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Influence of forward extrusion on the mechanical properties and microstructure of homogenized AZ80 magnesium alloy

机译:前向挤压对均质AZ80镁合金力学性能和组织的影响

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The forward extrusion experiments of homogenized AZ80 magnesium alloy were conducted in the extrusion temperature range of 300°C to 420°C and extrusion ratios between 15 and 75 to study the effect of plastic deformation on the mechanical properties and microstructure. The microstructure and mechanical properties of extrudate were measured by tensile tests and optical microscopy. The results demonstrated that the alloy grains were small, and small amounts of black hard and brittle second-phase precipitated at 330°C. When the extrusion temperature was up to 390°C, the grain size increased significantly, but the second phase precipitation became continuous. And then, in the case of the extrusion ratio of 60, the tensile strength of the alloy reached the peak value of 390 MPa. Inhomogeneous precipitation of the second-phase increased with the increasing of extrusion temperature. At the same temperature, the tensile strength increased firstly and then decreased with increasing extrusion ratio. With the gradual increase of the grain refinement, the dispersed precipitates increased and the tensile strength and plasticity reached their peaks when the extrusion temperature was 390°C. As the grain grew, the second phase distribution became inhomogeneous, and the strength and plasticity gradually decreased.
机译:均质化的AZ80镁合金的正向挤压实验是在300°C至420°C的挤压温度范围内进行的,挤压比在15至75之间,以研究塑性变形对机械性能和显微组织的影响。通过拉伸试验和光学显微镜测量挤出物的微观结构和机械性能。结果表明,合金颗粒小,并且在330℃下析出了少量黑色的硬而脆的第二相。当挤出温度高达390℃时,晶粒尺寸显着增加,但是第二相沉淀变得连续。然后,在挤出比为60的情况下,合金的拉伸强度达到峰值390MPa。第二相的不均匀沉淀随着挤出温度的升高而增加。在相同温度下,拉伸强度随挤出比的增加先增大后减小。随着晶粒细化的逐渐增加,当挤出温度为390°C时,分散的沉淀物增加,抗拉强度和可塑性达到峰值。随着晶粒的增长,第二相分布变得不均匀,强度和可塑性逐渐降低。

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