首页> 外文会议>TMS Annual Meeting amp;amp;amp; Exhibition >Effects of the Extrusion Temperature on Microstructure, Texture Evolution and Mechanical Properties of Extruded Mg-2.49Nd-1.82Gd-0.19Zn-0.4Zr Alloy
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Effects of the Extrusion Temperature on Microstructure, Texture Evolution and Mechanical Properties of Extruded Mg-2.49Nd-1.82Gd-0.19Zn-0.4Zr Alloy

机译:挤出温度对挤出Mg-2.49nd-1.82gd-0.19〜0.4亿合金的微观结构,质地逸出和力学性能的影响

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Microstructure, texture evolution and mechanical properties of extruded Mg-2.49Nd-1.82Gd-0.19Zn-0.4Zr alloy were investigated at extrusion temperatures of 260°C, 280°C, 300°C and 320°C, with an extrusion ratio of 15 and RAM speed of 3 mm s~(-1), respectively. The results indicated that the coarse grains of homogenized billets were substantially refined after the extrusion process, which was caused by the refinement of dynamically recrystallization (DRX) and the pinning effect of precipitated Mg_5Gd and Mg_(12)(Nd, Gd) particles. The grain size decreased gradually when the extrusion temperature increased from 260 to 280 and 300°C, and then coarsened slightly once the extrusion temperature further increased to 320°C. Moreover, the DRX process was promoted with the increasing extrusion temperature, and a completely DRX microstructure could be obtained when the extrusion temperature up to 300°C. The room temperature tensile and compressive yield strength increased when the temperature increased from 260 to 300°C and then decreased at 320°C. All extruded alloys exhibited an extremely low tension-compression yield asymmetry, which was mainly attributed to the rare earth (RE) texture component as well as the fine microstructure developed during the extrusion process.
机译:在挤出温度为260℃,280℃,300℃和320℃的挤出温度下研究挤出Mg-2.49nd-1.82gd-0.19℃-1.82gd-0.19℃-0.4Zr合金的微观结构,纹理演化和力学性能,具有挤出比例15分别为3 mm s〜(-1)的RAM速度。结果表明,挤出过程后均质坯料的粗粮基本上精制,这是由动态重结晶(DRX)的改进引起的,沉淀的Mg_5GD和Mg_(12)(Nd,Gd)颗粒的钉扎效果引起。当挤出温度从260至280和300℃增加时,晶粒尺寸逐渐降低,然后一旦挤出温度进一步增加至320℃,就稍微粗糙稀释。此外,随着挤出温度的增加,促进DRX过程,当挤出温度高达300℃时,可以获得完全DRX微观结构。当温度从260℃增加到300℃时,室温拉伸和压缩屈服强度增加,然后在320℃下降低。所有挤出的合金都表现出极低的张力 - 压缩率不对称,其主要归因于稀土(RE)质地部件以及在挤出过程中产生的细微结构。

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