首页> 外文会议>International conference on advanced materials and processing >EFFECT OF HOT EXTRUSION ON MICROSTRUCTURE AND MECHANICAL PROPERTIES OF ELECTROMAGNETIC CONTINUOUS CAST AZ31 MAGNESIUM ALLOY
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EFFECT OF HOT EXTRUSION ON MICROSTRUCTURE AND MECHANICAL PROPERTIES OF ELECTROMAGNETIC CONTINUOUS CAST AZ31 MAGNESIUM ALLOY

机译:热挤出对电磁连续铸造AZ31镁合金微观结构和力学性能的影响

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This paper describes the effect of hot extrusion on the microstmcture and mechanical properties of electromagnetic continuous cast (EMC) AZ31 alloy. The microstructure, mechanical properties and fracture surfaces of AZ31 alloy before and after extrusion were investigated. The results demonstrate that extrusion processing gives rise to a strong basal texture. The grains are significantly refined and the average grain size of localized fine grain area is 2μm. Compared with EMC ingots, as-extruded specimens have much finer grain size and more uniform microstructure, and the second phase (Mg17A112) becomes smaller and distributes more uniformly. The mechanical properties of the deformed AZ31 were improved after hot-extrusion. When the extrusion ratio was 10, the yield strength, ultimate tensile strength and reduction in cross-sectional area of as-extruded AZ31 alloy were 248MPa, 306MPa and 28.44%, which were respectively enhanced by 78.4%, 41% and 45.25%, compared with those of as-cast samples. With the increase of extrusion ratio, the grain refining effect was more significant and the microstructure was more uniform. The yield strength, ultimate tensile strength and reduction in cross-sectional area increased obviously with increasing the extrusion ratio. The observation on fracture surfaces demonstrates that the fracture mode changes from ductile-brittle fracture to ductile fracture after extrusion.
机译:本文介绍了热挤出对电磁连续铸造(EMC)AZ31合金的微压和力学性能的影响。研究了挤出前后AZ31合金的微观结构,机械性能和断裂表面。结果表明,挤出处理产生了强大的基础纹理。晶粒显着精制,局部细粒面积的平均粒度为2μm。与EMC锭相比,挤出样品具有更细粒的粒度和更均匀的微观结构,并且第二相(Mg17a112)变小并且均匀地分布。热挤出后,改善了变形AZ31的机械性能。当挤出比为10时,屈服强度,最终拉伸强度和挤出的AZ31合金的横截面积还原为248MPa,306MPa和28.44%,分别增强78​​.4%,41%和45.25%相比随着铸造样品的那些。随着挤出率的增加,晶粒细化效果更显着,微观结构更均匀。随着挤出比率的增加,屈服强度,极限拉伸强度和横截面积的减少显然增加。对骨折表面的观察表明,裂缝模式在挤出后从韧性脆性骨折变为延性骨折。

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