed. The results demonstrated that a homogenous equivalent plastic strain of 4–5 has been gained after applying one pass ABE. In addition the results indicate that the distribution of normal strain is inhomogeneous. The microstructural observations have revealed a proper structural homogeneity after completion of an ABE cycle.
机译:由于增强的材料性能,例如提高的拉伸强度,硬度,韧性,疲劳寿命以及与光学和电学相关的性能,在过去几十年中,通过剧烈塑性变形(SPD)方法生产的超细颗粒材料已得到广泛研究。变形材料的微观结构和机械性能在很大程度上取决于SPD过程中所达到的应变量和均匀性。累积反向挤压(ABE)方法是一种新的严重塑性变形(SPD)技术,最近已被开发用于制造块状超细结构材料。 ABE处理过程中应变分布和变形行为的知识可能有助于更好地了解整个过程。因此,通过对Abaqus / Explicit进行3D有限元模拟,对变形的不同阶段进行了应用,以检查ABE过程中的应变分布和变形行为。为了验证仿真结果,采用了网格方法评估。结果表明,应用一遍ABE可获得均等的4–5塑性应变。另外,结果表明正常应变的分布是不均匀的。微观结构观察表明,在完成ABE循环后,结构具有同质性。

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