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Dynamic recrystallization behavior of AZ31 magnesium alloy processed by alternate forward extrusion

机译:交替正向挤压加工AZ31镁合金的动态再结晶行为

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摘要

One of the important factors that affect the microstructure and properties of extruded products is recrystallization behavior. Alternate forward extrusion (AFE) is a new type of metal extrusion process with strong potential. In this paper, we carried out the AFE process experiments of as-cast AZ31 magnesium alloy and obtained extrusion bar whose microstructure and deformation mechanism were analyzed by means of optical microscopy, electron backscattered diffraction and transmission electron microscopy. The experimental results indicated that homogeneous fine-grained structure with mean grain size of 3.91 mu m was obtained after AFE at 573 K. The dominant reason of grain refinement was considered the dynamic recrystallization (DRX) induced by strain localization and shear plastic deformation. In the 573-673 K range, the yield strength, tensile strength and elongation of the composite mechanical properties are reduced accordingly with the increase of the forming temperature. Shown as in relevant statistics, the proportion of the large-angle grain boundaries decreased significantly. The above results provide an important scientific basis of the scheme formulation and active control on microstructure and property for AZ31 magnesium alloy AFE process.
机译:影响挤出产品的微观结构和性能的重要因素之一是重结晶行为。交替向前挤压(AFE)是一种具有强大潜力的新型金属挤压工艺。本文对铸态AZ31镁合金进行了AFE工艺实验,并通过光学显微镜,电子背散射衍射和透射电子显微镜对挤压棒的组织和变形机理进行了分析。实验结果表明,在573 K下进行AFE后,获得了平均晶粒尺寸为3.91μm的均质细晶粒组织。晶粒细化的主要原因是应变局部化和剪切塑性变形引起的动态再结晶(DRX)。在573-673 K范围内,随着成形温度的升高,复合材料力学性能的屈服强度,拉伸强度和伸长率相应降低。如相关统计所示,大角度晶界的比例明显下降。以上结果为AZ31镁合金AFE工艺方案的制定和组织控制及性能的控制提供了重要的科学依据。

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